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<figureCitation id="12BCE0C7FFD1FFCD5B4F84CAFDFBFBA2" box="[556,621,1204,1229]" captionStart="FIGURE 2" captionStartId="6.[136,245,985,1010]" captionTargetBox="[151,1436,187,960]" captionTargetId="figure-15@6.[151,1436,187,960]" captionTargetPageId="6" captionText="FIGURE 2. Morphology of Phaeobotryon rhoinum from Rhus typhina (CF 201782). A: Symptoms on the host. B, C: Habit of pycnidia on a twig. D: Transverse section of pycnidia. E: Longitudinal section through pycnidia. FH: Conidiogenous cells and conidia. I: immature conidia. JK: mature conidia. Scale bars: B = 1 mm; CE = 500 μm; FK = 10 μm." pageId="5" pageNumber="68">Fig. 2</figureCitation>
<figureCitation id="12BCE0C7FFD1FFCD5B4F84CAFDFBFBA2" box="[556,621,1204,1229]" captionStart="FIGURE 2" captionStartId="6.[136,245,985,1010]" captionTargetBox="[151,1436,187,960]" captionTargetId="figure-15@6.[151,1436,187,960]" captionTargetPageId="6" captionText="FIGURE 2. Morphology of Phaeobotryon rhoinum from Rhus typhina (CF 201782). A: Symptoms on the host. B, C: Habit of pycnidia on a twig. D: Transverse section of pycnidia. E: Longitudinal section through pycnidia. FH: Conidiogenous cells and conidia. I: immature conidia. JK: mature conidia. Scale bars: B = 1 mm; CE = 500 μm; FK = 10 μm." figureDoi="http://doi.org/10.5281/zenodo.13708698" httpUri="https://zenodo.org/record/13708698/files/figure.png" pageId="5" pageNumber="68">Fig. 2</figureCitation>
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<bibRefCitation id="EE1681B3FFD1FFCD5B7D87D6FD4EF8AE" author="Fan, X. L. &amp; Hyde, K. D. &amp; Liu, J. &amp; Liang, Y. &amp; Tian, C. M." box="[542,728,1960,1985]" pageId="5" pageNumber="68" pagination="90 - 98" refId="ref8194" refString="Fan, X. L., Hyde, K. D., Liu, J., Liang, Y. &amp; Tian, C. M. (2015 a) Multigene phylogeny and morphology reveal, Phaeobotryon rhois sp. nov. (Botryosphaeriales, ascomycota). Phytotaxa 205 (2): 90 - 98. https: // doi. org / 10.11646 / phytotaxa. 205.2.2" type="journal article" year="2015">
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@ -93,7 +94,7 @@ from “Barclays Point”,
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[c.per.]).
</paragraph>
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<paragraph id="8B9E36DA571EF708F59CF87AFCD9F7EE" blockId="4.[136,1452,1957,2086]" pageId="4" pageNumber="35">
<emphasis id="B955EAC8571EF708F59CF87AFDBBF872" bold="true" box="[136,255,1957,1978]" pageId="4" pageNumber="35">FIGURE 3.</emphasis>
<taxonomicName id="4C214D59571EF708F413F87AFE76F872" authority="G. E. Lee &amp; Pocs. A, B. Leaves. C. Part" box="[263,818,1957,1978]" class="Jungermanniopsida" family="Lejeuneaceae" genus="Lejeunea" kingdom="Plantae" order="Porellales" pageId="4" pageNumber="35" phylum="Marchantiophyta" rank="species" species="konratii">
@ -142,7 +143,7 @@ seldom reduced, 0.350.45
to the stem, ovate, inflated along the keel; apex obliquely truncate; keel curved; free margin incurved fully; first tooth 2550 μm long, (1)2 cells long, oblong, erect, apex obtuse, second tooth reduced; margin between tooth and sinus 34 cells long, large rectangular disc cell (cell below the apical tooth) present, 2535
<emphasis id="B955EAC8571FF709F1A1FDF3F98CFD8D" box="[1205,1224,556,581]" italics="true" pageId="5" pageNumber="36">×</emphasis>
2535 μm. Position of hyaline papillae proximal ental (
<figureCitation id="131A2A5F571FF709F719FD8FFF0BFDA1" box="[525,591,592,617]" captionStart="FIGURE 3" captionStartId="4.[136,229,1957,1978]" captionTargetBox="[195,1397,201,1921]" captionTargetId="figure-16@4.[178,1409,190,1932]" captionTargetPageId="4" captionText="FIGURE 3. Lejeunea konratii G.E.Lee &amp; Pócs. A,B. Leaves. C. Part of plant in ventral view with perianths. D. Median cells of leaf lobe. E,F,G. Upper part of leaf lobules when flattened (hyaline papillae shown in gray). H. Cross-section of stem. N,O. Underleaves. I,M. Perianths in ventral view. J,K. Stem portion and leaf lobules. L. Perianth with bracts and bracteole. All figures drawn from the holotype, S. &amp; T.Pócs 03273/R (EGR)." pageId="5" pageNumber="36">Fig. 3</figureCitation>
<figureCitation id="131A2A5F571FF709F719FD8FFF0BFDA1" box="[525,591,592,617]" captionStart="FIGURE 3" captionStartId="4.[136,229,1957,1978]" captionTargetBox="[195,1397,201,1921]" captionTargetId="figure-16@4.[178,1409,190,1932]" captionTargetPageId="4" captionText="FIGURE 3. Lejeunea konratii G.E.Lee &amp; Pócs. A,B. Leaves. C. Part of plant in ventral view with perianths. D. Median cells of leaf lobe. E,F,G. Upper part of leaf lobules when flattened (hyaline papillae shown in gray). H. Cross-section of stem. N,O. Underleaves. I,M. Perianths in ventral view. J,K. Stem portion and leaf lobules. L. Perianth with bracts and bracteole. All figures drawn from the holotype, S. &amp; T.Pócs 03273/R (EGR)." figureDoi="http://doi.org/10.5281/zenodo.13709068" httpUri="https://zenodo.org/record/13709068/files/figure.png" pageId="5" pageNumber="36">Fig. 3</figureCitation>
:
<collectionCode id="ED30AE1F571FF709F747FD8FFF29FDA1" box="[595,621,592,617]" country="Switzerland" lsid="urn:lsid:biocol.org:col:15706" name="Conservatoire et Jardin botaniques de la Ville de Genève" pageId="5" pageNumber="36" type="Herbarium">G</collectionCode>
).
@ -257,7 +258,7 @@ specimens of
<emphasis id="B955EAC8571FF709F081FA27FDA5F9FD" italics="true" pageId="5" pageNumber="36">L. konratii</emphasis>
</taxonomicName>
(
<figureCitation id="131A2A5F571FF709F5E4F9C3FC71F9FD" box="[240,309,1564,1589]" captionStart="FIGURE 3" captionStartId="4.[136,229,1957,1978]" captionTargetBox="[195,1397,201,1921]" captionTargetId="figure-16@4.[178,1409,190,1932]" captionTargetPageId="4" captionText="FIGURE 3. Lejeunea konratii G.E.Lee &amp; Pócs. A,B. Leaves. C. Part of plant in ventral view with perianths. D. Median cells of leaf lobe. E,F,G. Upper part of leaf lobules when flattened (hyaline papillae shown in gray). H. Cross-section of stem. N,O. Underleaves. I,M. Perianths in ventral view. J,K. Stem portion and leaf lobules. L. Perianth with bracts and bracteole. All figures drawn from the holotype, S. &amp; T.Pócs 03273/R (EGR)." pageId="5" pageNumber="36">Fig. 3</figureCitation>
<figureCitation id="131A2A5F571FF709F5E4F9C3FC71F9FD" box="[240,309,1564,1589]" captionStart="FIGURE 3" captionStartId="4.[136,229,1957,1978]" captionTargetBox="[195,1397,201,1921]" captionTargetId="figure-16@4.[178,1409,190,1932]" captionTargetPageId="4" captionText="FIGURE 3. Lejeunea konratii G.E.Lee &amp; Pócs. A,B. Leaves. C. Part of plant in ventral view with perianths. D. Median cells of leaf lobe. E,F,G. Upper part of leaf lobules when flattened (hyaline papillae shown in gray). H. Cross-section of stem. N,O. Underleaves. I,M. Perianths in ventral view. J,K. Stem portion and leaf lobules. L. Perianth with bracts and bracteole. All figures drawn from the holotype, S. &amp; T.Pócs 03273/R (EGR)." figureDoi="http://doi.org/10.5281/zenodo.13709068" httpUri="https://zenodo.org/record/13709068/files/figure.png" pageId="5" pageNumber="36">Fig. 3</figureCitation>
: E,F,G), where the first lobule tooth which is 1 or 2 cells long may be found on a single shoot and only robust individuals have 2 cells. This phenomenon is also observed in
<taxonomicName id="4C214D59571FF709F693F99FF99FF991" authority="(Lee et al. 2011)" baseAuthorityName="Lee" baseAuthorityYear="2011" box="[903,1243,1600,1625]" class="Jungermanniopsida" family="Lejeuneaceae" genus="Lejeunea" kingdom="Plantae" order="Porellales" pageId="5" pageNumber="36" phylum="Marchantiophyta" rank="species" species="gradsteinii">
<emphasis id="B955EAC8571FF709F693F99FF959F991" box="[903,1053,1600,1625]" italics="true" pageId="5" pageNumber="36">L. gradsteinii</emphasis>

View file

@ -1,50 +1,51 @@
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<mods:affiliation id="4E91F7996D7525D1F02A74BA447E2603">Gaik Ee Lee, School of Marine and Environmental Sciences, Universiti Malaysia Terengganu, 21030 Kuala Nerus, Terengganu, Malaysia. &amp; University of Munich (LMU), Department of Biology I, Systematic Botany and Mycology, Geobio-Center, Menzinger Str. 67, 80638 Munich, Germany.</mods:affiliation>
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@ -56,7 +57,7 @@
Schäfer-Verwimp (2001: 64)
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@ -74,7 +75,7 @@ has been found growing. This species was previously recorded in Peninsular
(Lee 2013) and
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(Schäfer-Verwimp 2006) and is readily recognized by its marginal rhizoids at the leaf apex (Schäfer-Verwimp 2001,
<figureCitation id="131A2A5F571BF70DF60EF8ADFED8F843" box="[794,924,1906,1931]" captionStart="FIGURE 1" captionStartId="2.[136,229,1947,1968]" captionTargetBox="[177,1411,187,1919]" captionTargetId="figure-16@2.[177,1411,187,1919]" captionTargetPageId="2" captionText="FIGURE 1. Vegetative propagules (cladia) of Lejeunea dimorpha. A. Habit (growing together with the epiphyllous moss, Ephemeropsis tjibodensis Goebel (1892: 116) in brown colour). B,C. Cladia with the erect, large underleaves, detached from the main stem. D,E. Specialized leaf lobe with numerous marginal rhizoids. F. New plantlets growing from the vegetative propagules. G. Vegetative propagule decayed. All figures and SEM micrographs from A. Damanhuri 11-370 (UKMB)." pageId="1" pageNumber="32">Figs. 1A, B</figureCitation>
<figureCitation id="131A2A5F571BF70DF60EF8ADFED8F843" box="[794,924,1906,1931]" captionStart="FIGURE 1" captionStartId="2.[136,229,1947,1968]" captionTargetBox="[177,1411,187,1919]" captionTargetId="figure-16@2.[177,1411,187,1919]" captionTargetPageId="2" captionText="FIGURE 1. Vegetative propagules (cladia) of Lejeunea dimorpha. A. Habit (growing together with the epiphyllous moss, Ephemeropsis tjibodensis Goebel (1892: 116) in brown colour). B,C. Cladia with the erect, large underleaves, detached from the main stem. D,E. Specialized leaf lobe with numerous marginal rhizoids. F. New plantlets growing from the vegetative propagules. G. Vegetative propagule decayed. All figures and SEM micrographs from A. Damanhuri 11-370 (UKMB)." figureDoi="http://doi.org/10.5281/zenodo.13709062" httpUri="https://zenodo.org/record/13709062/files/figure.png" pageId="1" pageNumber="32">Figs. 1A, B</figureCitation>
; Lee 2013, Fig. 412). The disjunct range of this species is quite unexpected, however, another disjunct occurrence of a species in this locality of Queensland is known, e.g. the occurrence of
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@ -87,7 +88,7 @@ Zwickel (1933: 117)
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<emphasis id="B955EAC85718F70EF59CF844FDBAF878" bold="true" box="[136,254,1947,1968]" pageId="2" pageNumber="33">FIGURE 1.</emphasis>
Vegetative propagules (cladia) of

View file

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@ -157,7 +158,7 @@ is sister to
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@ -101,7 +102,7 @@ L.A. Parra, Angelini &amp; B. Ortiz
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(
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<figureCitation id="132B53A9A317FFFCF21EFC3DFC7CFC6E" box="[866,948,981,1006]" captionStart="FIGURE 12" captionStartId="29.[136,229,1944,1965]" captionTargetBox="[183,1405,190,1918]" captionTargetId="figure-14@29.[183,1405,190,1919]" captionTargetPageId="29" captionText="FIGURE 12. Macroscopic characters of A. porphyropos. AB. Basidiomata.A. (JBSD126493); B. (JBSD126494, holotype). Microscopic characters of A. porphyropos CK. (JBSD126494, holotype) (CI, K in ammoniacal Congo red; J in water). CE. Cheilocystidia. FG. Basidia. H. Spores. I. Hyphae of the lower surface of the annulus. JK. Pileipellis hyphae (K. internal granular pigment marked with an arrow). Photos by C. Angelini (AB) and L.A. Parra (CK)." figureDoi="http://doi.org/10.5281/zenodo.13708461" httpUri="https://zenodo.org/record/13708461/files/figure.png" pageId="28" pageNumber="247">Fig. 12</figureCitation>
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@ -151,7 +152,7 @@ a cutis, hyphae cylindrical or narrowed at septa with fusiform elements. In wate
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not observed.
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<emphasis id="B964933EA316FFFDF1F4F870FEC1F82D" bold="true" box="[136,265,1944,1965]" pageId="29" pageNumber="248">FIGURE 12.</emphasis>
Macroscopic characters of

View file

@ -1,94 +1,95 @@
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and consequently has the same stem age of 27.64 Ma. In our ITS tree (
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), it is also well supported (ML bootstrap support 84%; PP = 1) and includes four species or putative species.
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@ -102,7 +103,7 @@ L.A. Parra, Angelini &amp; Callac
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ccacgAaatct@194, acatgAgcttc@264, tagagAggagc@482
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Macroscopic characters of

View file

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@ -100,7 +101,7 @@ Berk. &amp; Broome, J. Linn. Soc., Bot.
11: 548. 1871
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. (
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<figureCitation id="132B53A9A322FFC9F2A2FCECFBF8FC9D" box="[990,1072,772,797]" captionStart="FIGURE 19" captionStartId="42.[136,229,1979,2000]" captionTargetBox="[170,1417,190,1954]" captionTargetId="figure-17@42.[170,1417,190,1954]" captionTargetPageId="42" captionText="FIGURE 19. Macroscopic characters of A. endoxanthus. AC. Basidiomata (JBSD126486). Microscopic characters of A. endoxanthus. DJ. In ammoniacal Congo red. (JBSD126486). DE. Cheilocystidia. F. Basidia. G. Spores. H. Hyphae of the lower surface of the annulus. IJ. Pileipellis hyphae. Photos by C. Angelini (AC) and L.A. Parra (EJ)." figureDoi="http://doi.org/10.5281/zenodo.13708485" httpUri="https://zenodo.org/record/13708485/files/figure.png" pageId="41" pageNumber="260">Fig. 19</figureCitation>
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@ -172,7 +173,7 @@ Republic and
This species is characterized by its small to medium size, the gray-tinted pileus with the always-darker center, blackish, soon cracking radially and/or concentrically, the stipe base grayish, the context at the stipe base turning chrome yellow, the odor of phenol and the outermost elements of the pileipellis doliiform, ovoid or globose containing large vacuoles of dark brown pigment.
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<emphasis id="B964933EA321FFCAF1F4F853FEC2F850" bold="true" box="[136,266,1979,2000]" pageId="42" pageNumber="261">FIGURE 19.</emphasis>
Macroscopic characters of

View file

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@ -102,7 +103,7 @@ L.A. Parra, C. Billette, Angelini, G. Mata &amp; Callac
.
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(
<figureCitation id="132B53A9A326FFCDF535FC7CFB52FC2D" box="[1097,1178,916,941]" captionStart="FIGURE 21" captionStartId="46.[136,229,1944,1965]" captionTargetBox="[183,1405,190,1918]" captionTargetId="figure-17@46.[183,1405,190,1919]" captionTargetPageId="46" captionText="FIGURE 21. Macroscopic characters of A. tephrolepidus. AE. Basidiomata. AB. (JBSD123822, holotype); CE. (Mata &amp; Billette 745). Microscopic characters of A. tephrolepidus (FI, KL in ammoniacal Congo red; J in water). FL. (JBSD123822, holotype). F. Cheilocystidia. G. Basidia. H. Spores. I. Hyphae of the lower surface of the annulus (terminal hyphae are marked with an asterisk). JL. Pileipellis hyphae (one terminal hypha). Photos by C. Angelini (AB, FG), C. Billette (CE) and L.A. Parra (HK)." pageId="45" pageNumber="264">Fig. 21</figureCitation>
<figureCitation id="132B53A9A326FFCDF535FC7CFB52FC2D" box="[1097,1178,916,941]" captionStart="FIGURE 21" captionStartId="46.[136,229,1944,1965]" captionTargetBox="[183,1405,190,1918]" captionTargetId="figure-17@46.[183,1405,190,1919]" captionTargetPageId="46" captionText="FIGURE 21. Macroscopic characters of A. tephrolepidus. AE. Basidiomata. AB. (JBSD123822, holotype); CE. (Mata &amp; Billette 745). Microscopic characters of A. tephrolepidus (FI, KL in ammoniacal Congo red; J in water). FL. (JBSD123822, holotype). F. Cheilocystidia. G. Basidia. H. Spores. I. Hyphae of the lower surface of the annulus (terminal hyphae are marked with an asterisk). JL. Pileipellis hyphae (one terminal hypha). Photos by C. Angelini (AB, FG), C. Billette (CE) and L.A. Parra (HK)." figureDoi="http://doi.org/10.5281/zenodo.13708493" httpUri="https://zenodo.org/record/13708493/files/figure.png" pageId="45" pageNumber="264">Fig. 21</figureCitation>
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@ -172,7 +173,7 @@ not observed.
<emphasis id="B964933EA326FFCDF1C1F818FE3BF789" bold="true" box="[189,499,2032,2057]" pageId="45" pageNumber="264">Macrochemical reactions:</emphasis>
Schäffers reaction negative. KOH reaction positive, color yellow.
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<emphasis id="B964933EA325FFCEF1F4F870FEC4F82D" bold="true" box="[136,268,1944,1965]" pageId="46" pageNumber="265">FIGURE 21.</emphasis>
Macroscopic characters of

View file

@ -1,94 +1,95 @@
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@ -100,7 +101,7 @@ Pegler, Kew Bull. Addit. Ser.
6: 436. 1983
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. (
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@ -269,7 +270,7 @@ belongs to A. sect.
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within which no species with positive Schäffers reactions are currently known.
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<emphasis id="B964933EA323FFC8F1F4F870FEC2F82D" bold="true" box="[136,266,1944,1965]" pageId="40" pageNumber="259">FIGURE 18.</emphasis>
Macroscopic characters of

View file

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@ -66,9 +67,9 @@ Promm., Suddee &amp; Kidyoo
<taxonomicNameLabel id="A226DC25FFB9FFB13B94FD09FC8411A4" box="[751,835,694,719]" pageId="3" pageNumber="93" rank="species">sp. nov.</taxonomicNameLabel>
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(
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<figureCitation id="135AA1C9FFB9FFB13A29FD09FC6611A4" box="[850,929,694,719]" captionStart="FIGURE 2" captionStartId="4.[136,229,1878,1899]" captionTargetBox="[151,1436,190,1853]" captionTargetId="figure-14@4.[151,1436,190,1853]" captionTargetPageId="4" captionText="FIGURE 2. Dendrobium obchantiae. A. Habitat. B. Inflorescence. C. Flower. D. Fruit. E. Labellum with three keels and side lobes. F. Host in natural habitat. Dendrobium incurvum. G. Habit and inflorescence. H. Flower, side view. I. Labellum with three keels and no side lobes. J. Host in natural habitat. AC, photos by W. Buddhawong; DJ by P. Prommanut." figureDoi="http://doi.org/10.5281/zenodo.13708932" httpUri="https://zenodo.org/record/13708932/files/figure.png" pageId="3" pageNumber="93">Figs. 2</figureCitation>
,
<figureCitation id="135AA1C9FFB9FFB13AD6FD09FC7C11A4" box="[941,955,694,719]" captionStart="FIGURE 3" captionStartId="5.[136,229,1878,1899]" captionTargetBox="[155,1414,222,1853]" captionTargetId="figure-16@5.[151,1436,190,1853]" captionTargetPageId="5" captionText="FIGURE 3. Dendrobium obchantiae. A. Habit. B. Inflorescence. C. Flower front view. D. Flower side view. E. Lateral sepal. F. Dorsal sepal. G. Petals. H. Labellum with three keels and side lobes. I. Column. J. Operculum. K. Pollinia. L. Fruit. Drawn by P. Prommanut from Prommanut &amp; Buddhawong 703." pageId="3" pageNumber="93">3</figureCitation>
<figureCitation id="135AA1C9FFB9FFB13AD6FD09FC7C11A4" box="[941,955,694,719]" captionStart="FIGURE 3" captionStartId="5.[136,229,1878,1899]" captionTargetBox="[155,1414,222,1853]" captionTargetId="figure-16@5.[151,1436,190,1853]" captionTargetPageId="5" captionText="FIGURE 3. Dendrobium obchantiae. A. Habit. B. Inflorescence. C. Flower front view. D. Flower side view. E. Lateral sepal. F. Dorsal sepal. G. Petals. H. Labellum with three keels and side lobes. I. Column. J. Operculum. K. Pollinia. L. Fruit. Drawn by P. Prommanut from Prommanut &amp; Buddhawong 703." figureDoi="http://doi.org/10.5281/zenodo.13708940" httpUri="https://zenodo.org/record/13708940/files/figure.png" pageId="3" pageNumber="93">3</figureCitation>
)
</heading>
</paragraph>
@ -135,7 +136,7 @@ at base; stigmatic cavity green, circular or ovate shaped, stelidia obtuse, anth
long, glabrous, waxy, 6-grooved. Capsule green, ellipsoidal, 1.82.0 × 0.81.0 cm, with 3 obtuse keels, apex with scarious, persistent sepals and petals.
</paragraph>
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<caption id="DF1EEDC4FFBEFFB639F3F8E9FC1814D8" ID-DOI="http://doi.org/10.5281/zenodo.13708932" ID-Zenodo-Dep="13708932" httpUri="https://zenodo.org/record/13708932/files/figure.png" pageId="4" pageNumber="94" startId="4.[136,229,1878,1899]" targetBox="[151,1436,190,1853]" targetPageId="4" targetType="figure">
<paragraph id="8BDEBD4CFFBEFFB639F3F8E9FC1814D8" blockId="4.[136,1452,1878,1971]" pageId="4" pageNumber="94">
<emphasis id="B915615EFFBEFFB639F3F8E9FF381400" bold="true" box="[136,255,1878,1899]" pageId="4" pageNumber="94">FIGURE 2.</emphasis>
<taxonomicName id="4C61C6CFFFBEFFB6387DF8E9FE371400" authorityName="Promm., Suddee &amp; Kidyoo" authorityYear="2018" box="[262,496,1878,1899]" class="Liliopsida" family="Orchidaceae" genus="Dendrobium" kingdom="Plantae" order="Asparagales" pageId="4" pageNumber="94" phylum="Tracheophyta" rank="species" species="obchantiae">
@ -148,7 +149,7 @@ long, glabrous, waxy, 6-grooved. Capsule green, ellipsoidal, 1.82.0 × 0.8
. G. Habit and inflorescence. H. Flower, side view. I. Labellum with three keels and no side lobes. J. Host in natural habitat. AC, photos by W. Buddhawong; DJ by P. Prommanut.
</paragraph>
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<caption id="DF1EEDC4FFBFFFB739F3F8E9FE0114D8" ID-DOI="http://doi.org/10.5281/zenodo.13708940" ID-Zenodo-Dep="13708940" httpUri="https://zenodo.org/record/13708940/files/figure.png" pageId="5" pageNumber="95" startId="5.[136,229,1878,1899]" targetBox="[155,1414,222,1853]" targetPageId="5" targetType="figure">
<paragraph id="8BDEBD4CFFBFFFB739F3F8E9FE0114D8" blockId="5.[136,1452,1878,1971]" pageId="5" pageNumber="95">
<emphasis id="B915615EFFBFFFB739F3F8E9FF391400" bold="true" box="[136,254,1878,1899]" pageId="5" pageNumber="95">FIGURE 3.</emphasis>
<taxonomicName id="4C61C6CFFFBFFFB7387EF8E9FE371400" authorityName="Promm., Suddee &amp; Kidyoo" authorityYear="2018" box="[261,496,1878,1899]" class="Liliopsida" family="Orchidaceae" genus="Dendrobium" kingdom="Plantae" order="Asparagales" pageId="5" pageNumber="95" phylum="Tracheophyta" rank="species" species="obchantiae">
@ -238,7 +239,7 @@ has pale green or greenish yellow flowers, lax inflorescence (23-flowered per
has dense inflorescence (512- flowered per inflorescence), white flowers, oblong-linear dorsal sepal, narrowly falcate or obliquely falcate-lanceolate lateral sepals, linear-oblanceolate and not recurved petals, narrow lanceolate labellum without side lobes and narrowly conical mentum forming a spur (
<tableCitation id="C6E388F7FFBCFFB43B71FC2BFD9D10C6" box="[522,602,916,941]" captionStart="TABLE 2" captionStartId="6.[136,229,1132,1157]" captionText="TABLE 2. Morphological differences between of Dendrobium obchantiae and D. incurvum." pageId="6" pageNumber="96">Table2</tableCitation>
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<figureCitation id="135AA1C9FFBCFFB43B12FC2BFD7510C6" box="[617,690,916,941]" captionStart="FIGURE 2" captionStartId="4.[136,229,1878,1899]" captionTargetBox="[151,1436,190,1853]" captionTargetId="figure-14@4.[151,1436,190,1853]" captionTargetPageId="4" captionText="FIGURE 2. Dendrobium obchantiae. A. Habitat. B. Inflorescence. C. Flower. D. Fruit. E. Labellum with three keels and side lobes. F. Host in natural habitat. Dendrobium incurvum. G. Habit and inflorescence. H. Flower, side view. I. Labellum with three keels and no side lobes. J. Host in natural habitat. AC, photos by W. Buddhawong; DJ by P. Prommanut." pageId="6" pageNumber="96">Fig. 2</figureCitation>
<figureCitation id="135AA1C9FFBCFFB43B12FC2BFD7510C6" box="[617,690,916,941]" captionStart="FIGURE 2" captionStartId="4.[136,229,1878,1899]" captionTargetBox="[151,1436,190,1853]" captionTargetId="figure-14@4.[151,1436,190,1853]" captionTargetPageId="4" captionText="FIGURE 2. Dendrobium obchantiae. A. Habitat. B. Inflorescence. C. Flower. D. Fruit. E. Labellum with three keels and side lobes. F. Host in natural habitat. Dendrobium incurvum. G. Habit and inflorescence. H. Flower, side view. I. Labellum with three keels and no side lobes. J. Host in natural habitat. AC, photos by W. Buddhawong; DJ by P. Prommanut." figureDoi="http://doi.org/10.5281/zenodo.13708932" httpUri="https://zenodo.org/record/13708932/files/figure.png" pageId="6" pageNumber="96">Fig. 2</figureCitation>
). Additionally,
<taxonomicName id="4C61C6CFFFBCFFB43A1DFC2BFC3110C6" box="[870,1014,916,941]" class="Liliopsida" family="Orchidaceae" genus="Dendrobium" kingdom="Plantae" order="Asparagales" pageId="6" pageNumber="96" phylum="Tracheophyta" rank="species" species="incurvum">
<emphasis id="B915615EFFBCFFB43A1DFC2BFC3110C6" box="[870,1014,916,941]" italics="true" pageId="6" pageNumber="96">D. incurvum</emphasis>

View file

@ -1,57 +1,58 @@
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Lebel sp. 2
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View file

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@ -65,7 +66,7 @@ T. Lebel &amp; M.D. Barrett
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@ -65,13 +66,13 @@ T. Lebel, Pennycook &amp; Beever
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<emphasis id="B90CEAE76A22B754FF05FA9161C6FA31" bold="true" box="[136,252,1392,1413]" pageId="9" pageNumber="172">FIGURE 8.</emphasis>
<taxonomicName id="4C784D766A22B754FE8CFA9160F0FA31" authorityName="Lebel &amp; Pennycook &amp; Barrett" authorityYear="2018" box="[257,458,1392,1413]" class="Agaricomycetes" family="Sclerodermataceae" genus="Pisolithus" kingdom="Fungi" order="Boletales" pageId="9" pageNumber="172" phylum="Basidiomycota" rank="species" species="thermaeus" status="sp. nov.">

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@ -83,7 +84,7 @@ Y. Luo &amp; L. Li
.
</taxonomicNameLabel>
(
<figureCitation id="1373BAEBFFEEFFE51D70FF470588FF2D" box="[620,726,160,185]" captionStart-0="FIGURE 1" captionStart-1="FIGURE 2" captionStart-2="FIGURE 3" captionStartId-0="1.[136,229,2037,2058]" captionStartId-1="2.[136,229,1429,1450]" captionStartId-2="3.[136,229,1593,1614]" captionTargetBox-0="[216,1371,278,2008]" captionTargetBox-1="[154,1435,190,1404]" captionTargetBox-2="[313,1277,190,1568]" captionTargetId-0="figure-50@1.[216,1371,278,2008]" captionTargetId-1="figure-13@2.[151,1436,190,1404]" captionTargetId-2="figure-14@3.[309,1277,190,1568]" captionTargetPageId-0="1" captionTargetPageId-1="2" captionTargetPageId-2="3" captionText-0="FIGURE 1. Holotype sheet of Aquilegia yangii (KUN-1341140)." captionText-1="FIGURE 2. Aquilegia yangii in the wild (photographed by Y. Luo in Jiuzhaigou, Sichuan, China). A. Habitat and habit. B. Portion of inflorescence with flowers and young follicles. C. Basal leaf. D. Flower. E. Sepals (S) and petals (P). F. Stamens (St), staminodia (Sta) and pistils (Pi). G. Follicles." captionText-2="FIGURE 3. Line illustration of Aquilegia yangii. A. Inflorescence. B. Flower. C. Sepal (abaxial side). D. Petal. E. Stamens. F. Pistils. G. Staminodium. H. Follicles." pageId="1" pageNumber="290">Figs. 13</figureCitation>
<figureCitation id="1373BAEBFFEEFFE51D70FF470588FF2D" box="[620,726,160,185]" captionStart-0="FIGURE 1" captionStart-1="FIGURE 2" captionStart-2="FIGURE 3" captionStartId-0="1.[136,229,2037,2058]" captionStartId-1="2.[136,229,1429,1450]" captionStartId-2="3.[136,229,1593,1614]" captionTargetBox-0="[216,1371,278,2008]" captionTargetBox-1="[154,1435,190,1404]" captionTargetBox-2="[313,1277,190,1568]" captionTargetId-0="figure-50@1.[216,1371,278,2008]" captionTargetId-1="figure-13@2.[151,1436,190,1404]" captionTargetId-2="figure-14@3.[309,1277,190,1568]" captionTargetPageId-0="1" captionTargetPageId-1="2" captionTargetPageId-2="3" captionText-0="FIGURE 1. Holotype sheet of Aquilegia yangii (KUN-1341140)." captionText-1="FIGURE 2. Aquilegia yangii in the wild (photographed by Y. Luo in Jiuzhaigou, Sichuan, China). A. Habitat and habit. B. Portion of inflorescence with flowers and young follicles. C. Basal leaf. D. Flower. E. Sepals (S) and petals (P). F. Stamens (St), staminodia (Sta) and pistils (Pi). G. Follicles." captionText-2="FIGURE 3. Line illustration of Aquilegia yangii. A. Inflorescence. B. Flower. C. Sepal (abaxial side). D. Petal. E. Stamens. F. Pistils. G. Staminodium. H. Follicles." figureDoi-0="http://doi.org/10.5281/zenodo.13709141" figureDoi-1="http://doi.org/10.5281/zenodo.13709145" figureDoi-2="http://doi.org/10.5281/zenodo.13709149" httpUri-0="https://zenodo.org/record/13709141/files/figure.png" httpUri-1="https://zenodo.org/record/13709145/files/figure.png" httpUri-2="https://zenodo.org/record/13709149/files/figure.png" pageId="1" pageNumber="290">Figs. 13</figureCitation>
)
</heading>
</paragraph>
@ -107,10 +108,10 @@ Type:—
(
<typeStatus id="54F318CCFFEEFFE51E53FF0D06F9FF6B" box="[335,423,234,255]" pageId="1" pageNumber="290" type="holotype">holotype</typeStatus>
, KUN1341140!). (
<figureCitation id="1373BAEBFFEEFFE51D47FF0D05CDFF6B" box="[603,659,234,255]" captionStart="FIGURE 1" captionStartId="1.[136,229,2037,2058]" captionTargetBox="[216,1371,278,2008]" captionTargetId="figure-50@1.[216,1371,278,2008]" captionTargetPageId="1" captionText="FIGURE 1. Holotype sheet of Aquilegia yangii (KUN-1341140)." pageId="1" pageNumber="290">Fig. 1</figureCitation>
<figureCitation id="1373BAEBFFEEFFE51D47FF0D05CDFF6B" box="[603,659,234,255]" captionStart="FIGURE 1" captionStartId="1.[136,229,2037,2058]" captionTargetBox="[216,1371,278,2008]" captionTargetId="figure-50@1.[216,1371,278,2008]" captionTargetPageId="1" captionText="FIGURE 1. Holotype sheet of Aquilegia yangii (KUN-1341140)." figureDoi="http://doi.org/10.5281/zenodo.13709141" httpUri="https://zenodo.org/record/13709141/files/figure.png" pageId="1" pageNumber="290">Fig. 1</figureCitation>
).
</paragraph>
<caption id="DF37F6E6FFEEFFE51F94F812045EF79E" box="[136,768,2037,2058]" pageId="1" pageNumber="290" startId="1.[136,229,2037,2058]" targetBox="[216,1371,278,2008]" targetPageId="1" targetType="figure">
<caption id="DF37F6E6FFEEFFE51F94F812045EF79E" ID-DOI="http://doi.org/10.5281/zenodo.13709141" ID-Zenodo-Dep="13709141" box="[136,768,2037,2058]" httpUri="https://zenodo.org/record/13709141/files/figure.png" pageId="1" pageNumber="290" startId="1.[136,229,2037,2058]" targetBox="[216,1371,278,2008]" targetPageId="1" targetType="figure">
<paragraph id="8BF7A66EFFEEFFE51F94F812045EF79E" blockId="1.[136,768,2037,2058]" box="[136,768,2037,2058]" pageId="1" pageNumber="290">
<emphasis id="B93C7A7CFFEEFFE51F94F81207A0F79E" bold="true" box="[136,254,2037,2058]" pageId="1" pageNumber="290">FIGURE 1.</emphasis>
Holotype sheet of
@ -120,7 +121,7 @@ Holotype sheet of
(KUN-1341140).
</paragraph>
</caption>
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<paragraph id="8BF7A66EFFEDFFE61F94FA7206C9FA66" blockId="2.[136,1452,1429,1522]" pageId="2" pageNumber="291">
<emphasis id="B93C7A7CFFEDFFE61F94FA7207A1FA3E" bold="true" box="[136,255,1429,1450]" pageId="2" pageNumber="291">FIGURE 2.</emphasis>
<taxonomicName id="4C48DDEDFFEDFFE61E1BFA7206F6FA3E" authorityName="Y. Luo &amp; L. Li" authorityYear="2018" box="[263,424,1429,1450]" class="Magnoliopsida" family="Ranunculaceae" genus="Aquilegia" kingdom="Plantae" order="Ranunculales" pageId="2" pageNumber="291" phylum="Tracheophyta" rank="species" species="yangii">
@ -163,7 +164,7 @@ long), glandular pubescent. Seeds ca.
long, with irregularly swollen surface.
</paragraph>
</subSubSection>
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<caption id="DF37F6E6FFECFFE71F94F9DE06D3F9E6" ID-DOI="http://doi.org/10.5281/zenodo.13709149" ID-Zenodo-Dep="13709149" httpUri="https://zenodo.org/record/13709149/files/figure.png" pageId="3" pageNumber="292" startId="3.[136,229,1593,1614]" targetBox="[313,1277,190,1568]" targetPageId="3" targetType="figure">
<paragraph id="8BF7A66EFFECFFE71F94F9DE06D3F9E6" blockId="3.[136,1452,1593,1650]" pageId="3" pageNumber="292">
<emphasis id="B93C7A7CFFECFFE71F94F9DE07A0F9DA" bold="true" box="[136,254,1593,1614]" pageId="3" pageNumber="292">FIGURE 3.</emphasis>
Line illustration of
@ -799,7 +800,7 @@ in having dark purple (claretred to violet) spurs and yellow (yellowish-white) l
<emphasis id="B93C7A7CFFEBFFE01B18F94F03C0F955" box="[1028,1182,1704,1729]" italics="true" pageId="4" pageNumber="293">A. kansuensis</emphasis>
</taxonomicName>
in leaf shape, suberect, oblong-elliptic petal laminae that are longer than the spurs, but differs by having smaller flowers, yellow petal laminae (vs. white), yellow anthers and a seed coat irregularly swollen without obvious outlines of epidermis cells (
<figureCitation id="1373BAEBFFEBFFE01A4BF90802C3F89C" box="[1367,1437,1775,1800]" captionStart="FIGURE 5" captionStartId="5.[136,229,1502,1523]" captionTargetBox="[156,1432,193,1473]" captionTargetId="figure-14@5.[151,1437,190,1478]" captionTargetPageId="5" captionText="FIGURE 5. SEM micrographs of seed surface in three species of Aquilegia. A, B. A. yangii. C, D. A. kansuensis. E, F. A. oxysepala. Scale bars: 100 μm (A, C, E) or 10 μm (B, D, F)." pageId="4" pageNumber="293">Fig. 5</figureCitation>
<figureCitation id="1373BAEBFFEBFFE01A4BF90802C3F89C" box="[1367,1437,1775,1800]" captionStart="FIGURE 5" captionStartId="5.[136,229,1502,1523]" captionTargetBox="[156,1432,193,1473]" captionTargetId="figure-14@5.[151,1437,190,1478]" captionTargetPageId="5" captionText="FIGURE 5. SEM micrographs of seed surface in three species of Aquilegia. A, B. A. yangii. C, D. A. kansuensis. E, F. A. oxysepala. Scale bars: 100 μm (A, C, E) or 10 μm (B, D, F)." figureDoi="http://doi.org/10.5281/zenodo.13709151" httpUri="https://zenodo.org/record/13709151/files/figure.png" pageId="4" pageNumber="293">Fig. 5</figureCitation>
). Stamens of
<taxonomicName id="4C48DDEDFFEBFFE01E0EF8F406FAF8B8" box="[274,420,1811,1836]" class="Magnoliopsida" family="Ranunculaceae" genus="Aquilegia" kingdom="Plantae" order="Ranunculales" pageId="4" pageNumber="293" phylum="Tracheophyta" rank="species" species="oxysepala">
<emphasis id="B93C7A7CFFEBFFE01E0EF8F406FAF8B8" box="[274,420,1811,1836]" italics="true" pageId="4" pageNumber="293">A. oxysepala</emphasis>
@ -813,7 +814,7 @@ become dark in older flowers as anthers dehisce, whereas
<emphasis id="B93C7A7CFFEBFFE01A3BF8F402D1F8B8" box="[1319,1423,1811,1836]" italics="true" pageId="4" pageNumber="293">A. yangii</emphasis>
</taxonomicName>
is characterized by yellow anthers throughout its flowering time (
<figureCitation id="1373BAEBFFEBFFE01C5FF8D104D9F8DB" box="[835,903,1846,1871]" captionStart="FIGURE 6" captionStartId="5.[136,229,1937,1958]" captionTargetBox="[323,1265,1610,1912]" captionTargetId="figure-59@5.[323,1265,1610,1912]" captionTargetPageId="5" captionText="FIGURE 6. Flowers in three species of Aquilegia. A. A. kansuensis (photographed by B. Liu). B. A. yangii (photographed by B. Liu). C. A. oxysepala (photographed by D. Yakubov). Insets: flowers with the sepals and petals removed." pageId="4" pageNumber="293">Fig. 6</figureCitation>
<figureCitation id="1373BAEBFFEBFFE01C5FF8D104D9F8DB" box="[835,903,1846,1871]" captionStart="FIGURE 6" captionStartId="5.[136,229,1937,1958]" captionTargetBox="[323,1265,1610,1912]" captionTargetId="figure-59@5.[323,1265,1610,1912]" captionTargetPageId="5" captionText="FIGURE 6. Flowers in three species of Aquilegia. A. A. kansuensis (photographed by B. Liu). B. A. yangii (photographed by B. Liu). C. A. oxysepala (photographed by D. Yakubov). Insets: flowers with the sepals and petals removed." figureDoi="http://doi.org/10.5281/zenodo.13709155" httpUri="https://zenodo.org/record/13709155/files/figure.png" pageId="4" pageNumber="293">Fig. 6</figureCitation>
). Individual plants or hybridogenetic populations characterized by intermediate features may occur in sites where the species habitats are in contact. In rare cases, one of the parent species may be absent from such locations, due to the activity of insect pollinators. The morphological differences between the new species,
<taxonomicName id="4C48DDEDFFEBFFE01D30F84705E5F82D" box="[556,699,1952,1977]" class="Magnoliopsida" family="Ranunculaceae" genus="Aquilegia" kingdom="Plantae" order="Ranunculales" pageId="4" pageNumber="293" phylum="Tracheophyta" rank="species" species="oxysepala">
<emphasis id="B93C7A7CFFEBFFE01D30F84705E5F82D" box="[556,699,1952,1977]" italics="true" pageId="4" pageNumber="293">A. oxysepala</emphasis>

View file

@ -1,71 +1,72 @@
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@ -86,7 +87,7 @@ Z.L. Luo, Maharachch. &amp; Cheew
Index Fungorum number: IF554446;
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: FoF 04476,
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FIGURE 6.

View file

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@ -89,7 +90,7 @@ Jech.,
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@ -153,7 +154,7 @@ integrated, terminal, later becoming intercalary, monophialidic or polyphialidic
is found on submerged wood in fresh water habitats in
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, and this species (
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) was treated in detail by
<bibRefCitation id="EFDD4B434126FFA2FE0DFE84C2EBFEAC" author="Reblova, M. &amp; Gams, W. &amp; Seifert, K. A." box="[494,734,304,329]" pageId="5" pageNumber="192" pagination="163 - 191" refId="ref6929" refString="Reblova, M., Gams, W. &amp; Seifert, K. A. (2011) Monilochaetes and allied genera of the Glomerellales, and a reconsideration of families in the Microascales. Studies in Mycology 68: 163 - 191. https: // doi. org / 10.3114 / sim. 2011.68.07" type="journal article" year="2011">
Réblová

View file

@ -1,71 +1,72 @@
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@ -86,7 +87,7 @@ Maharachch., H.Y. Su &amp; Cheew
Index Fungorum number: IF554445;
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@ -66,9 +67,9 @@ Y. F. Xie &amp; Z. X. Zhang
</emphasis>
(
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<figureCitation id="13630BC8FFA9FFB14A2BAEB6FCA24E9F" box="[810,878,1254,1279]" captionStart="FIGURE 3" captionStartId="4.[136,229,1308,1329]" captionTargetBox="[151,1436,190,1277]" captionTargetId="figure-20@4.[151,1436,190,1284]" captionTargetPageId="4" captionText="FIGURE 3. Field photos of Sloanea longiaculeatae Y. F. Xie &amp; Z. X. Zhang A. habitat, B. leaf adaxially, C. leaf abaxially, D. young fruit, E. fruit, F. branch. (corresponding specimen: Y.F. Xie &amp; J. Zhang 2027)" pageId="2" pageNumber="191">Fig. 3</figureCitation>
<figureCitation id="13630BC8FFA9FFB14A2BAEB6FCA24E9F" box="[810,878,1254,1279]" captionStart="FIGURE 3" captionStartId="4.[136,229,1308,1329]" captionTargetBox="[151,1436,190,1277]" captionTargetId="figure-20@4.[151,1436,190,1284]" captionTargetPageId="4" captionText="FIGURE 3. Field photos of Sloanea longiaculeatae Y. F. Xie &amp; Z. X. Zhang A. habitat, B. leaf adaxially, C. leaf abaxially, D. young fruit, E. fruit, F. branch. (corresponding specimen: Y.F. Xie &amp; J. Zhang 2027)" figureDoi="http://doi.org/10.5281/zenodo.13708292" httpUri="https://zenodo.org/record/13708292/files/figure.png" pageId="2" pageNumber="191">Fig. 3</figureCitation>
,
<figureCitation id="13630BC8FFA9FFB14A7AAEB6FC454E9F" box="[891,905,1254,1279]" captionStart="FIGURE 4" captionStartId="5.[136,229,1953,1974]" captionTargetBox="[180,1408,203,1894]" captionTargetId="figure-14@5.[179,1409,190,1929]" captionTargetPageId="5" captionText="FIGURE 4. Illustration of Sloanea longiaculeatae Y. F. Xie &amp; Z. X. Zhang A. leaf and hairs on abaxial side, B. fruit, C. prickles. (Draw by Yun-Xi ZHU)" pageId="2" pageNumber="191">4</figureCitation>
<figureCitation id="13630BC8FFA9FFB14A7AAEB6FC454E9F" box="[891,905,1254,1279]" captionStart="FIGURE 4" captionStartId="5.[136,229,1953,1974]" captionTargetBox="[180,1408,203,1894]" captionTargetId="figure-14@5.[179,1409,190,1929]" captionTargetPageId="5" captionText="FIGURE 4. Illustration of Sloanea longiaculeatae Y. F. Xie &amp; Z. X. Zhang A. leaf and hairs on abaxial side, B. fruit, C. prickles. (Draw by Yun-Xi ZHU)" figureDoi="http://doi.org/10.5281/zenodo.13708294" httpUri="https://zenodo.org/record/13708294/files/figure.png" pageId="2" pageNumber="191">4</figureCitation>
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@ -195,7 +196,7 @@ is a nomen nudum according to the Code (McNeill
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2012). And our field surveys prove that this species is not only distributed in Maguan county.
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<emphasis id="B92CCB5FFFA8FFB04989ADC2FF324DC7" bold="true" box="[136,254,1938,1959]" pageId="3" pageNumber="192">FIGURE 2.</emphasis>
Flower morphology of
@ -235,7 +236,7 @@ fruit. (The fruit photoed by Xi-Bing GUO) (corresponding specimen: Flower,
00095734).
</paragraph>
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<emphasis id="B92CCB5FFFAFFFB74989AF4CFF314F51" bold="true" box="[136,253,1308,1329]" pageId="4" pageNumber="193">FIGURE 3.</emphasis>
Field photos of

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<mods:affiliation id="2407455AFFFD7A032E225E7FC9E5AE53">Instituto de Pesquisas Jardim Botânico do Rio de Janeiro, Rua Pacheco Leão, 915. 22460 - 030, Rio de Janeiro, RJ, Brazil;</mods:affiliation>
<mods:namePart id="05BE52C24EB4B38C16A7BC2CE5FF77C9">Cardoso, Leandro Jorge Telles</mods:namePart>
<mods:affiliation id="6758EA7B70FBFF85D6AF7052B327EB9B">Instituto de Pesquisas Jardim Botânico do Rio de Janeiro, Rua Pacheco Leão, 915. 22460 - 030, Rio de Janeiro, RJ, Brazil;</mods:affiliation>
</mods:name>
<mods:name id="A346E5647D9866C5B00B2E226B6249FE" type="personal">
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</mods:role>
<mods:namePart id="D6F1783E13AEA855AA0BAFE35F16C6C8">Smidt, Eric De Camargo</mods:namePart>
<mods:affiliation id="362DB3F311B3779750D07D7C98B7B32C">Laboratório de Sistemática e Ecologia Molecular de Plantas, Universidade Federal do Paraná, Av. Cel. Francisco H. dos Santos, 210. 81531 - 980, Curitiba, PR, Brazil.</mods:affiliation>
<mods:namePart id="4FDD0D9BE287C1398526F5B9D8AE64F0">Smidt, Eric De Camargo</mods:namePart>
<mods:affiliation id="980D7A1CCDCE5184F192F6662ADA0C85">Laboratório de Sistemática e Ecologia Molecular de Plantas, Universidade Federal do Paraná, Av. Cel. Francisco H. dos Santos, 210. 81531 - 980, Curitiba, PR, Brazil.</mods:affiliation>
</mods:name>
<mods:name id="60670B10EF65ECB38E40C91D7A9CB73A" type="personal">
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<mods:namePart id="7BB8F7F50898E50189F8EBC5F98B7204">Braga, João Marcelo Alvarenga</mods:namePart>
<mods:affiliation id="140228318A69A04068D37127D84EB8AD">Instituto de Pesquisas Jardim Botânico do Rio de Janeiro, Rua Pacheco Leão, 915. 22460 - 030, Rio de Janeiro, RJ, Brazil;</mods:affiliation>
<mods:namePart id="D00BAE0CCF9DC8224C0FBEBBDD9090DE">Braga, João Marcelo Alvarenga</mods:namePart>
<mods:affiliation id="901001FD50478AE7FA55B9F80F6CA16F">Instituto de Pesquisas Jardim Botânico do Rio de Janeiro, Rua Pacheco Leão, 915. 22460 - 030, Rio de Janeiro, RJ, Brazil;</mods:affiliation>
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<treatment id="03FB8053FF89FFBEFF0DFA8BAA6AF902" LSID="urn:lsid:plazi:treatment:03FB8053FF89FFBEFF0DFA8BAA6AF902" httpUri="http://treatment.plazi.org/id/03FB8053FF89FFBEFF0DFA8BAA6AF902" lastPageId="3" lastPageNumber="282" pageId="2" pageNumber="281">
<subSubSection id="C34862CEFF89FFBFFF0DFA8BAC2AFACE" box="[136,1047,1364,1391]" pageId="2" pageNumber="281" type="nomenclature">
@ -167,7 +168,7 @@ After being neglected for such a long period of time and having already been con
), the original manuscript of Fr. Leandro do Sacramento was finally discovered in 2011 at the National Library of
<collectingCountry id="F34571D5FF89FFBFFE84F8D9A978F8BE" box="[257,325,1798,1823]" name="Brazil" pageId="2" pageNumber="281">Brazil</collectingCountry>
by the authors (
<figureCitation id="13692DC0FF89FFBFFE7FF8D9AA60F8BE" box="[506,605,1798,1823]" captionStart="FIGURE 2" captionStartId="3.[136,229,1029,1050]" captionTargetBox="[506,1082,190,1004]" captionTargetId="figure-14@3.[506,1082,190,1004]" captionTargetPageId="3" captionText="FIGURE 2. Part of the original manuscript of Fr. Leandro do Sacramento with description of Archimedea pyramidalis, found in the Archives of The National Library of Brazil. The same manuscript transcribed by Saint-Hilaire (1837)." pageId="2" pageNumber="281">Figure 2</figureCitation>
<figureCitation id="13692DC0FF89FFBFFE7FF8D9AA60F8BE" box="[506,605,1798,1823]" captionStart="FIGURE 2" captionStartId="3.[136,229,1029,1050]" captionTargetBox="[506,1082,190,1004]" captionTargetId="figure-14@3.[506,1082,190,1004]" captionTargetPageId="3" captionText="FIGURE 2. Part of the original manuscript of Fr. Leandro do Sacramento with description of Archimedea pyramidalis, found in the Archives of The National Library of Brazil. The same manuscript transcribed by Saint-Hilaire (1837)." figureDoi="http://doi.org/10.5281/zenodo.13708413" httpUri="https://zenodo.org/record/13708413/files/figure.png" pageId="2" pageNumber="281">Figure 2</figureCitation>
). Based on an analysis of the original manuscript, the omission of the floral bracts made by Fr. Leandro do Sacramento was confirmed, even though this morphological feature was undoubtedly present in the whole
<typeStatus id="54E98FE7FF89FFBFFEF4F891A99CF8C6" box="[369,417,1870,1895]" pageId="2" pageNumber="281">type</typeStatus>
collected by the author himself in
@ -219,7 +220,7 @@ the correct name to be adopted for the plant traditionally known as
</taxonomicName>
.
</paragraph>
<caption id="DF2D61CDFF88FFBEFF0DFBDAAC66FB9F" pageId="3" pageNumber="282" startId="3.[136,229,1029,1050]" targetBox="[506,1082,190,1004]" targetPageId="3" targetType="figure">
<caption id="DF2D61CDFF88FFBEFF0DFBDAAC66FB9F" ID-DOI="http://doi.org/10.5281/zenodo.13708413" ID-Zenodo-Dep="13708413" httpUri="https://zenodo.org/record/13708413/files/figure.png" pageId="3" pageNumber="282" startId="3.[136,229,1029,1050]" targetBox="[506,1082,190,1004]" targetPageId="3" targetType="figure">
<paragraph id="8BED3145FF88FFBEFF0DFBDAAC66FB9F" blockId="3.[136,1451,1029,1086]" pageId="3" pageNumber="282">
<emphasis id="B926ED57FF88FFBEFF0DFBDAA93DFBBB" bold="true" box="[136,256,1029,1050]" pageId="3" pageNumber="282">FIGURE 2.</emphasis>
Part of the original manuscript of Fr. Leandro do Sacramento with description of
@ -239,11 +240,11 @@ A fragment of the type of
, which has been considered lost in the Paris Herbarium (P) since the 19th century, was recently found in Kew Herbarium (K). According to
<bibRefCitation id="EFC34CB4FF88FFBEFC32FB4DAC5DFB0A" author="Hooker, J. D." box="[951,1120,1170,1195]" pageId="3" pageNumber="282" pagination="1 - 68" refId="ref2925" refString="Hooker, J. D. (1856) On the structure and affinities of Balanophoreae. Transactions of the Linnean Society of London 22: 1 - 68. https: // doi. org / 10.1111 / j. 1096 - 3642.1856. tb 00079. x" type="journal article" year="1856">Hooker (1856)</bibRefCitation>
, this duplicate was sent to K by Weddell. The duplicate consists of a small envelope with fragments of two anthers and eight pistillate flowers (
<figureCitation id="13692DC0FF88FFBEFF15FB05A933FB52" box="[144,270,1242,1267]" captionStart="FIGURE 3" captionStartId="4.[136,229,1920,1941]" captionTargetBox="[151,1435,190,1886]" captionTargetId="figure-14@4.[151,1435,190,1895]" captionTargetPageId="4" captionText="FIGURE 3. Lectotype of Archimedea pyramidalis (Leandro do Sacramento s.n., K barcode K000642147). A. General view. B. Pistillate flowers and anthers found in the envelope. C. Envelope information. DE. Fragmented stamens; arrows indicate the overlap of the thecae extremity as result of the different insertion heights in the connective (compare with Figure 1B). F. Pistillate flowers (compare with Figure 1E); arrow shows the cavities where the styles were originally inserted (see also Figure 1D).—Abbreviations: An, anther; Pf, pistillate flower.—Photo credit:A. Royal Botanic Gardens, Kew." pageId="3" pageNumber="282">Figure 3-B</figureCitation>
<figureCitation id="13692DC0FF88FFBEFF15FB05A933FB52" box="[144,270,1242,1267]" captionStart="FIGURE 3" captionStartId="4.[136,229,1920,1941]" captionTargetBox="[151,1435,190,1886]" captionTargetId="figure-14@4.[151,1435,190,1895]" captionTargetPageId="4" captionText="FIGURE 3. Lectotype of Archimedea pyramidalis (Leandro do Sacramento s.n., K barcode K000642147). A. General view. B. Pistillate flowers and anthers found in the envelope. C. Envelope information. DE. Fragmented stamens; arrows indicate the overlap of the thecae extremity as result of the different insertion heights in the connective (compare with Figure 1B). F. Pistillate flowers (compare with Figure 1E); arrow shows the cavities where the styles were originally inserted (see also Figure 1D).—Abbreviations: An, anther; Pf, pistillate flower.—Photo credit:A. Royal Botanic Gardens, Kew." figureDoi="http://doi.org/10.5281/zenodo.13708415" httpUri="https://zenodo.org/record/13708415/files/figure.png" pageId="3" pageNumber="282">Figure 3-B</figureCitation>
). In this duplicate, we found the following handwritten notes: “figured by Weddell” and “paleae [same as floral bracts, see
<bibRefCitation id="EFC34CB4FF88FFBEFECFFB21AA36FAB6" author="Hooker, J. D." box="[330,523,1278,1303]" pageId="3" pageNumber="282" pagination="1 - 68" refId="ref2925" refString="Hooker, J. D. (1856) On the structure and affinities of Balanophoreae. Transactions of the Linnean Society of London 22: 1 - 68. https: // doi. org / 10.1111 / j. 1096 - 3642.1856. tb 00079. x" type="journal article" year="1856">Hooker 1856: 30</bibRefCitation>
] + fruits” (
<figureCitation id="13692DC0FF88FFBEFD0DFB21AB35FAB6" box="[648,776,1278,1303]" captionStart="FIGURE 3" captionStartId="4.[136,229,1920,1941]" captionTargetBox="[151,1435,190,1886]" captionTargetId="figure-14@4.[151,1435,190,1895]" captionTargetPageId="4" captionText="FIGURE 3. Lectotype of Archimedea pyramidalis (Leandro do Sacramento s.n., K barcode K000642147). A. General view. B. Pistillate flowers and anthers found in the envelope. C. Envelope information. DE. Fragmented stamens; arrows indicate the overlap of the thecae extremity as result of the different insertion heights in the connective (compare with Figure 1B). F. Pistillate flowers (compare with Figure 1E); arrow shows the cavities where the styles were originally inserted (see also Figure 1D).—Abbreviations: An, anther; Pf, pistillate flower.—Photo credit:A. Royal Botanic Gardens, Kew." pageId="3" pageNumber="282">Figure 3-C</figureCitation>
<figureCitation id="13692DC0FF88FFBEFD0DFB21AB35FAB6" box="[648,776,1278,1303]" captionStart="FIGURE 3" captionStartId="4.[136,229,1920,1941]" captionTargetBox="[151,1435,190,1886]" captionTargetId="figure-14@4.[151,1435,190,1895]" captionTargetPageId="4" captionText="FIGURE 3. Lectotype of Archimedea pyramidalis (Leandro do Sacramento s.n., K barcode K000642147). A. General view. B. Pistillate flowers and anthers found in the envelope. C. Envelope information. DE. Fragmented stamens; arrows indicate the overlap of the thecae extremity as result of the different insertion heights in the connective (compare with Figure 1B). F. Pistillate flowers (compare with Figure 1E); arrow shows the cavities where the styles were originally inserted (see also Figure 1D).—Abbreviations: An, anther; Pf, pistillate flower.—Photo credit:A. Royal Botanic Gardens, Kew." figureDoi="http://doi.org/10.5281/zenodo.13708415" httpUri="https://zenodo.org/record/13708415/files/figure.png" pageId="3" pageNumber="282">Figure 3-C</figureCitation>
). The collectors name “Leandro” is also written, as well as the collection location: “
<collectingCountry id="F34571D5FF88FFBEFE19FAFDA9D9FA9A" box="[412,484,1314,1339]" name="Brazil" pageId="3" pageNumber="282">Brasil</collectingCountry>
, Rio Jan. [
@ -251,7 +252,7 @@ A fragment of the type of
]” or “Rio Prov. [Province of
<collectingRegion id="4996FFA7FF88FFBEFBCAFAFDACC7FA9A" box="[1103,1274,1314,1339]" country="Brazil" name="Rio de Janeiro" pageId="3" pageNumber="282">Rio de Janeiro</collectingRegion>
]”. Among those fragments, we could discern the anthers with displaced thecae inserted at different heights of the connective, and the pistillate flowers with two cavities where the styles were originally inserted (
<figureCitation id="13692DC0FF88FFBEFB81FAB5AC9BFA22" box="[1028,1190,1386,1411]" captionStart="FIGURE 3" captionStartId="4.[136,229,1920,1941]" captionTargetBox="[151,1435,190,1886]" captionTargetId="figure-14@4.[151,1435,190,1895]" captionTargetPageId="4" captionText="FIGURE 3. Lectotype of Archimedea pyramidalis (Leandro do Sacramento s.n., K barcode K000642147). A. General view. B. Pistillate flowers and anthers found in the envelope. C. Envelope information. DE. Fragmented stamens; arrows indicate the overlap of the thecae extremity as result of the different insertion heights in the connective (compare with Figure 1B). F. Pistillate flowers (compare with Figure 1E); arrow shows the cavities where the styles were originally inserted (see also Figure 1D).—Abbreviations: An, anther; Pf, pistillate flower.—Photo credit:A. Royal Botanic Gardens, Kew." pageId="3" pageNumber="282">Figure 3-DF</figureCitation>
<figureCitation id="13692DC0FF88FFBEFB81FAB5AC9BFA22" box="[1028,1190,1386,1411]" captionStart="FIGURE 3" captionStartId="4.[136,229,1920,1941]" captionTargetBox="[151,1435,190,1886]" captionTargetId="figure-14@4.[151,1435,190,1895]" captionTargetPageId="4" captionText="FIGURE 3. Lectotype of Archimedea pyramidalis (Leandro do Sacramento s.n., K barcode K000642147). A. General view. B. Pistillate flowers and anthers found in the envelope. C. Envelope information. DE. Fragmented stamens; arrows indicate the overlap of the thecae extremity as result of the different insertion heights in the connective (compare with Figure 1B). F. Pistillate flowers (compare with Figure 1E); arrow shows the cavities where the styles were originally inserted (see also Figure 1D).—Abbreviations: An, anther; Pf, pistillate flower.—Photo credit:A. Royal Botanic Gardens, Kew." figureDoi="http://doi.org/10.5281/zenodo.13708415" httpUri="https://zenodo.org/record/13708415/files/figure.png" pageId="3" pageNumber="282">Figure 3-DF</figureCitation>
). According to
<bibRefCitation id="EFC34CB4FF88FFBEFADFFAB5A900FA06" author="Sato, H. A. &amp; Gonzalez, A. M." pageId="3" pageNumber="282" pagination="59 - 72" refId="ref3204" refString="Sato, H. A. &amp; Gonzalez, A. M. (2013) Anatomia y desarrollo de la flor estaminada, microsporogenesis y microgametogenesis en especies de Lophophytum (Balanophoraceae) en la Argentina. Boletin de la Sociedad Argentina de Botanica 48: 59 - 72." type="journal article" year="2013">Sato &amp; Gonzalez (2013</bibRefCitation>
,
@ -280,7 +281,7 @@ of
, as the
<typeStatus id="54E98FE7FF88FFBEFEB1F9C1A9BBF996" box="[308,390,1566,1591]" pageId="3" pageNumber="282" type="epitype">epitype</typeStatus>
(
<figureCitation id="13692DC0FF88FFBEFE12F9C1A9C1F996" box="[407,508,1566,1591]" captionStart="FIGURE 4" captionStartId="5.[136,229,1122,1143]" captionTargetBox="[472,1114,193,1097]" captionTargetId="figure-14@5.[472,1114,190,1097]" captionTargetPageId="5" captionText="FIGURE 4. Epitype of Archimedea pyramidalis (J.M.A. Braga 1623, RB)—Photo credit: Rio de Janeiro Botanical Garden Research Institute. Jabot—Brazilian Flora database." pageId="3" pageNumber="282">Figure 4</figureCitation>
<figureCitation id="13692DC0FF88FFBEFE12F9C1A9C1F996" box="[407,508,1566,1591]" captionStart="FIGURE 4" captionStartId="5.[136,229,1122,1143]" captionTargetBox="[472,1114,193,1097]" captionTargetId="figure-14@5.[472,1114,190,1097]" captionTargetPageId="5" captionText="FIGURE 4. Epitype of Archimedea pyramidalis (J.M.A. Braga 1623, RB)—Photo credit: Rio de Janeiro Botanical Garden Research Institute. Jabot—Brazilian Flora database." figureDoi="http://doi.org/10.5281/zenodo.13708417" httpUri="https://zenodo.org/record/13708417/files/figure.png" pageId="3" pageNumber="282">Figure 4</figureCitation>
). After at least 172 years the collection of the type “
<emphasis id="B926ED57FF88FFBEFBD2F9C1ADA5F996" box="[1111,1432,1566,1591]" italics="true" pageId="3" pageNumber="282">Leandro do Sacramento s.n.</emphasis>
”, this represents the first collection of the species in the

View file

@ -1,76 +1,77 @@
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@ -85,7 +86,7 @@ G.J. Li &amp; R.L. Zhao
<taxonomicNameLabel id="A8F6DA74FFF0F75B56DAF931DEE4EBD1" box="[642,726,1686,1711]" pageId="2" pageNumber="135" rank="species">sp. nov.</taxonomicNameLabel>
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,
<figureCitation id="198AA798FFF0F75B56BCF931DF16EBD1" box="[740,804,1686,1711]" captionStart="FIGURE 2" captionStartId="4.[136,229,1953,1974]" captionTargetBox="[193,1398,201,1916]" captionTargetId="figure-15@4.[181,1408,190,1929]" captionTargetPageId="4" captionText="FIGURE 2. Protubera beijingensis: ZRL20171200 (HMAS279558 holotype) a and b. Basidiocarp; c. Basidiospores; d. Basidia; e. Peridium hyphae (outer layer)." pageId="2" pageNumber="135">Fig. 2</figureCitation>
<figureCitation id="198AA798FFF0F75B56BCF931DF16EBD1" box="[740,804,1686,1711]" captionStart="FIGURE 2" captionStartId="4.[136,229,1953,1974]" captionTargetBox="[193,1398,201,1916]" captionTargetId="figure-15@4.[181,1408,190,1929]" captionTargetPageId="4" captionText="FIGURE 2. Protubera beijingensis: ZRL20171200 (HMAS279558 holotype) a and b. Basidiocarp; c. Basidiospores; d. Basidia; e. Peridium hyphae (outer layer)." figureDoi="http://doi.org/10.5281/zenodo.13708616" httpUri="https://zenodo.org/record/13708616/files/figure.png" pageId="2" pageNumber="135">Fig. 2</figureCitation>
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@ -140,7 +141,7 @@ Short diagnosis—Basidiocarps gasteroid,
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in diam., pale brown intermixed with light green. Peridium bistratal, outer layer composed of repent and interwoven hyphae, 0.51.0 mm thick. Glebal tissues divided into elongated plates arranged centripetally near center. Pale green, gelatinous matrix present in center. Basidiospores 3.45.2 × 1.52.4 μm. Temperate species.
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<emphasis id="B3C5670FFFF1F75A54D0FB77DCC7E99B" bold="true" box="[136,245,1232,1253]" pageId="3" pageNumber="136">FIGURE 1</emphasis>
.

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@ -1,50 +1,51 @@
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<treatment id="104C87CFA851FFE6FF72FB5CFC3B3762" LSID="urn:lsid:plazi:treatment:104C87CFA851FFE6FF72FB5CFC3B3762" httpUri="http://treatment.plazi.org/id/104C87CFA851FFE6FF72FB5CFC3B3762" lastPageId="7" lastPageNumber="148" pageId="4" pageNumber="145">
<treatment id="104C87CFA851FFE6FF72FB5CFC3B3762" ID-DOI="http://doi.org/10.5281/zenodo.13708774" ID-Zenodo-Dep="13708774" LSID="urn:lsid:plazi:treatment:104C87CFA851FFE6FF72FB5CFC3B3762" httpUri="http://treatment.plazi.org/id/104C87CFA851FFE6FF72FB5CFC3B3762" lastPageId="7" lastPageNumber="148" pageId="4" pageNumber="145">
<subSubSection id="D0FF6552A851FFE5FF72FB5CFED6372D" pageId="4" pageNumber="145" type="nomenclature">
<paragraph id="985A36D9A851FFE5FF72FB5CFCFA36D3" blockId="4.[136,860,1236,1263]" box="[136,860,1236,1263]" pageId="4" pageNumber="145">
<heading id="C31281B5A851FFE5FF72FB5CFCFA36D3" box="[136,860,1236,1263]" fontSize="11" level="2" pageId="4" pageNumber="145" reason="3">
@ -57,7 +58,7 @@ Goh &amp; C.H. Kuo
<emphasis id="AA91EACBA851FFE5FD9CFB5EFD1336D3" box="[614,693,1238,1263]" italics="true" pageId="4" pageNumber="145">sp. nov</emphasis>
.
</taxonomicNameLabel>
<figureCitation id="00DE2A5CA851FFE5FD3EFB5EFCFA36D3" box="[708,860,1238,1263]" captionStart-0="FIGURE 1" captionStart-1="FIGURE 2" captionStart-2="FIGURE 3" captionStart-3="FIGURE 4" captionStartId-0="5.[136,229,1413,1434]" captionStartId-1="6.[136,229,2025,2046]" captionStartId-2="7.[136,229,1171,1192]" captionStartId-3="8.[136,229,1960,1981]" captionTargetBox-0="[255,1329,202,1373]" captionTargetBox-1="[264,1329,846,1999]" captionTargetBox-2="[357,1235,192,1140]" captionTargetBox-3="[303,1285,697,1930]" captionTargetId-0="figure-14@5.[240,1348,187,1385]" captionTargetId-1="figure-191@6.[248,1339,843,2003]" captionTargetId-2="figure-14@7.[346,1241,187,1149]" captionTargetId-3="figure-294@8.[291,1297,693,1937]" captionTargetPageId-0="5" captionTargetPageId-1="6" captionTargetPageId-2="7" captionTargetPageId-3="8" captionText-0="FIGURE 1. Helicoön subglobosum (TNM F31003, holotype). a Colonies on natural substratum. b Group of conidia at low magnification; note the shapeof conidia is generally subglobose.ce Highermagnification of conidia.f.A conidiumstill attaching to the short conidiophore arising from superficial hypha. Scale bars: a = 200 μm, b = 100 μm, cd = 50 μm, ef = 20 μm." captionText-1="FIGURE 2. Helicoön subglobosum (TNM F31003, holotype). ap Conidia showing a range of shapes, but mostly subglobose. Scale bars = 20 μm." captionText-2="FIGURE 3. Helicoön subglobosum (BCRC FU30843, ex-type culture). a Single-spore colonies on PDA slants 5 weeks after incubation at 20C. b Colony on PDA plate 5 weeks after incubation at 20 °C. c Higher magnification of colony on PDA. de Chlamydospores in culture. Scale bars: ab = 1 cm, c = 200 μm, de = 10 μm." captionText-3="FIGURE 4. Helicoön subglobosum (TNM F31003, holotype). Scanning electron micrographs. a Colony on natural substratum. bd Conidia and conidiophores on natural substratum. e Higher magnification showing the base of a conidium attaching to conidiophore arising from superficial hypha. f Higher magnification showing the base of a conidium which has detached from the conidiophore. Note that conidial secession is schizolytic. Scale bars: a = 50 μm, bd = 20 μm, e = 10 μm, f = 5 μm." pageId="4" pageNumber="145">FIGURE 14</figureCitation>
<figureCitation id="00DE2A5CA851FFE5FD3EFB5EFCFA36D3" box="[708,860,1238,1263]" captionStart-0="FIGURE 1" captionStart-1="FIGURE 2" captionStart-2="FIGURE 3" captionStart-3="FIGURE 4" captionStartId-0="5.[136,229,1413,1434]" captionStartId-1="6.[136,229,2025,2046]" captionStartId-2="7.[136,229,1171,1192]" captionStartId-3="8.[136,229,1960,1981]" captionTargetBox-0="[255,1329,202,1373]" captionTargetBox-1="[264,1329,846,1999]" captionTargetBox-2="[357,1235,192,1140]" captionTargetBox-3="[303,1285,697,1930]" captionTargetId-0="figure-14@5.[240,1348,187,1385]" captionTargetId-1="figure-191@6.[248,1339,843,2003]" captionTargetId-2="figure-14@7.[346,1241,187,1149]" captionTargetId-3="figure-294@8.[291,1297,693,1937]" captionTargetPageId-0="5" captionTargetPageId-1="6" captionTargetPageId-2="7" captionTargetPageId-3="8" captionText-0="FIGURE 1. Helicoön subglobosum (TNM F31003, holotype). a Colonies on natural substratum. b Group of conidia at low magnification; note the shapeof conidia is generally subglobose.ce Highermagnification of conidia.f.A conidiumstill attaching to the short conidiophore arising from superficial hypha. Scale bars: a = 200 μm, b = 100 μm, cd = 50 μm, ef = 20 μm." captionText-1="FIGURE 2. Helicoön subglobosum (TNM F31003, holotype). ap Conidia showing a range of shapes, but mostly subglobose. Scale bars = 20 μm." captionText-2="FIGURE 3. Helicoön subglobosum (BCRC FU30843, ex-type culture). a Single-spore colonies on PDA slants 5 weeks after incubation at 20C. b Colony on PDA plate 5 weeks after incubation at 20 °C. c Higher magnification of colony on PDA. de Chlamydospores in culture. Scale bars: ab = 1 cm, c = 200 μm, de = 10 μm." captionText-3="FIGURE 4. Helicoön subglobosum (TNM F31003, holotype). Scanning electron micrographs. a Colony on natural substratum. bd Conidia and conidiophores on natural substratum. e Higher magnification showing the base of a conidium attaching to conidiophore arising from superficial hypha. f Higher magnification showing the base of a conidium which has detached from the conidiophore. Note that conidial secession is schizolytic. Scale bars: a = 50 μm, bd = 20 μm, e = 10 μm, f = 5 μm." figureDoi-0="http://doi.org/10.5281/zenodo.13708258" figureDoi-1="http://doi.org/10.5281/zenodo.13708260" figureDoi-2="http://doi.org/10.5281/zenodo.13708262" figureDoi-3="http://doi.org/10.5281/zenodo.13708264" httpUri-0="https://zenodo.org/record/13708258/files/figure.png" httpUri-1="https://zenodo.org/record/13708260/files/figure.png" httpUri-2="https://zenodo.org/record/13708262/files/figure.png" httpUri-3="https://zenodo.org/record/13708264/files/figure.png" pageId="4" pageNumber="145">FIGURE 14</figureCitation>
</heading>
</paragraph>
<paragraph id="985A36D9A851FFE5FF72FB74FED6372D" blockId="4.[136,1438,1276,1369]" box="[136,368,1276,1297]" pageId="4" pageNumber="145">
@ -136,7 +137,7 @@ University (
<collectionCode id="FEF4AE1CA851FFE5FDBEF79AFDD93A17" box="[580,639,2066,2091]" country="USA" httpUri="http://biocol.org/urn:lsid:biocol.org:col:15590" lsid="urn:lsid:biocol.org:col:15590" name="Louisiana State University - Herbarium" pageId="4" pageNumber="145" type="Herbarium">LSU</collectionCode>
).
</paragraph>
<caption id="CC9A6651A850FFE4FF72FA0DFB8537DE" pageId="5" pageNumber="146" startId="5.[136,229,1413,1434]" targetBox="[255,1329,202,1373]" targetPageId="5" targetType="figure">
<caption id="CC9A6651A850FFE4FF72FA0DFB8537DE" ID-DOI="http://doi.org/10.5281/zenodo.13708258" ID-Zenodo-Dep="13708258" httpUri="https://zenodo.org/record/13708258/files/figure.png" pageId="5" pageNumber="146" startId="5.[136,229,1413,1434]" targetBox="[255,1329,202,1373]" targetPageId="5" targetType="figure">
<paragraph id="985A36D9A850FFE4FF72FA0DFB8537DE" blockId="5.[136,1452,1413,1506]" pageId="5" pageNumber="146">
<emphasis id="AA91EACBA850FFE4FF72FA0DFF5B37A6" bold="true" box="[136,253,1413,1434]" pageId="5" pageNumber="146">FIGURE 1.</emphasis>
<taxonomicName id="5FE54D5AA850FFE4FEF8FA0DFE7837A6" authorityName="Goh &amp; C. H. Kuo" authorityYear="2018" box="[258,478,1413,1434]" class="Dothideomycetes" family="Tubeufiaceae" genus="Helicoon" kingdom="Fungi" order="Tubeufiales" pageId="5" pageNumber="146" phylum="Ascomycota" rank="species" species="subglobosum">
@ -162,7 +163,7 @@ diam. in 5 wk at 20 °C. On
plates, colonies attained
<quantity id="5F1D9B3CA850FFE4FB08F9D2FA8E344F" box="[1266,1320,1626,1651]" metricMagnitude="-2" metricUnit="m" metricValue="1.0" pageId="5" pageNumber="146" unit="cm" value="1.0">1 cm</quantity>
diam. in 80 d at 20 °C. Mycelium from culture comprised ramifying hyphae which were hyaline to brown, septate, (2.6)2.9(3.2) μm wide. Chlamydospores were formed in culture, which were uscous, guttulate, globose, (7.1)9.1(10.7) diam. (
<figureCitation id="00DE2A5CA850FFE4FF6AF94EFF7A34E3" box="[144,220,1734,1759]" captionStart="FIGURE 3" captionStartId="7.[136,229,1171,1192]" captionTargetBox="[357,1235,192,1140]" captionTargetId="figure-14@7.[346,1241,187,1149]" captionTargetPageId="7" captionText="FIGURE 3. Helicoön subglobosum (BCRC FU30843, ex-type culture). a Single-spore colonies on PDA slants 5 weeks after incubation at 20C. b Colony on PDA plate 5 weeks after incubation at 20 °C. c Higher magnification of colony on PDA. de Chlamydospores in culture. Scale bars: ab = 1 cm, c = 200 μm, de = 10 μm." pageId="5" pageNumber="146">FIG. 3</figureCitation>
<figureCitation id="00DE2A5CA850FFE4FF6AF94EFF7A34E3" box="[144,220,1734,1759]" captionStart="FIGURE 3" captionStartId="7.[136,229,1171,1192]" captionTargetBox="[357,1235,192,1140]" captionTargetId="figure-14@7.[346,1241,187,1149]" captionTargetPageId="7" captionText="FIGURE 3. Helicoön subglobosum (BCRC FU30843, ex-type culture). a Single-spore colonies on PDA slants 5 weeks after incubation at 20C. b Colony on PDA plate 5 weeks after incubation at 20 °C. c Higher magnification of colony on PDA. de Chlamydospores in culture. Scale bars: ab = 1 cm, c = 200 μm, de = 10 μm." figureDoi="http://doi.org/10.5281/zenodo.13708262" httpUri="https://zenodo.org/record/13708262/files/figure.png" pageId="5" pageNumber="146">FIG. 3</figureCitation>
).
</paragraph>
<paragraph id="985A36D9A850FFE4FF47F962FD423A1F" blockId="5.[136,1452,1554,2083]" pageId="5" pageNumber="146">
@ -179,9 +180,9 @@ is most similar to
)
</taxonomicName>
based on phylogenetic analysis (
<figureCitation id="00DE2A5CA850FFE4FF0EF886FEE5351B" box="[244,323,1806,1831]" captionStart="FIGURE 5" captionStartId="11.[136,229,1903,1924]" captionTargetBox="[186,1403,228,1852]" captionTargetId="figure-14@11.[151,1436,190,1878]" captionTargetPageId="11" captionText="FIGURE 5. Phylogenetic tree (TreeBase TB2:S21492) inferred from aligned ITS sequences of 45 taxa showing relationships of Helicoon species and representative taxa from various ordinal lineages using neighbor-joining method. The optimal tree with the sum of branch length = 2.14463852 is shown. Branch support values bootstrap tests (1000 replicates) above 50 are shown near the nodes (MEGA7/ RAxML/PhyML). The tree is drawn to scale, with branch lengths in the same units as those of the evolutionary distances used to infer the phylogenetic tree. The tree was rooted with Xylaria mellissii." pageId="5" pageNumber="146">FIG. 5</figureCitation>
<figureCitation id="00DE2A5CA850FFE4FF0EF886FEE5351B" box="[244,323,1806,1831]" captionStart="FIGURE 5" captionStartId="11.[136,229,1903,1924]" captionTargetBox="[186,1403,228,1852]" captionTargetId="figure-14@11.[151,1436,190,1878]" captionTargetPageId="11" captionText="FIGURE 5. Phylogenetic tree (TreeBase TB2:S21492) inferred from aligned ITS sequences of 45 taxa showing relationships of Helicoon species and representative taxa from various ordinal lineages using neighbor-joining method. The optimal tree with the sum of branch length = 2.14463852 is shown. Branch support values bootstrap tests (1000 replicates) above 50 are shown near the nodes (MEGA7/ RAxML/PhyML). The tree is drawn to scale, with branch lengths in the same units as those of the evolutionary distances used to infer the phylogenetic tree. The tree was rooted with Xylaria mellissii." figureDoi="http://doi.org/10.5281/zenodo.13708266" httpUri="https://zenodo.org/record/13708266/files/figure.png" pageId="5" pageNumber="146">FIG. 5</figureCitation>
,
<figureCitation id="00DE2A5CA850FFE4FEABF886FEC6351B" box="[337,352,1806,1831]" captionStart="FIGURE 6" captionStartId="12.[136,229,1886,1907]" captionTargetBox="[180,1406,226,1841]" captionTargetId="figure-18@12.[151,1436,190,1862]" captionTargetPageId="12" captionText="FIGURE 6. Phylogenetic tree (TreeBase TB2:S21492) inferred from aligned partial LSU sequences of 58 taxa showing relationships of Helicoon species and representative taxa from various ordinal lineages using neighbor-joining method. The optimal tree with the sum of branch length = 1.89900892 is shown. Branch support values bootstrap tests (1000 replicates) above 50 are shown near the nodes (MEGA7/RAxML/PhyML). The tree is drawn to scale, with branch lengths in the same units as those of the evolutionary distances used to infer the phylogenetic tree. The tree was rooted with Xylaria mellissii." pageId="5" pageNumber="146">6</figureCitation>
<figureCitation id="00DE2A5CA850FFE4FEABF886FEC6351B" box="[337,352,1806,1831]" captionStart="FIGURE 6" captionStartId="12.[136,229,1886,1907]" captionTargetBox="[180,1406,226,1841]" captionTargetId="figure-18@12.[151,1436,190,1862]" captionTargetPageId="12" captionText="FIGURE 6. Phylogenetic tree (TreeBase TB2:S21492) inferred from aligned partial LSU sequences of 58 taxa showing relationships of Helicoon species and representative taxa from various ordinal lineages using neighbor-joining method. The optimal tree with the sum of branch length = 1.89900892 is shown. Branch support values bootstrap tests (1000 replicates) above 50 are shown near the nodes (MEGA7/RAxML/PhyML). The tree is drawn to scale, with branch lengths in the same units as those of the evolutionary distances used to infer the phylogenetic tree. The tree was rooted with Xylaria mellissii." figureDoi="http://doi.org/10.5281/zenodo.13708268" httpUri="https://zenodo.org/record/13708268/files/figure.png" pageId="5" pageNumber="146">6</figureCitation>
) and morphological comparison. Both species have large fuscous conidia producing from short conidiophores which arise as lateral branches from repent hyphae. They both occur on submerged wood from freshwater environments. The conidial filaments in both species are of comparable width, and coiled in a clockwise direction (in the sense of
<bibRefCitation id="FC744B28A850FFE4FE5EF8F2FDF935AF" author="Glen-Bott, J." box="[420,607,1914,1939]" pageId="5" pageNumber="146" pagination="17 - 30" refId="ref10050" refString="Glen-Bott, J. (1955) Helicodendron tubulosum and some similar species. Transaction of the British Mycological Society 38: 17 - 30. https: // doi. org / 10.1016 / S 0007 - 1536 (55) 80003 - 4" type="journal article" year="1955">Glen-Bott, 1955</bibRefCitation>
). However, they differ in several ways and are distinct species. The conidia in
@ -258,7 +259,7 @@ Unknown Unknown
<emphasis id="AA91EACBA853FFE7FF6AFCA9FE27310A" bold="true" box="[144,385,801,822]" pageId="6" pageNumber="147">Phylogenetic placement</emphasis>
<taxonomicName id="5FE54D5AA853FFE7FDD8FCA9FBCC310A" authorityName="M.E.Barr" authorityYear="1979" box="[546,1130,801,822]" class="Dothideomycetes" family="Tubeufiaceae" kingdom="Fungi" order="Tubeufiales" pageId="6" pageNumber="147" phylum="Ascomycota" rank="family">Tubeufiaceae Tubeufiaceae</taxonomicName>
</paragraph>
<caption id="CC9A6651A853FFE7FF72F861FF473A1E" pageId="6" pageNumber="147" startId="6.[136,229,2025,2046]" targetBox="[264,1329,846,1999]" targetPageId="6" targetType="figure">
<caption id="CC9A6651A853FFE7FF72F861FF473A1E" ID-DOI="http://doi.org/10.5281/zenodo.13708260" ID-Zenodo-Dep="13708260" httpUri="https://zenodo.org/record/13708260/files/figure.png" pageId="6" pageNumber="147" startId="6.[136,229,2025,2046]" targetBox="[264,1329,846,1999]" targetPageId="6" targetType="figure">
<paragraph id="985A36D9A853FFE7FF72F861FF473A1E" blockId="6.[136,1451,2025,2082]" pageId="6" pageNumber="147">
<emphasis id="AA91EACBA853FFE7FF72F861FF5B35C2" bold="true" box="[136,253,2025,2046]" pageId="6" pageNumber="147">FIGURE 2.</emphasis>
<taxonomicName id="5FE54D5AA853FFE7FEF9F861FE7935C2" authorityName="Goh &amp; C. H. Kuo" authorityYear="2018" box="[259,479,2025,2046]" class="Dothideomycetes" family="Tubeufiaceae" genus="Helicoon" kingdom="Fungi" order="Tubeufiales" pageId="6" pageNumber="147" phylum="Ascomycota" rank="species" species="subglobosum">
@ -267,7 +268,7 @@ Unknown Unknown
(TNM F31003, holotype). a p Conidia showing a range of shapes, but mostly subglobose. Scale bars = 20 μm.
</paragraph>
</caption>
<caption id="CC9A6651A852FFE6FF72FB1BFDC836CC" pageId="7" pageNumber="148" startId="7.[136,229,1171,1192]" targetBox="[357,1235,192,1140]" targetPageId="7" targetType="figure">
<caption id="CC9A6651A852FFE6FF72FB1BFDC836CC" ID-DOI="http://doi.org/10.5281/zenodo.13708262" ID-Zenodo-Dep="13708262" httpUri="https://zenodo.org/record/13708262/files/figure.png" pageId="7" pageNumber="148" startId="7.[136,229,1171,1192]" targetBox="[357,1235,192,1140]" targetPageId="7" targetType="figure">
<paragraph id="985A36D9A852FFE6FF72FB1BFDC836CC" blockId="7.[136,1453,1171,1264]" pageId="7" pageNumber="148">
<emphasis id="AA91EACBA852FFE6FF72FB1BFF5B3694" bold="true" box="[136,253,1171,1192]" pageId="7" pageNumber="148">FIGURE 3.</emphasis>
<taxonomicName id="5FE54D5AA852FFE6FEF8FB1BFE783694" authorityName="Goh &amp; C. H. Kuo" authorityYear="2018" box="[258,478,1171,1192]" class="Dothideomycetes" family="Tubeufiaceae" genus="Helicoon" kingdom="Fungi" order="Tubeufiales" pageId="7" pageNumber="148" phylum="Ascomycota" rank="species" species="subglobosum">

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@ -1,48 +1,49 @@
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Lectotype of

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<mods:title id="1DE148D2ABCDFFA59984612CB183A5CF">Phytotaxa</mods:title>
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<treatment id="23546B1CE9198612FF7B7EDAFA95EA3B" LSID="urn:lsid:plazi:treatment:23546B1CE9198612FF7B7EDAFA95EA3B" httpUri="http://treatment.plazi.org/id/23546B1CE9198612FF7B7EDAFA95EA3B" lastPageId="3" lastPageNumber="70" pageId="1" pageNumber="68">
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@ -73,7 +74,7 @@ R.J.Wang
<taxonomicNameLabel id="82BABB63E9198610FDEA7ED4FD90EDBF" box="[537,622,408,433]" pageId="1" pageNumber="68" rank="species">sp. nov.</taxonomicNameLabel>
</emphasis>
(
<figureCitation id="33C6C68FE9198610FD8F7ED4FD43EDBF" box="[636,701,408,433]" captionStart="FIGURE 1" captionStartId="2.[136,245,1283,1308]" captionTargetBox="[170,1416,311,1254]" captionTargetId="figure-60@2.[170,1417,311,1254]" captionTargetPageId="2" captionText="FIGURE 1. Morphology of Leptodermis hechiensis. A. Habitat, showing slender branches. B. Leaf, adaxial side. C. Leaves, abaxial side with pale green surface. D. Seed with reticulate aril. E. Inflorescence branches, showing pedicels. F. Calyx and membranous bracteoles. G. Detail of inflorescence, with long-styled flower with 3-lobed style, and immature fruits. H. Dissected long-styled flower, showing stamens insertion and pubescence at corolla mouth. I. Short-styled flower, top view. J. Inflorescence with short-styled flowers, side view. (A from R.J.Wang 2491, B from R.J.Wang, S.Zhou, S.J.Deng, Q.Liao 2153, C from R.J.Wang 1429, D from the type locality, E &amp; I from R.J.Wang, S.Zhou, S.J.Deng, Q.Liao 2154, FH from R.J.Wang &amp; Q.Liao 2491, J from R.J.Wang &amp; Q.Liao 2503). Photos by R.J.Wang" pageId="1" pageNumber="68">Fig. 1</figureCitation>
<figureCitation id="33C6C68FE9198610FD8F7ED4FD43EDBF" box="[636,701,408,433]" captionStart="FIGURE 1" captionStartId="2.[136,245,1283,1308]" captionTargetBox="[170,1416,311,1254]" captionTargetId="figure-60@2.[170,1417,311,1254]" captionTargetPageId="2" captionText="FIGURE 1. Morphology of Leptodermis hechiensis. A. Habitat, showing slender branches. B. Leaf, adaxial side. C. Leaves, abaxial side with pale green surface. D. Seed with reticulate aril. E. Inflorescence branches, showing pedicels. F. Calyx and membranous bracteoles. G. Detail of inflorescence, with long-styled flower with 3-lobed style, and immature fruits. H. Dissected long-styled flower, showing stamens insertion and pubescence at corolla mouth. I. Short-styled flower, top view. J. Inflorescence with short-styled flowers, side view. (A from R.J.Wang 2491, B from R.J.Wang, S.Zhou, S.J.Deng, Q.Liao 2153, C from R.J.Wang 1429, D from the type locality, E &amp; I from R.J.Wang, S.Zhou, S.J.Deng, Q.Liao 2154, FH from R.J.Wang &amp; Q.Liao 2491, J from R.J.Wang &amp; Q.Liao 2503). Photos by R.J.Wang" figureDoi="http://doi.org/10.5281/zenodo.13709207" httpUri="https://zenodo.org/record/13709207/files/figure.png" pageId="1" pageNumber="68">Fig. 1</figureCitation>
)
</heading>
</paragraph>
@ -203,7 +204,7 @@ Autonomous Region,
<collectingCountry id="D3EA9A9AE91A8613FE8C7E40FE38ED2B" box="[383,454,268,293]" name="China" pageId="2" pageNumber="69">China</collectingCountry>
.
</paragraph>
<caption id="FF828A82E91A8613FF7B7A4FFF0AEA16" pageId="2" pageNumber="69" startId="2.[136,245,1283,1308]" targetBox="[170,1416,311,1254]" targetPageId="2" targetType="figure">
<caption id="FF828A82E91A8613FF7B7A4FFF0AEA16" ID-DOI="http://doi.org/10.5281/zenodo.13709207" ID-Zenodo-Dep="13709207" httpUri="https://zenodo.org/record/13709207/files/figure.png" pageId="2" pageNumber="69" startId="2.[136,245,1283,1308]" targetBox="[170,1416,311,1254]" targetPageId="2" targetType="figure">
<paragraph id="AB42DA0AE91A8613FF7B7A4FFF0AEA16" blockId="2.[136,1452,1283,1560]" pageId="2" pageNumber="69">
<emphasis id="99890618E91A8613FF7B7A4FFEEBE912" bold="true" box="[136,277,1283,1308]" pageId="2" pageNumber="69">FIGURE 1.</emphasis>
Morphology of
@ -256,7 +257,7 @@ is known from Hechi City of
,
<collectingCountry id="D3EA9A9AE91A8613FB13790BFADDEA6E" box="[1248,1315,1607,1632]" name="China" pageId="2" pageNumber="69">China</collectingCountry>
(
<figureCitation id="33C6C68FE91A8613FAC1790BFA89EA6E" box="[1330,1399,1607,1632]" captionStart="FIGURE 2" captionStartId="3.[136,245,844,869]" captionTargetBox="[471,1115,383,815]" captionTargetId="figure-122@3.[471,1115,383,815]" captionTargetPageId="3" captionText="FIGURE 2. The allopatric geographical distribution of Leptodermis hechiensis (11 populations), L. coriaceifolia (29 populations) and L. yangshuoensis (five populations)." pageId="2" pageNumber="69">Fig. 2</figureCitation>
<figureCitation id="33C6C68FE91A8613FAC1790BFA89EA6E" box="[1330,1399,1607,1632]" captionStart="FIGURE 2" captionStartId="3.[136,245,844,869]" captionTargetBox="[471,1115,383,815]" captionTargetId="figure-122@3.[471,1115,383,815]" captionTargetPageId="3" captionText="FIGURE 2. The allopatric geographical distribution of Leptodermis hechiensis (11 populations), L. coriaceifolia (29 populations) and L. yangshuoensis (five populations)." figureDoi="http://doi.org/10.5281/zenodo.13709209" httpUri="https://zenodo.org/record/13709209/files/figure.png" pageId="2" pageNumber="69">Fig. 2</figureCitation>
).
</paragraph>
<paragraph id="AB42DA0AE91A8613FF4E7927FE67EAA6" blockId="2.[136,1452,1607,2064]" pageId="2" pageNumber="69">
@ -612,7 +613,7 @@ X.
</materialsCitation>
.
</paragraph>
<caption id="FF828A82E91B8612FF7B7C00FD1CEF87" pageId="3" pageNumber="70" startId="3.[136,245,844,869]" targetBox="[471,1115,383,815]" targetPageId="3" targetType="figure">
<caption id="FF828A82E91B8612FF7B7C00FD1CEF87" ID-DOI="http://doi.org/10.5281/zenodo.13709209" ID-Zenodo-Dep="13709209" httpUri="https://zenodo.org/record/13709209/files/figure.png" pageId="3" pageNumber="70" startId="3.[136,245,844,869]" targetBox="[471,1115,383,815]" targetPageId="3" targetType="figure">
<paragraph id="AB42DA0AE91B8612FF7B7C00FD1CEF87" blockId="3.[136,1451,844,905]" pageId="3" pageNumber="70">
<emphasis id="99890618E91B8612FF7B7C00FEECEF6B" bold="true" box="[136,274,844,869]" pageId="3" pageNumber="70">FIGURE 2.</emphasis>
The allopatric geographical distribution of
@ -646,7 +647,7 @@ species
(
<bibRefCitation id="CF6CA7FBE91B8612FC6A7B68FB4BE833" author="Akiyo, N. &amp; Hidetoshi, N." box="[921,1205,1060,1085]" pageId="3" pageNumber="70" pagination="105 - 113" refId="ref3053" refString="Akiyo, N. &amp; Hidetoshi, N. (2003) Distyly and pollen dimorphism in Damnacanthus (Rubiaceae). Journal of Plant Research 116: 105 - 113. https: // doi. org / 10.1007 / s 10265 - 002 - 0075 - 1" type="journal article" year="2003">Akiyo &amp; Hidetoshi 2003</bibRefCitation>
). Short-styled flowers always presented with larger pollen grains than those of the long-styled flowers. In pollen muri of long-styled flowers, the surface is psilate, whereas it is granula in muri of short-styled flowers (
<figureCitation id="33C6C68FE91B8612FC3D7B20FBECE88B" box="[974,1042,1132,1157]" captionStart="FIGURE 3" captionStartId="4.[136,245,1600,1625]" captionTargetBox="[201,1386,187,1575]" captionTargetId="figure-16@4.[201,1386,187,1575]" captionTargetPageId="4" captionText="FIGURE 3. Leaf epidermis of the three species and pollen grains of Leptodermis hechiensis under SEM. A. adaxial epidermis of L. hechiensis, showing the reticulum of buttressed ridges wax ornamentation and the obscure outline of periclinal walls. B. abaxial epidermis of L. hechiensis, showing the long parallel striae. C. the paracytic stomata of L. hechiensis. D. adaxial epidermis of L. yangshuoensis, showing the radiating striae wax ornamentation and the polygonal outline of the periclinal walls. E. the smooth abaxial epidermis of L. yangshuoensis. F. the paracytic stomata of L. yangshuoensis. G. adaxial epidermis of L. coriaceifolia, showing the short striae wax ornamentation and the polygonal outline of the periclinal walls. H. the smooth abaxial epidermis of L. coriaceifolia. I. the paracytic stomata of L. coriaceifolia. J. long-styled flower pollen, showing the four apertures, polar view. K. long-styled flower pollen, equatorial view. L. short-styled flower pollen, showing the four apertures, polar view. M. short-styled flower pollen, equatorial view. N. aperture for long-styled flower pollen. O. long-styled flower pollen, showing the reticulate sexine with psilate surface. P. aperture for short-styled flower pollen. Q. short-styled flower pollen, showing the reticulate sexine with granula on pollen muri. (AC, J, K, N, O, from R.J.Wang &amp; Q.Liao 2500; DF, from R.J.Wang &amp; Q.Liao 2475; GI, from R.J.Wang 2051; L, M, P, Q, from R.J.Wang &amp; Q.Liao 2501)." pageId="3" pageNumber="70">Fig. 3</figureCitation>
<figureCitation id="33C6C68FE91B8612FC3D7B20FBECE88B" box="[974,1042,1132,1157]" captionStart="FIGURE 3" captionStartId="4.[136,245,1600,1625]" captionTargetBox="[201,1386,187,1575]" captionTargetId="figure-16@4.[201,1386,187,1575]" captionTargetPageId="4" captionText="FIGURE 3. Leaf epidermis of the three species and pollen grains of Leptodermis hechiensis under SEM. A. adaxial epidermis of L. hechiensis, showing the reticulum of buttressed ridges wax ornamentation and the obscure outline of periclinal walls. B. abaxial epidermis of L. hechiensis, showing the long parallel striae. C. the paracytic stomata of L. hechiensis. D. adaxial epidermis of L. yangshuoensis, showing the radiating striae wax ornamentation and the polygonal outline of the periclinal walls. E. the smooth abaxial epidermis of L. yangshuoensis. F. the paracytic stomata of L. yangshuoensis. G. adaxial epidermis of L. coriaceifolia, showing the short striae wax ornamentation and the polygonal outline of the periclinal walls. H. the smooth abaxial epidermis of L. coriaceifolia. I. the paracytic stomata of L. coriaceifolia. J. long-styled flower pollen, showing the four apertures, polar view. K. long-styled flower pollen, equatorial view. L. short-styled flower pollen, showing the four apertures, polar view. M. short-styled flower pollen, equatorial view. N. aperture for long-styled flower pollen. O. long-styled flower pollen, showing the reticulate sexine with psilate surface. P. aperture for short-styled flower pollen. Q. short-styled flower pollen, showing the reticulate sexine with granula on pollen muri. (AC, J, K, N, O, from R.J.Wang &amp; Q.Liao 2500; DF, from R.J.Wang &amp; Q.Liao 2475; GI, from R.J.Wang 2051; L, M, P, Q, from R.J.Wang &amp; Q.Liao 2501)." figureDoi="http://doi.org/10.5281/zenodo.13709211" httpUri="https://zenodo.org/record/13709211/files/figure.png" pageId="3" pageNumber="70">Fig. 3</figureCitation>
).
</paragraph>
<paragraph id="AB42DA0AE91B8612FF4E7BDCFA9CE91B" blockId="3.[136,1452,952,1589]" pageId="3" pageNumber="70">
@ -656,7 +657,7 @@ species
<emphasis id="99890618E91B8612FE487BDCFD38E8A7" box="[443,710,1168,1193]" italics="true" pageId="3" pageNumber="70">Leptodermis hechiensis</emphasis>
</taxonomicName>
, anticlinal walls arch adaxially and abaxially, the outline of the periclinal walls in adaxial epidermis is obscure, irregular abaxially. Leaf blades have abundant epicuticular wax on adaxial and abaxial surfaces. The adaxial epidermis is covered with a reticulum of buttressed ridges wax ornamentation, whereas the abaxial with long parallel striae. The paracytic stomata only appear on the abaxial surface (
<figureCitation id="33C6C68FE91B8612FAE37BB0FAAAE91B" box="[1296,1364,1276,1301]" captionStart="FIGURE 3" captionStartId="4.[136,245,1600,1625]" captionTargetBox="[201,1386,187,1575]" captionTargetId="figure-16@4.[201,1386,187,1575]" captionTargetPageId="4" captionText="FIGURE 3. Leaf epidermis of the three species and pollen grains of Leptodermis hechiensis under SEM. A. adaxial epidermis of L. hechiensis, showing the reticulum of buttressed ridges wax ornamentation and the obscure outline of periclinal walls. B. abaxial epidermis of L. hechiensis, showing the long parallel striae. C. the paracytic stomata of L. hechiensis. D. adaxial epidermis of L. yangshuoensis, showing the radiating striae wax ornamentation and the polygonal outline of the periclinal walls. E. the smooth abaxial epidermis of L. yangshuoensis. F. the paracytic stomata of L. yangshuoensis. G. adaxial epidermis of L. coriaceifolia, showing the short striae wax ornamentation and the polygonal outline of the periclinal walls. H. the smooth abaxial epidermis of L. coriaceifolia. I. the paracytic stomata of L. coriaceifolia. J. long-styled flower pollen, showing the four apertures, polar view. K. long-styled flower pollen, equatorial view. L. short-styled flower pollen, showing the four apertures, polar view. M. short-styled flower pollen, equatorial view. N. aperture for long-styled flower pollen. O. long-styled flower pollen, showing the reticulate sexine with psilate surface. P. aperture for short-styled flower pollen. Q. short-styled flower pollen, showing the reticulate sexine with granula on pollen muri. (AC, J, K, N, O, from R.J.Wang &amp; Q.Liao 2500; DF, from R.J.Wang &amp; Q.Liao 2475; GI, from R.J.Wang 2051; L, M, P, Q, from R.J.Wang &amp; Q.Liao 2501)." pageId="3" pageNumber="70">Fig. 3</figureCitation>
<figureCitation id="33C6C68FE91B8612FAE37BB0FAAAE91B" box="[1296,1364,1276,1301]" captionStart="FIGURE 3" captionStartId="4.[136,245,1600,1625]" captionTargetBox="[201,1386,187,1575]" captionTargetId="figure-16@4.[201,1386,187,1575]" captionTargetPageId="4" captionText="FIGURE 3. Leaf epidermis of the three species and pollen grains of Leptodermis hechiensis under SEM. A. adaxial epidermis of L. hechiensis, showing the reticulum of buttressed ridges wax ornamentation and the obscure outline of periclinal walls. B. abaxial epidermis of L. hechiensis, showing the long parallel striae. C. the paracytic stomata of L. hechiensis. D. adaxial epidermis of L. yangshuoensis, showing the radiating striae wax ornamentation and the polygonal outline of the periclinal walls. E. the smooth abaxial epidermis of L. yangshuoensis. F. the paracytic stomata of L. yangshuoensis. G. adaxial epidermis of L. coriaceifolia, showing the short striae wax ornamentation and the polygonal outline of the periclinal walls. H. the smooth abaxial epidermis of L. coriaceifolia. I. the paracytic stomata of L. coriaceifolia. J. long-styled flower pollen, showing the four apertures, polar view. K. long-styled flower pollen, equatorial view. L. short-styled flower pollen, showing the four apertures, polar view. M. short-styled flower pollen, equatorial view. N. aperture for long-styled flower pollen. O. long-styled flower pollen, showing the reticulate sexine with psilate surface. P. aperture for short-styled flower pollen. Q. short-styled flower pollen, showing the reticulate sexine with granula on pollen muri. (AC, J, K, N, O, from R.J.Wang &amp; Q.Liao 2500; DF, from R.J.Wang &amp; Q.Liao 2475; GI, from R.J.Wang 2051; L, M, P, Q, from R.J.Wang &amp; Q.Liao 2501)." figureDoi="http://doi.org/10.5281/zenodo.13709211" httpUri="https://zenodo.org/record/13709211/files/figure.png" pageId="3" pageNumber="70">Fig. 3</figureCitation>
).
</paragraph>
<paragraph id="AB42DA0AE91B8612FF4E7A6CFCC1E9AB" blockId="3.[136,1452,952,1589]" pageId="3" pageNumber="70">
@ -678,7 +679,7 @@ The leaf adaxial epidermis was covered with radiating striae wax ornamentation i
<emphasis id="99890618E91B8612FC6F7A24FBB6E98F" box="[924,1096,1384,1409]" italics="true" pageId="3" pageNumber="70">L. coriaceifolia</emphasis>
</taxonomicName>
(
<figureCitation id="33C6C68FE91B8612FBA47A24FB65E98F" box="[1111,1179,1384,1409]" captionStart="FIGURE 3" captionStartId="4.[136,245,1600,1625]" captionTargetBox="[201,1386,187,1575]" captionTargetId="figure-16@4.[201,1386,187,1575]" captionTargetPageId="4" captionText="FIGURE 3. Leaf epidermis of the three species and pollen grains of Leptodermis hechiensis under SEM. A. adaxial epidermis of L. hechiensis, showing the reticulum of buttressed ridges wax ornamentation and the obscure outline of periclinal walls. B. abaxial epidermis of L. hechiensis, showing the long parallel striae. C. the paracytic stomata of L. hechiensis. D. adaxial epidermis of L. yangshuoensis, showing the radiating striae wax ornamentation and the polygonal outline of the periclinal walls. E. the smooth abaxial epidermis of L. yangshuoensis. F. the paracytic stomata of L. yangshuoensis. G. adaxial epidermis of L. coriaceifolia, showing the short striae wax ornamentation and the polygonal outline of the periclinal walls. H. the smooth abaxial epidermis of L. coriaceifolia. I. the paracytic stomata of L. coriaceifolia. J. long-styled flower pollen, showing the four apertures, polar view. K. long-styled flower pollen, equatorial view. L. short-styled flower pollen, showing the four apertures, polar view. M. short-styled flower pollen, equatorial view. N. aperture for long-styled flower pollen. O. long-styled flower pollen, showing the reticulate sexine with psilate surface. P. aperture for short-styled flower pollen. Q. short-styled flower pollen, showing the reticulate sexine with granula on pollen muri. (AC, J, K, N, O, from R.J.Wang &amp; Q.Liao 2500; DF, from R.J.Wang &amp; Q.Liao 2475; GI, from R.J.Wang 2051; L, M, P, Q, from R.J.Wang &amp; Q.Liao 2501)." pageId="3" pageNumber="70">Fig. 3</figureCitation>
<figureCitation id="33C6C68FE91B8612FBA47A24FB65E98F" box="[1111,1179,1384,1409]" captionStart="FIGURE 3" captionStartId="4.[136,245,1600,1625]" captionTargetBox="[201,1386,187,1575]" captionTargetId="figure-16@4.[201,1386,187,1575]" captionTargetPageId="4" captionText="FIGURE 3. Leaf epidermis of the three species and pollen grains of Leptodermis hechiensis under SEM. A. adaxial epidermis of L. hechiensis, showing the reticulum of buttressed ridges wax ornamentation and the obscure outline of periclinal walls. B. abaxial epidermis of L. hechiensis, showing the long parallel striae. C. the paracytic stomata of L. hechiensis. D. adaxial epidermis of L. yangshuoensis, showing the radiating striae wax ornamentation and the polygonal outline of the periclinal walls. E. the smooth abaxial epidermis of L. yangshuoensis. F. the paracytic stomata of L. yangshuoensis. G. adaxial epidermis of L. coriaceifolia, showing the short striae wax ornamentation and the polygonal outline of the periclinal walls. H. the smooth abaxial epidermis of L. coriaceifolia. I. the paracytic stomata of L. coriaceifolia. J. long-styled flower pollen, showing the four apertures, polar view. K. long-styled flower pollen, equatorial view. L. short-styled flower pollen, showing the four apertures, polar view. M. short-styled flower pollen, equatorial view. N. aperture for long-styled flower pollen. O. long-styled flower pollen, showing the reticulate sexine with psilate surface. P. aperture for short-styled flower pollen. Q. short-styled flower pollen, showing the reticulate sexine with granula on pollen muri. (AC, J, K, N, O, from R.J.Wang &amp; Q.Liao 2500; DF, from R.J.Wang &amp; Q.Liao 2475; GI, from R.J.Wang 2051; L, M, P, Q, from R.J.Wang &amp; Q.Liao 2501)." figureDoi="http://doi.org/10.5281/zenodo.13709211" httpUri="https://zenodo.org/record/13709211/files/figure.png" pageId="3" pageNumber="70">Fig. 3</figureCitation>
). In
<taxonomicName id="6CFDA189E91B8612FB3C7A24FA85E98F" authorityName="Chen" authorityYear="2011" box="[1231,1403,1384,1409]" class="Magnoliopsida" family="Rubiaceae" genus="Leptodermis" kingdom="Plantae" order="Gentianales" pageId="3" pageNumber="70" phylum="Tracheophyta" rank="species" species="coriaceifolia">
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View file

@ -1,64 +1,65 @@
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@ -104,15 +105,15 @@ in diameter), forming an evident transition between the stipe and blade. Blade f
) than wider (
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<figureCitation id="34872A08FFC0FF9FFE5A054A042E9E7F" box="[462,598,841,866]" captionStart="FIGURES 711" captionStartId="12.[136,243,1929,1950]" captionTargetBox="[182,1401,223,1876]" captionTargetId="figure-16@12.[151,1436,190,1905]" captionTargetPageId="12" captionText="FIGURES 711. U. abbottiorum. 79) external morphology, 10) blade siphon and detail of the supradichotomic constriction, 11) lateral appendages of the stipe. FIGURES 1215. U. caribaea. 1213) external morphology, 14) blade siphon showing the distance between dichotomies, 15) lateral appendages of the stipe." figureDoi="http://doi.org/10.5281/zenodo.13708569" httpUri="https://zenodo.org/record/13708569/files/figure.png" pageId="11" pageNumber="190">Figs. 7, 8, 9</figureCitation>
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:—Blade siphons without lateral appendages, dichotomously branched, 4555 μm in diameter, distance between each dichotomy ranges from 700 to 2300 μm, supradichotomic constrictions 1224 μm length, 2327 μm in diameter (
<figureCitation id="34872A08FFC0FF9FFF6D05B607349ED3" box="[249,332,949,974]" captionStart="FIGURES 711" captionStartId="12.[136,243,1929,1950]" captionTargetBox="[182,1401,223,1876]" captionTargetId="figure-16@12.[151,1436,190,1905]" captionTargetPageId="12" captionText="FIGURES 711. U. abbottiorum. 79) external morphology, 10) blade siphon and detail of the supradichotomic constriction, 11) lateral appendages of the stipe. FIGURES 1215. U. caribaea. 1213) external morphology, 14) blade siphon showing the distance between dichotomies, 15) lateral appendages of the stipe." pageId="11" pageNumber="190">Fig. 10</figureCitation>
<figureCitation id="34872A08FFC0FF9FFF6D05B607349ED3" box="[249,332,949,974]" captionStart="FIGURES 711" captionStartId="12.[136,243,1929,1950]" captionTargetBox="[182,1401,223,1876]" captionTargetId="figure-16@12.[151,1436,190,1905]" captionTargetPageId="12" captionText="FIGURES 711. U. abbottiorum. 79) external morphology, 10) blade siphon and detail of the supradichotomic constriction, 11) lateral appendages of the stipe. FIGURES 1215. U. caribaea. 1213) external morphology, 14) blade siphon showing the distance between dichotomies, 15) lateral appendages of the stipe." figureDoi="http://doi.org/10.5281/zenodo.13708569" httpUri="https://zenodo.org/record/13708569/files/figure.png" pageId="11" pageNumber="190">Fig. 10</figureCitation>
). Stipe siphons adjacent to lateral appendages 3758 μm in diameter, appendages peduncle 160500 μm length, 2065 μm in diameter, sometimes constriction at the base. Appendages dichotomously branched 24 times, with swollen tips (
<figureCitation id="34872A08FFC0FF9FFEC305FE07D0990B" box="[343,424,1021,1046]" captionStart="FIGURES 711" captionStartId="12.[136,243,1929,1950]" captionTargetBox="[182,1401,223,1876]" captionTargetId="figure-16@12.[151,1436,190,1905]" captionTargetPageId="12" captionText="FIGURES 711. U. abbottiorum. 79) external morphology, 10) blade siphon and detail of the supradichotomic constriction, 11) lateral appendages of the stipe. FIGURES 1215. U. caribaea. 1213) external morphology, 14) blade siphon showing the distance between dichotomies, 15) lateral appendages of the stipe." pageId="11" pageNumber="190">Fig. 11</figureCitation>
<figureCitation id="34872A08FFC0FF9FFEC305FE07D0990B" box="[343,424,1021,1046]" captionStart="FIGURES 711" captionStartId="12.[136,243,1929,1950]" captionTargetBox="[182,1401,223,1876]" captionTargetId="figure-16@12.[151,1436,190,1905]" captionTargetPageId="12" captionText="FIGURES 711. U. abbottiorum. 79) external morphology, 10) blade siphon and detail of the supradichotomic constriction, 11) lateral appendages of the stipe. FIGURES 1215. U. caribaea. 1213) external morphology, 14) blade siphon showing the distance between dichotomies, 15) lateral appendages of the stipe." figureDoi="http://doi.org/10.5281/zenodo.13708569" httpUri="https://zenodo.org/record/13708569/files/figure.png" pageId="11" pageNumber="190">Fig. 11</figureCitation>
).
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View file

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@ -98,17 +99,17 @@ diameter, there is no differentiation between stipe and blade. Blade fan-shaped,
) than long (
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, lower margin is reniform, multistratose, corticated, heavily calcified, and fain concentric zonation (
<figureCitation id="34872A08FFD0FF8FFE41045304529F74" box="[469,554,592,617]" captionStart="FIGURES 7073" captionStartId="28.[136,243,1929,1950]" captionTargetBox="[181,1401,219,1874]" captionTargetId="figure-16@28.[151,1436,190,1905]" captionTargetPageId="28" captionText="FIGURES 7073. U. occidentalis. 70) external morphology, 71) blade siphons showing the lateral appendages arrangement, 72) blade lateral appendages, 73) stipe lateral appendage. FIGURES 7476. U. spinulosa. 74) external morphology, 75) blade lateral appendages, 76) stipe lateral appendage. FIGURES 7778. U. unistratea. 77) external morphology, 78) blade siphons." pageId="27" pageNumber="206">Fig. 70</figureCitation>
<figureCitation id="34872A08FFD0FF8FFE41045304529F74" box="[469,554,592,617]" captionStart="FIGURES 7073" captionStartId="28.[136,243,1929,1950]" captionTargetBox="[181,1401,219,1874]" captionTargetId="figure-16@28.[151,1436,190,1905]" captionTargetPageId="28" captionText="FIGURES 7073. U. occidentalis. 70) external morphology, 71) blade siphons showing the lateral appendages arrangement, 72) blade lateral appendages, 73) stipe lateral appendage. FIGURES 7476. U. spinulosa. 74) external morphology, 75) blade lateral appendages, 76) stipe lateral appendage. FIGURES 7778. U. unistratea. 77) external morphology, 78) blade siphons." figureDoi="http://doi.org/10.5281/zenodo.13708583" httpUri="https://zenodo.org/record/13708583/files/figure.png" pageId="27" pageNumber="206">Fig. 70</figureCitation>
).
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:—Blade siphons with lateral appendages, 3040 μm in diameter, densely covered by two opposite rows of short lateral appendages (
<figureCitation id="34872A08FFD0FF8FFE2B049B04689FAC" box="[447,528,664,689]" captionStart="FIGURES 7073" captionStartId="28.[136,243,1929,1950]" captionTargetBox="[181,1401,219,1874]" captionTargetId="figure-16@28.[151,1436,190,1905]" captionTargetPageId="28" captionText="FIGURES 7073. U. occidentalis. 70) external morphology, 71) blade siphons showing the lateral appendages arrangement, 72) blade lateral appendages, 73) stipe lateral appendage. FIGURES 7476. U. spinulosa. 74) external morphology, 75) blade lateral appendages, 76) stipe lateral appendage. FIGURES 7778. U. unistratea. 77) external morphology, 78) blade siphons." pageId="27" pageNumber="206">Fig. 71</figureCitation>
<figureCitation id="34872A08FFD0FF8FFE2B049B04689FAC" box="[447,528,664,689]" captionStart="FIGURES 7073" captionStartId="28.[136,243,1929,1950]" captionTargetBox="[181,1401,219,1874]" captionTargetId="figure-16@28.[151,1436,190,1905]" captionTargetPageId="28" captionText="FIGURES 7073. U. occidentalis. 70) external morphology, 71) blade siphons showing the lateral appendages arrangement, 72) blade lateral appendages, 73) stipe lateral appendage. FIGURES 7476. U. spinulosa. 74) external morphology, 75) blade lateral appendages, 76) stipe lateral appendage. FIGURES 7778. U. unistratea. 77) external morphology, 78) blade siphons." figureDoi="http://doi.org/10.5281/zenodo.13708583" httpUri="https://zenodo.org/record/13708583/files/figure.png" pageId="27" pageNumber="206">Fig. 71</figureCitation>
), possessing 815 low unique knobs with appearances of sunken blade appendages, peduncle 1020 μm in diameter, 4065 μm length (
<figureCitation id="34872A08FFD0FF8FFD5104BF05609FC8" box="[709,792,700,725]" captionStart="FIGURES 7073" captionStartId="28.[136,243,1929,1950]" captionTargetBox="[181,1401,219,1874]" captionTargetId="figure-16@28.[151,1436,190,1905]" captionTargetPageId="28" captionText="FIGURES 7073. U. occidentalis. 70) external morphology, 71) blade siphons showing the lateral appendages arrangement, 72) blade lateral appendages, 73) stipe lateral appendage. FIGURES 7476. U. spinulosa. 74) external morphology, 75) blade lateral appendages, 76) stipe lateral appendage. FIGURES 7778. U. unistratea. 77) external morphology, 78) blade siphons." pageId="27" pageNumber="206">Fig. 72</figureCitation>
<figureCitation id="34872A08FFD0FF8FFD5104BF05609FC8" box="[709,792,700,725]" captionStart="FIGURES 7073" captionStartId="28.[136,243,1929,1950]" captionTargetBox="[181,1401,219,1874]" captionTargetId="figure-16@28.[151,1436,190,1905]" captionTargetPageId="28" captionText="FIGURES 7073. U. occidentalis. 70) external morphology, 71) blade siphons showing the lateral appendages arrangement, 72) blade lateral appendages, 73) stipe lateral appendage. FIGURES 7476. U. spinulosa. 74) external morphology, 75) blade lateral appendages, 76) stipe lateral appendage. FIGURES 7778. U. unistratea. 77) external morphology, 78) blade siphons." figureDoi="http://doi.org/10.5281/zenodo.13708583" httpUri="https://zenodo.org/record/13708583/files/figure.png" pageId="27" pageNumber="206">Fig. 72</figureCitation>
). Stipe siphons adjacent to lateral appendages 3060 μm in diameter, appendages peduncle 150300 μm length, 2030 μm in diameter. Appendages branched twice terminating in numerous rounded projections (
<figureCitation id="34872A08FFD0FF8FFD9D050704259E00" box="[521,605,772,797]" captionStart="FIGURES 7073" captionStartId="28.[136,243,1929,1950]" captionTargetBox="[181,1401,219,1874]" captionTargetId="figure-16@28.[151,1436,190,1905]" captionTargetPageId="28" captionText="FIGURES 7073. U. occidentalis. 70) external morphology, 71) blade siphons showing the lateral appendages arrangement, 72) blade lateral appendages, 73) stipe lateral appendage. FIGURES 7476. U. spinulosa. 74) external morphology, 75) blade lateral appendages, 76) stipe lateral appendage. FIGURES 7778. U. unistratea. 77) external morphology, 78) blade siphons." pageId="27" pageNumber="206">Fig. 73</figureCitation>
<figureCitation id="34872A08FFD0FF8FFD9D050704259E00" box="[521,605,772,797]" captionStart="FIGURES 7073" captionStartId="28.[136,243,1929,1950]" captionTargetBox="[181,1401,219,1874]" captionTargetId="figure-16@28.[151,1436,190,1905]" captionTargetPageId="28" captionText="FIGURES 7073. U. occidentalis. 70) external morphology, 71) blade siphons showing the lateral appendages arrangement, 72) blade lateral appendages, 73) stipe lateral appendage. FIGURES 7476. U. spinulosa. 74) external morphology, 75) blade lateral appendages, 76) stipe lateral appendage. FIGURES 7778. U. unistratea. 77) external morphology, 78) blade siphons." figureDoi="http://doi.org/10.5281/zenodo.13708583" httpUri="https://zenodo.org/record/13708583/files/figure.png" pageId="27" pageNumber="206">Fig. 73</figureCitation>
).
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@ -104,11 +105,11 @@ in diameter, gradual transition between the stipe and blade. Blade orbicular or
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:—Blade siphons without lateral appendages, dichotomously branched, 3555 μm in diameter (
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<figureCitation id="34872A08FFD2FF8DFADF06A303E69DA4" box="[1355,1438,160,185]" captionStart="FIGURES 6164" captionStartId="26.[136,243,1929,1950]" captionTargetBox="[181,1400,216,1871]" captionTargetId="figure-16@26.[151,1436,187,1902]" captionTargetPageId="26" captionText="FIGURES 6164. U. luna. 61) external morphology, 62) blade lateral appendages, 63) detail of the supradichotomic constriction of the blade siphon, 64) stipe lateral appendage. FIGURES 6569. U. norrisii. 65-66) external morphology, 67) blade lateral appendages, 68) stipe lateral appendage, 69) detail of the upper portion of the blade siphon showing sexual reproductive structures." figureDoi="http://doi.org/10.5281/zenodo.13708581" httpUri="https://zenodo.org/record/13708581/files/figure.png" pageId="25" pageNumber="204">Fig. 62</figureCitation>
), distance between each dichotomy varies from 900 to 1600 μm, supra dichotomous constrictions 2540 μm length, 9 15 μm in diameter (
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<figureCitation id="34872A08FFD2FF8DFEF706EB07CE9C1C" box="[355,438,232,257]" captionStart="FIGURES 6164" captionStartId="26.[136,243,1929,1950]" captionTargetBox="[181,1400,216,1871]" captionTargetId="figure-16@26.[151,1436,187,1902]" captionTargetPageId="26" captionText="FIGURES 6164. U. luna. 61) external morphology, 62) blade lateral appendages, 63) detail of the supradichotomic constriction of the blade siphon, 64) stipe lateral appendage. FIGURES 6569. U. norrisii. 65-66) external morphology, 67) blade lateral appendages, 68) stipe lateral appendage, 69) detail of the upper portion of the blade siphon showing sexual reproductive structures." figureDoi="http://doi.org/10.5281/zenodo.13708581" httpUri="https://zenodo.org/record/13708581/files/figure.png" pageId="25" pageNumber="204">Fig. 63</figureCitation>
). Stipe siphons adjacent to lateral appendages 3363 μm in diameter, appendages peduncle 20120 μm length, 1045 μm in diameter. Appendages dichotomously branched 12 times, with wide dichotomously acute and lanceolate apices (
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<figureCitation id="34872A08FFD2FF8DFE53073304649C54" box="[455,540,304,329]" captionStart="FIGURES 6164" captionStartId="26.[136,243,1929,1950]" captionTargetBox="[181,1400,216,1871]" captionTargetId="figure-16@26.[151,1436,187,1902]" captionTargetPageId="26" captionText="FIGURES 6164. U. luna. 61) external morphology, 62) blade lateral appendages, 63) detail of the supradichotomic constriction of the blade siphon, 64) stipe lateral appendage. FIGURES 6569. U. norrisii. 65-66) external morphology, 67) blade lateral appendages, 68) stipe lateral appendage, 69) detail of the upper portion of the blade siphon showing sexual reproductive structures." figureDoi="http://doi.org/10.5281/zenodo.13708581" httpUri="https://zenodo.org/record/13708581/files/figure.png" pageId="25" pageNumber="204">Fig. 64</figureCitation>
).
</paragraph>
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:—Blade siphons without lateral appendages, dichotomously branched, 3060 μm in diameter (Fig. 78), distance between each dichotomy varies from 2000 to 8000 μm, supradichotomic constrictions 2030 μm length, 20 25 μm in diameter (
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). Stipe siphons adjacent to lateral appendages 5080 μm in diameter, appendages peduncle 120300 μm length, 3040 μm in diameter. Appendages dichotomously branched twice, constriction at the base and terminating in short dichotomously lobed, blunt tips (
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Blade siphons without lateral appendages, dichotomously branched, 4555 μm in diameter, one of the siphons of the dichotomy gives rise to another dichotomy and the other continues to grow thus forming sub-dichotomies (Fig. 33). Distance between each dichotomy varies from 1300 to 2500 μm, supra dichotomous constrictions 1927 μm length, 1525 μm in diameter. Stipe siphons adjacent to lateral appendages 5074 μm in diameter, appendages peduncle 70250 μm length, 2540 μm in diameter. Appendices arranged irregularly and dichotomously branched 23 times, with distorted digitate apices (
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@ -102,9 +103,9 @@ diameter, there is no differentiation between the stipe and blade. Blade fan-sha
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<emphasis id="9EC8EA9FFFDFFF80FF29047707599F90" box="[189,289,628,653]" italics="true" pageId="20" pageNumber="199">Anatomy</emphasis>
:—Blade siphons with lateral appendages, 2040 μm in diameter, densely covered by two opposite rows of short lateral appendages (Fig. 42) with irregular flat apices, blade appendages peduncle 1530 μm in diameter, 60120 μm length (
<figureCitation id="34872A08FFDFFF80FEF704BF07CF9FC8" box="[355,439,700,725]" captionStart="FIGURES 4344" captionStartId="21.[136,243,1929,1950]" captionTargetBox="[180,1401,219,1876]" captionTargetId="figure-14@21.[151,1436,190,1905]" captionTargetPageId="21" captionText="FIGURES 4344. U. dotyi. 43) blade lateral appendages, 44) stipe lateral appendages. FIGURES 4549. U. fibrosa. 4546) external morphology, 47) blade siphons, 48) detail of the supradichotomic constriction of the blade siphon, 49) stipe lateral appendages. FIGURES 5051. U. flabellum. 5051) external morphology." pageId="20" pageNumber="199">Fig. 43</figureCitation>
<figureCitation id="34872A08FFDFFF80FEF704BF07CF9FC8" box="[355,439,700,725]" captionStart="FIGURES 4344" captionStartId="21.[136,243,1929,1950]" captionTargetBox="[180,1401,219,1876]" captionTargetId="figure-14@21.[151,1436,190,1905]" captionTargetPageId="21" captionText="FIGURES 4344. U. dotyi. 43) blade lateral appendages, 44) stipe lateral appendages. FIGURES 4549. U. fibrosa. 4546) external morphology, 47) blade siphons, 48) detail of the supradichotomic constriction of the blade siphon, 49) stipe lateral appendages. FIGURES 5051. U. flabellum. 5051) external morphology." figureDoi="http://doi.org/10.5281/zenodo.13708577" httpUri="https://zenodo.org/record/13708577/files/figure.png" pageId="20" pageNumber="199">Fig. 43</figureCitation>
). Stipe siphons adjacent to lateral appendages 4070 μm in diameter, appendages peduncle 150300 μm length, 2040 μm in diameter. Appendages branched twice, terminating in numerous blunt rounded tips (
<figureCitation id="34872A08FFDFFF80FF040507069D9E00" box="[144,229,772,797]" captionStart="FIGURES 4344" captionStartId="21.[136,243,1929,1950]" captionTargetBox="[180,1401,219,1876]" captionTargetId="figure-14@21.[151,1436,190,1905]" captionTargetPageId="21" captionText="FIGURES 4344. U. dotyi. 43) blade lateral appendages, 44) stipe lateral appendages. FIGURES 4549. U. fibrosa. 4546) external morphology, 47) blade siphons, 48) detail of the supradichotomic constriction of the blade siphon, 49) stipe lateral appendages. FIGURES 5051. U. flabellum. 5051) external morphology." pageId="20" pageNumber="199">Fig. 44</figureCitation>
<figureCitation id="34872A08FFDFFF80FF040507069D9E00" box="[144,229,772,797]" captionStart="FIGURES 4344" captionStartId="21.[136,243,1929,1950]" captionTargetBox="[180,1401,219,1876]" captionTargetId="figure-14@21.[151,1436,190,1905]" captionTargetPageId="21" captionText="FIGURES 4344. U. dotyi. 43) blade lateral appendages, 44) stipe lateral appendages. FIGURES 4549. U. fibrosa. 4546) external morphology, 47) blade siphons, 48) detail of the supradichotomic constriction of the blade siphon, 49) stipe lateral appendages. FIGURES 5051. U. flabellum. 5051) external morphology." figureDoi="http://doi.org/10.5281/zenodo.13708577" httpUri="https://zenodo.org/record/13708577/files/figure.png" pageId="20" pageNumber="199">Fig. 44</figureCitation>
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@ -93,7 +94,7 @@ S.K. Huang &amp; K.D. Hyde
<emphasis id="9CC4EAE44D59245DFCB3FAA8FCE3FAE2" bold="true" box="[793,879,1300,1326]" italics="true" pageId="3" pageNumber="102">
<taxonomicNameLabel id="87F7579F4D59245DFCB3FAA8FCE3FAE2" box="[793,879,1300,1326]" pageId="3" pageNumber="102" rank="species">sp. nov.</taxonomicNameLabel>
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<figureCitation id="368B2A734D59245DFCDCFAAAFC34FAE3" box="[886,952,1302,1327]" captionStart="FIGURE 2" captionStartId="5.[136,229,1696,1717]" captionTargetBox="[215,1371,504,1655]" captionTargetId="figure-170@5.[204,1383,494,1668]" captionTargetPageId="5" captionText="FIGURE 2. Lecanicillium subprimulinum a White mycelium associated with the ophioceras-like taxon on a submerged wood. b Culture plate (above, left/reverse, right). c Conidiophores on culture. de Verticillate conidiophores and conidiogenous cells (arrowed node). fg Conidiophore with conidia. hj Conidia. Scale bars: a = 20 mm, bc = 20 μm, dg = 10 μm, ij = 5 μm." pageId="3" pageNumber="102">Fig. 2</figureCitation>
<figureCitation id="368B2A734D59245DFCDCFAAAFC34FAE3" box="[886,952,1302,1327]" captionStart="FIGURE 2" captionStartId="5.[136,229,1696,1717]" captionTargetBox="[215,1371,504,1655]" captionTargetId="figure-170@5.[204,1383,494,1668]" captionTargetPageId="5" captionText="FIGURE 2. Lecanicillium subprimulinum a White mycelium associated with the ophioceras-like taxon on a submerged wood. b Culture plate (above, left/reverse, right). c Conidiophores on culture. de Verticillate conidiophores and conidiogenous cells (arrowed node). fg Conidiophore with conidia. hj Conidia. Scale bars: a = 20 mm, bc = 20 μm, dg = 10 μm, ij = 5 μm." figureDoi="http://doi.org/10.5281/zenodo.13709022" httpUri="https://zenodo.org/record/13709022/files/figure.png" pageId="3" pageNumber="102">Fig. 2</figureCitation>
</heading>
</paragraph>
<paragraph id="AE0F36F64D59245DFF22FA80FCA6FA9D" blockId="3.[136,1371,1340,1397]" box="[136,810,1340,1361]" pageId="3" pageNumber="102">Index Fungorum number: IF553982; Facesoffungi number: FoF03781</paragraph>

View file

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(
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<figureCitation id="52A82A5EB300FFFA3BE0F94296C4F8E7" box="[940,1005,1778,1803]" captionStart="FIGURE 1" captionStartId="1.[136,229,1917,1938]" captionTargetBox="[151,1436,188,1893]" captionTargetId="figure-17@1.[151,1436,188,1893]" captionTargetPageId="1" captionText="FIGURE 1. Calamus tadulakoensis. A. Cirrus with irregular spines. B. Grayish-white indumentose abaxial pinna surface. C. Leaf sheath with non-spiny knee. D. Fruits borne on short, stout pedicels." figureDoi="http://doi.org/10.5281/zenodo.13708423" httpUri="https://zenodo.org/record/13708423/files/figure.png" pageId="0" pageNumber="298">Fig. 1</figureCitation>
).
</heading>
</paragraph>
@ -118,7 +119,7 @@ It differs from similar species (
</taxonomicName>
) in its regularly arranged pinnae that are grayish-white indumentose abaxially.
</paragraph>
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<emphasis id="F8E7EAC9B301FFFB38C4F8CD95D7F87E" bold="true" box="[136,254,1917,1938]" pageId="1" pageNumber="299">FIGURE 1.</emphasis>
<taxonomicName id="0D934D58B301FFFB394FF8CD94CBF87E" authorityName="Henderson, Iqbal, Rusydi &amp; Pitopang" authorityYear="2018" box="[259,482,1917,1938]" class="Liliopsida" family="Arecaceae" genus="Calamus" kingdom="Plantae" order="Arecales" pageId="1" pageNumber="299" phylum="Tracheophyta" rank="species" species="tadulakoensis">

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@ -51,7 +52,7 @@ Szeląg
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(
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<figureCitation id="4595BFA9816FFFA9FD8C35B7FD14DB87" box="[606,713,1254,1279]" captionStart-0="FIGURE 3" captionStart-1="FIGURE 4" captionStartId-0="4.[136,229,1644,1665]" captionStartId-1="5.[136,229,1174,1195]" captionTargetBox-0="[151,1436,389,1618]" captionTargetBox-1="[151,1436,190,1149]" captionTargetId-0="figure-129@4.[151,1436,389,1618]" captionTargetId-1="figure-14@5.[151,1437,190,1149]" captionTargetPageId-0="4" captionTargetPageId-1="5" captionText-0="FIGURE 3. Holotype of Hieracium vladimirovii (SOM 175985)." captionText-1="FIGURE 4. Hieracium vladimirovii: AC garden-cultivated plant; DE involucres and indumentum of the lower part of the stem (from holotype)." figureDoi-0="http://doi.org/10.5281/zenodo.13708798" figureDoi-1="http://doi.org/10.5281/zenodo.13708806" httpUri-0="https://zenodo.org/record/13708798/files/figure.png" httpUri-1="https://zenodo.org/record/13708806/files/figure.png" pageId="3" pageNumber="128">Figs. 34</figureCitation>
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</heading>
</paragraph>
@ -132,7 +133,7 @@ a.s.l.,
(Herb. Hierac.
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. Szeląg) (
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).
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</subSubSection>
@ -184,7 +185,7 @@ long, dark glandular hairs (ratio of simple hairs to glandular hairs 5:1), and s
<quantity id="1A560EC98168FFAEFF0C3005FEB8DE15" box="[222,357,340,365]" metricMagnitude="-3" metricUnit="m" metricValue="4.05" metricValueMax="4.2" metricValueMin="3.9" pageId="4" pageNumber="129" unit="mm" value="4.05" valueMax="4.2" valueMin="3.9">3.94.2 mm</quantity>
long. Pappus white. Pollen in anthers numerous, spherical and of varying size. Flowering: July.
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<emphasis id="EFDA7F3E8168FFAEFF5A373DFF23D9F9" bold="true" box="[136,254,1644,1665]" pageId="4" pageNumber="129">FIGURE 3.</emphasis>
Holotype of
@ -271,7 +272,7 @@ Chrtek
).
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<emphasis id="EFDA7F3E8169FFAFFF5A35C7FF23DBD3" bold="true" box="[136,254,1174,1195]" pageId="5" pageNumber="130">FIGURE 4.</emphasis>
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<mods:namePart id="E5E1DC659D28C9D29EB90B706ABFC2CB">Cheng, Yu</mods:namePart>
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<mods:namePart id="6A5C48AB5117DD86854C7B69D26F680E">Cheng, Yu</mods:namePart>
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<mods:namePart id="EA7609C19A0B039DF43022E34FE6769E">Liu, Yan</mods:namePart>
<mods:affiliation id="57BF8BCD177E32237B1B69255102767C">College of Life Science and Technology, Harbin Normal University, Harbin, 150025, China.</mods:affiliation>
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<mods:namePart id="5617367991DA11B520484632B144F1C0">Kociolek, John Patrick</mods:namePart>
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<mods:namePart id="8907F25E5450C8C93B7F0D315BE12F90">Kociolek, John Patrick</mods:namePart>
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<mods:namePart id="82E69811173422A735673933C7D0F092">You, Qingmin</mods:namePart>
<mods:affiliation id="61830FC7182B6B8F3D7037C20F3DBE17">College of Life and Environment Science, Shanghai Normal University, Shanghai 200234, China</mods:affiliation>
<mods:namePart id="CD355712902C00141182DC8619A9E80E">You, Qingmin</mods:namePart>
<mods:affiliation id="3D81F0C9610896FAC4902D520D5D0921">College of Life and Environment Science, Shanghai Normal University, Shanghai 200234, China</mods:affiliation>
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<mods:namePart id="B815921599A9C7AEE83B100EAAE48822">Fan, Yawen</mods:namePart>
<mods:affiliation id="C9FD73E6030C83F1B255B125688802A6">College of Life Science and Technology, Harbin Normal University, Harbin, 150025, China.</mods:affiliation>
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<mods:namePart id="A58F77390DDEA0C6EA5301B0A502D009">Fan, Yawen</mods:namePart>
<mods:affiliation id="D44DE46A673F00E2591C6E8FEF274EE2">College of Life Science and Technology, Harbin Normal University, Harbin, 150025, China.</mods:affiliation>
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<subSubSection id="A6BD93FD846FFFCE07D24E15FBA14E81" pageId="1" pageNumber="119" type="nomenclature">
@ -82,14 +83,14 @@ Liu, Kociolek, You &amp; Fan
</taxonomicName>
<taxonomicNameLabel id="C7E0A11F846FFFCE05834E13FC884E70" box="[729,818,1284,1309]" pageId="1" pageNumber="119" rank="species">sp. nov.</taxonomicNameLabel>
(
<figureCitation id="769CDCF3846FFFCE041B4E13FC0E4E70" box="[833,948,1284,1309]" captionStart-0="FIGURES 118" captionStart-1="FIGURES 1924" captionStart-2="FIGURES 2530" captionStartId-0="2.[136,243,1273,1294]" captionStartId-1="3.[136,243,1440,1461]" captionStartId-2="4.[136,243,1240,1261]" captionTargetBox-0="[331,1260,207,1221]" captionTargetBox-1="[231,1360,190,1400]" captionTargetBox-2="[226,1357,190,1215]" captionTargetId-0="figure-14@2.[305,1282,187,1244]" captionTargetId-1="figure-16@3.[227,1361,190,1415]" captionTargetId-2="figure-14@4.[226,1361,190,1215]" captionTargetPageId-0="2" captionTargetPageId-1="3" captionTargetPageId-2="4" captionText-0="FIGURES 118. Gomphosinica lugunsis Liu, Kociolek,You &amp; Fan sp. nov. Figs 117: LM pictures.Valve views showing size diminution series. Figure 2 is of the holotype. Fig. 18: Girdle view. Scale bar=10 μm." captionText-1="FIGURES 1924. Gomphosinica lugunsis Liu, Kociolek, You &amp; Fan sp. nov. SEM pictures, externally view. Figs 1920: The whole valve; Fig. 21: Headpole of the valve, showing the distal raphe end (white arrow), and the two rows of areolae (black arrow); Fig 22: Central area of the valve, showing the opening of the stigma (white arrow), and the central pore (black arrow); Figs 2324: Footpole of the valve, Fig. 27: showing the apical pore field, Fig. 28: showing the distal raphe end." captionText-2="FIGURES 2530. Gomphosinica lugunsis Liu, Kociolek, You &amp; Fan sp. nov. SEM pictures, internally view. Figs 2526: The whole valve; Fig.27: Headpole of the valve, showing the helictoglossa (white arrow) and the septa (black arrow); Fig. 28: Footpole of the valve, showing the pseudosepta; Fig. 29: Central area, showing the opening of the stigma (white arrow) and proximal raphe ends (black arrow); Fig. 30: Magnification of the striae, showing the internal opening of the areolae." pageId="1" pageNumber="119">Figs 130</figureCitation>
<figureCitation id="769CDCF3846FFFCE041B4E13FC0E4E70" box="[833,948,1284,1309]" captionStart-0="FIGURES 118" captionStart-1="FIGURES 1924" captionStart-2="FIGURES 2530" captionStartId-0="2.[136,243,1273,1294]" captionStartId-1="3.[136,243,1440,1461]" captionStartId-2="4.[136,243,1240,1261]" captionTargetBox-0="[331,1260,207,1221]" captionTargetBox-1="[231,1360,190,1400]" captionTargetBox-2="[226,1357,190,1215]" captionTargetId-0="figure-14@2.[305,1282,187,1244]" captionTargetId-1="figure-16@3.[227,1361,190,1415]" captionTargetId-2="figure-14@4.[226,1361,190,1215]" captionTargetPageId-0="2" captionTargetPageId-1="3" captionTargetPageId-2="4" captionText-0="FIGURES 118. Gomphosinica lugunsis Liu, Kociolek,You &amp; Fan sp. nov. Figs 117: LM pictures.Valve views showing size diminution series. Figure 2 is of the holotype. Fig. 18: Girdle view. Scale bar=10 μm." captionText-1="FIGURES 1924. Gomphosinica lugunsis Liu, Kociolek, You &amp; Fan sp. nov. SEM pictures, externally view. Figs 1920: The whole valve; Fig. 21: Headpole of the valve, showing the distal raphe end (white arrow), and the two rows of areolae (black arrow); Fig 22: Central area of the valve, showing the opening of the stigma (white arrow), and the central pore (black arrow); Figs 2324: Footpole of the valve, Fig. 27: showing the apical pore field, Fig. 28: showing the distal raphe end." captionText-2="FIGURES 2530. Gomphosinica lugunsis Liu, Kociolek, You &amp; Fan sp. nov. SEM pictures, internally view. Figs 2526: The whole valve; Fig.27: Headpole of the valve, showing the helictoglossa (white arrow) and the septa (black arrow); Fig. 28: Footpole of the valve, showing the pseudosepta; Fig. 29: Central area, showing the opening of the stigma (white arrow) and proximal raphe ends (black arrow); Fig. 30: Magnification of the striae, showing the internal opening of the areolae." figureDoi-0="http://doi.org/10.5281/zenodo.13709034" figureDoi-1="http://doi.org/10.5281/zenodo.13709038" figureDoi-2="http://doi.org/10.5281/zenodo.13709040" httpUri-0="https://zenodo.org/record/13709034/files/figure.png" httpUri-1="https://zenodo.org/record/13709038/files/figure.png" httpUri-2="https://zenodo.org/record/13709040/files/figure.png" pageId="1" pageNumber="119">Figs 130</figureCitation>
)
</emphasis>
</heading>
</paragraph>
<paragraph id="EE18C076846FFFCE07D24E52FBA14E81" blockId="1.[136,1453,1349,2083]" pageId="1" pageNumber="119">
Light microscopy (
<figureCitation id="769CDCF3846FFFCE06054E52FE6E4E33" box="[351,468,1349,1374]" captionStart="FIGURES 118" captionStartId="2.[136,243,1273,1294]" captionTargetBox="[331,1260,207,1221]" captionTargetId="figure-14@2.[305,1282,187,1244]" captionTargetPageId="2" captionText="FIGURES 118. Gomphosinica lugunsis Liu, Kociolek,You &amp; Fan sp. nov. Figs 117: LM pictures.Valve views showing size diminution series. Figure 2 is of the holotype. Fig. 18: Girdle view. Scale bar=10 μm." pageId="1" pageNumber="119">Figs 118</figureCitation>
<figureCitation id="769CDCF3846FFFCE06054E52FE6E4E33" box="[351,468,1349,1374]" captionStart="FIGURES 118" captionStartId="2.[136,243,1273,1294]" captionTargetBox="[331,1260,207,1221]" captionTargetId="figure-14@2.[305,1282,187,1244]" captionTargetPageId="2" captionText="FIGURES 118. Gomphosinica lugunsis Liu, Kociolek,You &amp; Fan sp. nov. Figs 117: LM pictures.Valve views showing size diminution series. Figure 2 is of the holotype. Fig. 18: Girdle view. Scale bar=10 μm." figureDoi="http://doi.org/10.5281/zenodo.13709034" httpUri="https://zenodo.org/record/13709034/files/figure.png" pageId="1" pageNumber="119">Figs 118</figureCitation>
): Valves narrowly linear-clavate, asymmetrical to the transpical axis. Headpole slightly protracted to not protracted, rounded; valve narrows towards the rounded footpole. Length 1016 μm, breadth 2.4 3.7μm (
<specimenCount id="F8A10BFF846FFFCE07854E9BFEC24EC8" box="[223,376,1420,1445]" count="25" pageId="1" pageNumber="119" type="generic">25 specimens</specimenCount>
were measured based on the LM and SEM observations). Axial area linear, narrow, central area small, irregular in shape. Striae radiate in the middle of the valve and alternating in length, becoming convergent near the apices, 1316/10μm. Stigma indistinct, positioned at the end of a central stria.
@ -98,33 +99,33 @@ were measured based on the LM and SEM observations). Axial area linear, narrow,
<subSubSection id="A6BD93FD846FFFCE07E74EE1FD724CF8" pageId="1" pageNumber="119" type="description">
<paragraph id="EE18C076846FFFCE07E74EE1FD724CF8" blockId="1.[136,1453,1349,2083]" pageId="1" pageNumber="119">
SEM: The exterior valve face has broad, biseriate striae (
<figureCitation id="769CDCF3846FFFCE046C4EE1FC024D62" box="[822,952,1526,1551]" captionStart="FIGURES 1924" captionStartId="3.[136,243,1440,1461]" captionTargetBox="[231,1360,190,1400]" captionTargetId="figure-16@3.[227,1361,190,1415]" captionTargetPageId="3" captionText="FIGURES 1924. Gomphosinica lugunsis Liu, Kociolek, You &amp; Fan sp. nov. SEM pictures, externally view. Figs 1920: The whole valve; Fig. 21: Headpole of the valve, showing the distal raphe end (white arrow), and the two rows of areolae (black arrow); Fig 22: Central area of the valve, showing the opening of the stigma (white arrow), and the central pore (black arrow); Figs 2324: Footpole of the valve, Fig. 27: showing the apical pore field, Fig. 28: showing the distal raphe end." pageId="1" pageNumber="119">Figs 19, 20</figureCitation>
<figureCitation id="769CDCF3846FFFCE046C4EE1FC024D62" box="[822,952,1526,1551]" captionStart="FIGURES 1924" captionStartId="3.[136,243,1440,1461]" captionTargetBox="[231,1360,190,1400]" captionTargetId="figure-16@3.[227,1361,190,1415]" captionTargetPageId="3" captionText="FIGURES 1924. Gomphosinica lugunsis Liu, Kociolek, You &amp; Fan sp. nov. SEM pictures, externally view. Figs 1920: The whole valve; Fig. 21: Headpole of the valve, showing the distal raphe end (white arrow), and the two rows of areolae (black arrow); Fig 22: Central area of the valve, showing the opening of the stigma (white arrow), and the central pore (black arrow); Figs 2324: Footpole of the valve, Fig. 27: showing the apical pore field, Fig. 28: showing the distal raphe end." figureDoi="http://doi.org/10.5281/zenodo.13709038" httpUri="https://zenodo.org/record/13709038/files/figure.png" pageId="1" pageNumber="119">Figs 19, 20</figureCitation>
). Striae are composed of 2 rows of small and round areolae (
<figureCitation id="769CDCF3846FFFCE06684D0DFE3F4D5E" box="[306,389,1562,1587]" captionStart="FIGURES 1924" captionStartId="3.[136,243,1440,1461]" captionTargetBox="[231,1360,190,1400]" captionTargetId="figure-16@3.[227,1361,190,1415]" captionTargetPageId="3" captionText="FIGURES 1924. Gomphosinica lugunsis Liu, Kociolek, You &amp; Fan sp. nov. SEM pictures, externally view. Figs 1920: The whole valve; Fig. 21: Headpole of the valve, showing the distal raphe end (white arrow), and the two rows of areolae (black arrow); Fig 22: Central area of the valve, showing the opening of the stigma (white arrow), and the central pore (black arrow); Figs 2324: Footpole of the valve, Fig. 27: showing the apical pore field, Fig. 28: showing the distal raphe end." pageId="1" pageNumber="119">Fig. 21</figureCitation>
<figureCitation id="769CDCF3846FFFCE06684D0DFE3F4D5E" box="[306,389,1562,1587]" captionStart="FIGURES 1924" captionStartId="3.[136,243,1440,1461]" captionTargetBox="[231,1360,190,1400]" captionTargetId="figure-16@3.[227,1361,190,1415]" captionTargetPageId="3" captionText="FIGURES 1924. Gomphosinica lugunsis Liu, Kociolek, You &amp; Fan sp. nov. SEM pictures, externally view. Figs 1920: The whole valve; Fig. 21: Headpole of the valve, showing the distal raphe end (white arrow), and the two rows of areolae (black arrow); Fig 22: Central area of the valve, showing the opening of the stigma (white arrow), and the central pore (black arrow); Figs 2324: Footpole of the valve, Fig. 27: showing the apical pore field, Fig. 28: showing the distal raphe end." figureDoi="http://doi.org/10.5281/zenodo.13709038" httpUri="https://zenodo.org/record/13709038/files/figure.png" pageId="1" pageNumber="119">Fig. 21</figureCitation>
). The raphe is straight and the proximal raphe ends are slightly dilated, round (
<figureCitation id="769CDCF3846FFFCE025A4D0DFAEF4D5E" box="[1280,1365,1562,1587]" captionStart="FIGURES 1924" captionStartId="3.[136,243,1440,1461]" captionTargetBox="[231,1360,190,1400]" captionTargetId="figure-16@3.[227,1361,190,1415]" captionTargetPageId="3" captionText="FIGURES 1924. Gomphosinica lugunsis Liu, Kociolek, You &amp; Fan sp. nov. SEM pictures, externally view. Figs 1920: The whole valve; Fig. 21: Headpole of the valve, showing the distal raphe end (white arrow), and the two rows of areolae (black arrow); Fig 22: Central area of the valve, showing the opening of the stigma (white arrow), and the central pore (black arrow); Figs 2324: Footpole of the valve, Fig. 27: showing the apical pore field, Fig. 28: showing the distal raphe end." pageId="1" pageNumber="119">Fig. 22</figureCitation>
<figureCitation id="769CDCF3846FFFCE025A4D0DFAEF4D5E" box="[1280,1365,1562,1587]" captionStart="FIGURES 1924" captionStartId="3.[136,243,1440,1461]" captionTargetBox="[231,1360,190,1400]" captionTargetId="figure-16@3.[227,1361,190,1415]" captionTargetPageId="3" captionText="FIGURES 1924. Gomphosinica lugunsis Liu, Kociolek, You &amp; Fan sp. nov. SEM pictures, externally view. Figs 1920: The whole valve; Fig. 21: Headpole of the valve, showing the distal raphe end (white arrow), and the two rows of areolae (black arrow); Fig 22: Central area of the valve, showing the opening of the stigma (white arrow), and the central pore (black arrow); Figs 2324: Footpole of the valve, Fig. 27: showing the apical pore field, Fig. 28: showing the distal raphe end." figureDoi="http://doi.org/10.5281/zenodo.13709038" httpUri="https://zenodo.org/record/13709038/files/figure.png" pageId="1" pageNumber="119">Fig. 22</figureCitation>
). Distal raphe ends nearly straight at both poles (
<figureCitation id="769CDCF3846FFFCE05154D2AFD684D3B" box="[591,722,1597,1622]" captionStart="FIGURES 1924" captionStartId="3.[136,243,1440,1461]" captionTargetBox="[231,1360,190,1400]" captionTargetId="figure-16@3.[227,1361,190,1415]" captionTargetPageId="3" captionText="FIGURES 1924. Gomphosinica lugunsis Liu, Kociolek, You &amp; Fan sp. nov. SEM pictures, externally view. Figs 1920: The whole valve; Fig. 21: Headpole of the valve, showing the distal raphe end (white arrow), and the two rows of areolae (black arrow); Fig 22: Central area of the valve, showing the opening of the stigma (white arrow), and the central pore (black arrow); Figs 2324: Footpole of the valve, Fig. 27: showing the apical pore field, Fig. 28: showing the distal raphe end." pageId="1" pageNumber="119">Figs 21, 24</figureCitation>
<figureCitation id="769CDCF3846FFFCE05154D2AFD684D3B" box="[591,722,1597,1622]" captionStart="FIGURES 1924" captionStartId="3.[136,243,1440,1461]" captionTargetBox="[231,1360,190,1400]" captionTargetId="figure-16@3.[227,1361,190,1415]" captionTargetPageId="3" captionText="FIGURES 1924. Gomphosinica lugunsis Liu, Kociolek, You &amp; Fan sp. nov. SEM pictures, externally view. Figs 1920: The whole valve; Fig. 21: Headpole of the valve, showing the distal raphe end (white arrow), and the two rows of areolae (black arrow); Fig 22: Central area of the valve, showing the opening of the stigma (white arrow), and the central pore (black arrow); Figs 2324: Footpole of the valve, Fig. 27: showing the apical pore field, Fig. 28: showing the distal raphe end." figureDoi="http://doi.org/10.5281/zenodo.13709038" httpUri="https://zenodo.org/record/13709038/files/figure.png" pageId="1" pageNumber="119">Figs 21, 24</figureCitation>
). At the headpole, the raphe end is present only on the valve face and it terminates well before the apex (
<figureCitation id="769CDCF3846FFFCE051A4D76FD294D17" box="[576,659,1633,1658]" captionStart="FIGURES 1924" captionStartId="3.[136,243,1440,1461]" captionTargetBox="[231,1360,190,1400]" captionTargetId="figure-16@3.[227,1361,190,1415]" captionTargetPageId="3" captionText="FIGURES 1924. Gomphosinica lugunsis Liu, Kociolek, You &amp; Fan sp. nov. SEM pictures, externally view. Figs 1920: The whole valve; Fig. 21: Headpole of the valve, showing the distal raphe end (white arrow), and the two rows of areolae (black arrow); Fig 22: Central area of the valve, showing the opening of the stigma (white arrow), and the central pore (black arrow); Figs 2324: Footpole of the valve, Fig. 27: showing the apical pore field, Fig. 28: showing the distal raphe end." pageId="1" pageNumber="119">Fig. 21</figureCitation>
<figureCitation id="769CDCF3846FFFCE051A4D76FD294D17" box="[576,659,1633,1658]" captionStart="FIGURES 1924" captionStartId="3.[136,243,1440,1461]" captionTargetBox="[231,1360,190,1400]" captionTargetId="figure-16@3.[227,1361,190,1415]" captionTargetPageId="3" captionText="FIGURES 1924. Gomphosinica lugunsis Liu, Kociolek, You &amp; Fan sp. nov. SEM pictures, externally view. Figs 1920: The whole valve; Fig. 21: Headpole of the valve, showing the distal raphe end (white arrow), and the two rows of areolae (black arrow); Fig 22: Central area of the valve, showing the opening of the stigma (white arrow), and the central pore (black arrow); Figs 2324: Footpole of the valve, Fig. 27: showing the apical pore field, Fig. 28: showing the distal raphe end." figureDoi="http://doi.org/10.5281/zenodo.13709038" httpUri="https://zenodo.org/record/13709038/files/figure.png" pageId="1" pageNumber="119">Fig. 21</figureCitation>
). At the footpole, distal raphe ends extend slightly from the valve face onto the valve mantle, but does not bisect the apical pore field (APF) into two parts (
<figureCitation id="769CDCF3846FFFCE03674D93FB314DF0" box="[1085,1163,1668,1693]" captionStart="FIGURES 1924" captionStartId="3.[136,243,1440,1461]" captionTargetBox="[231,1360,190,1400]" captionTargetId="figure-16@3.[227,1361,190,1415]" captionTargetPageId="3" captionText="FIGURES 1924. Gomphosinica lugunsis Liu, Kociolek, You &amp; Fan sp. nov. SEM pictures, externally view. Figs 1920: The whole valve; Fig. 21: Headpole of the valve, showing the distal raphe end (white arrow), and the two rows of areolae (black arrow); Fig 22: Central area of the valve, showing the opening of the stigma (white arrow), and the central pore (black arrow); Figs 2324: Footpole of the valve, Fig. 27: showing the apical pore field, Fig. 28: showing the distal raphe end." pageId="1" pageNumber="119">Fig 24</figureCitation>
<figureCitation id="769CDCF3846FFFCE03674D93FB314DF0" box="[1085,1163,1668,1693]" captionStart="FIGURES 1924" captionStartId="3.[136,243,1440,1461]" captionTargetBox="[231,1360,190,1400]" captionTargetId="figure-16@3.[227,1361,190,1415]" captionTargetPageId="3" captionText="FIGURES 1924. Gomphosinica lugunsis Liu, Kociolek, You &amp; Fan sp. nov. SEM pictures, externally view. Figs 1920: The whole valve; Fig. 21: Headpole of the valve, showing the distal raphe end (white arrow), and the two rows of areolae (black arrow); Fig 22: Central area of the valve, showing the opening of the stigma (white arrow), and the central pore (black arrow); Figs 2324: Footpole of the valve, Fig. 27: showing the apical pore field, Fig. 28: showing the distal raphe end." figureDoi="http://doi.org/10.5281/zenodo.13709038" httpUri="https://zenodo.org/record/13709038/files/figure.png" pageId="1" pageNumber="119">Fig 24</figureCitation>
). The APF extends across the valve mantle, barely extending to the valve face. The valve mantle at the footpole is more heavily silicified, giving the impression that the porelli of the APF are larger than the areolae (
<figureCitation id="769CDCF3846FFFCE04F44DDCFBBF4D89" box="[942,1029,1739,1764]" captionStart="FIGURES 1924" captionStartId="3.[136,243,1440,1461]" captionTargetBox="[231,1360,190,1400]" captionTargetId="figure-16@3.[227,1361,190,1415]" captionTargetPageId="3" captionText="FIGURES 1924. Gomphosinica lugunsis Liu, Kociolek, You &amp; Fan sp. nov. SEM pictures, externally view. Figs 1920: The whole valve; Fig. 21: Headpole of the valve, showing the distal raphe end (white arrow), and the two rows of areolae (black arrow); Fig 22: Central area of the valve, showing the opening of the stigma (white arrow), and the central pore (black arrow); Figs 2324: Footpole of the valve, Fig. 27: showing the apical pore field, Fig. 28: showing the distal raphe end." pageId="1" pageNumber="119">Fig. 23</figureCitation>
<figureCitation id="769CDCF3846FFFCE04F44DDCFBBF4D89" box="[942,1029,1739,1764]" captionStart="FIGURES 1924" captionStartId="3.[136,243,1440,1461]" captionTargetBox="[231,1360,190,1400]" captionTargetId="figure-16@3.[227,1361,190,1415]" captionTargetPageId="3" captionText="FIGURES 1924. Gomphosinica lugunsis Liu, Kociolek, You &amp; Fan sp. nov. SEM pictures, externally view. Figs 1920: The whole valve; Fig. 21: Headpole of the valve, showing the distal raphe end (white arrow), and the two rows of areolae (black arrow); Fig 22: Central area of the valve, showing the opening of the stigma (white arrow), and the central pore (black arrow); Figs 2324: Footpole of the valve, Fig. 27: showing the apical pore field, Fig. 28: showing the distal raphe end." figureDoi="http://doi.org/10.5281/zenodo.13709038" httpUri="https://zenodo.org/record/13709038/files/figure.png" pageId="1" pageNumber="119">Fig. 23</figureCitation>
). A stigma located at one side of the central area, has a round opening (
<figureCitation id="769CDCF3846FFFCE05514DF8FDE54C65" box="[523,607,1775,1800]" captionStart="FIGURES 1924" captionStartId="3.[136,243,1440,1461]" captionTargetBox="[231,1360,190,1400]" captionTargetId="figure-16@3.[227,1361,190,1415]" captionTargetPageId="3" captionText="FIGURES 1924. Gomphosinica lugunsis Liu, Kociolek, You &amp; Fan sp. nov. SEM pictures, externally view. Figs 1920: The whole valve; Fig. 21: Headpole of the valve, showing the distal raphe end (white arrow), and the two rows of areolae (black arrow); Fig 22: Central area of the valve, showing the opening of the stigma (white arrow), and the central pore (black arrow); Figs 2324: Footpole of the valve, Fig. 27: showing the apical pore field, Fig. 28: showing the distal raphe end." pageId="1" pageNumber="119">Fig. 22</figureCitation>
<figureCitation id="769CDCF3846FFFCE05514DF8FDE54C65" box="[523,607,1775,1800]" captionStart="FIGURES 1924" captionStartId="3.[136,243,1440,1461]" captionTargetBox="[231,1360,190,1400]" captionTargetId="figure-16@3.[227,1361,190,1415]" captionTargetPageId="3" captionText="FIGURES 1924. Gomphosinica lugunsis Liu, Kociolek, You &amp; Fan sp. nov. SEM pictures, externally view. Figs 1920: The whole valve; Fig. 21: Headpole of the valve, showing the distal raphe end (white arrow), and the two rows of areolae (black arrow); Fig 22: Central area of the valve, showing the opening of the stigma (white arrow), and the central pore (black arrow); Figs 2324: Footpole of the valve, Fig. 27: showing the apical pore field, Fig. 28: showing the distal raphe end." figureDoi="http://doi.org/10.5281/zenodo.13709038" httpUri="https://zenodo.org/record/13709038/files/figure.png" pageId="1" pageNumber="119">Fig. 22</figureCitation>
). Internally, interstriae are thickened and raised (
<figureCitation id="769CDCF3846FFFCE03D94DF8FB624C65" box="[1155,1240,1775,1800]" captionStart="FIGURES 2530" captionStartId="4.[136,243,1240,1261]" captionTargetBox="[226,1357,190,1215]" captionTargetId="figure-14@4.[226,1361,190,1215]" captionTargetPageId="4" captionText="FIGURES 2530. Gomphosinica lugunsis Liu, Kociolek, You &amp; Fan sp. nov. SEM pictures, internally view. Figs 2526: The whole valve; Fig.27: Headpole of the valve, showing the helictoglossa (white arrow) and the septa (black arrow); Fig. 28: Footpole of the valve, showing the pseudosepta; Fig. 29: Central area, showing the opening of the stigma (white arrow) and proximal raphe ends (black arrow); Fig. 30: Magnification of the striae, showing the internal opening of the areolae." pageId="1" pageNumber="119">Fig. 28</figureCitation>
<figureCitation id="769CDCF3846FFFCE03D94DF8FB624C65" box="[1155,1240,1775,1800]" captionStart="FIGURES 2530" captionStartId="4.[136,243,1240,1261]" captionTargetBox="[226,1357,190,1215]" captionTargetId="figure-14@4.[226,1361,190,1215]" captionTargetPageId="4" captionText="FIGURES 2530. Gomphosinica lugunsis Liu, Kociolek, You &amp; Fan sp. nov. SEM pictures, internally view. Figs 2526: The whole valve; Fig.27: Headpole of the valve, showing the helictoglossa (white arrow) and the septa (black arrow); Fig. 28: Footpole of the valve, showing the pseudosepta; Fig. 29: Central area, showing the opening of the stigma (white arrow) and proximal raphe ends (black arrow); Fig. 30: Magnification of the striae, showing the internal opening of the areolae." figureDoi="http://doi.org/10.5281/zenodo.13709040" httpUri="https://zenodo.org/record/13709040/files/figure.png" pageId="1" pageNumber="119">Fig. 28</figureCitation>
). Areolar openings are small and round (
<figureCitation id="769CDCF3846FFFCE062C4C05FE704C46" box="[374,458,1810,1835]" captionStart="FIGURES 2530" captionStartId="4.[136,243,1240,1261]" captionTargetBox="[226,1357,190,1215]" captionTargetId="figure-14@4.[226,1361,190,1215]" captionTargetPageId="4" captionText="FIGURES 2530. Gomphosinica lugunsis Liu, Kociolek, You &amp; Fan sp. nov. SEM pictures, internally view. Figs 2526: The whole valve; Fig.27: Headpole of the valve, showing the helictoglossa (white arrow) and the septa (black arrow); Fig. 28: Footpole of the valve, showing the pseudosepta; Fig. 29: Central area, showing the opening of the stigma (white arrow) and proximal raphe ends (black arrow); Fig. 30: Magnification of the striae, showing the internal opening of the areolae." pageId="1" pageNumber="119">Fig. 30</figureCitation>
<figureCitation id="769CDCF3846FFFCE062C4C05FE704C46" box="[374,458,1810,1835]" captionStart="FIGURES 2530" captionStartId="4.[136,243,1240,1261]" captionTargetBox="[226,1357,190,1215]" captionTargetId="figure-14@4.[226,1361,190,1215]" captionTargetPageId="4" captionText="FIGURES 2530. Gomphosinica lugunsis Liu, Kociolek, You &amp; Fan sp. nov. SEM pictures, internally view. Figs 2526: The whole valve; Fig.27: Headpole of the valve, showing the helictoglossa (white arrow) and the septa (black arrow); Fig. 28: Footpole of the valve, showing the pseudosepta; Fig. 29: Central area, showing the opening of the stigma (white arrow) and proximal raphe ends (black arrow); Fig. 30: Magnification of the striae, showing the internal opening of the areolae." figureDoi="http://doi.org/10.5281/zenodo.13709040" httpUri="https://zenodo.org/record/13709040/files/figure.png" pageId="1" pageNumber="119">Fig. 30</figureCitation>
). Proximal raphe ends recurved to the same direction (
<figureCitation id="769CDCF3846FFFCE03754C05FB3E4C46" box="[1071,1156,1810,1835]" captionStart="FIGURES 2530" captionStartId="4.[136,243,1240,1261]" captionTargetBox="[226,1357,190,1215]" captionTargetId="figure-14@4.[226,1361,190,1215]" captionTargetPageId="4" captionText="FIGURES 2530. Gomphosinica lugunsis Liu, Kociolek, You &amp; Fan sp. nov. SEM pictures, internally view. Figs 2526: The whole valve; Fig.27: Headpole of the valve, showing the helictoglossa (white arrow) and the septa (black arrow); Fig. 28: Footpole of the valve, showing the pseudosepta; Fig. 29: Central area, showing the opening of the stigma (white arrow) and proximal raphe ends (black arrow); Fig. 30: Magnification of the striae, showing the internal opening of the areolae." pageId="1" pageNumber="119">Fig. 29</figureCitation>
<figureCitation id="769CDCF3846FFFCE03754C05FB3E4C46" box="[1071,1156,1810,1835]" captionStart="FIGURES 2530" captionStartId="4.[136,243,1240,1261]" captionTargetBox="[226,1357,190,1215]" captionTargetId="figure-14@4.[226,1361,190,1215]" captionTargetPageId="4" captionText="FIGURES 2530. Gomphosinica lugunsis Liu, Kociolek, You &amp; Fan sp. nov. SEM pictures, internally view. Figs 2526: The whole valve; Fig.27: Headpole of the valve, showing the helictoglossa (white arrow) and the septa (black arrow); Fig. 28: Footpole of the valve, showing the pseudosepta; Fig. 29: Central area, showing the opening of the stigma (white arrow) and proximal raphe ends (black arrow); Fig. 30: Magnification of the striae, showing the internal opening of the areolae." figureDoi="http://doi.org/10.5281/zenodo.13709040" httpUri="https://zenodo.org/record/13709040/files/figure.png" pageId="1" pageNumber="119">Fig. 29</figureCitation>
). Opening of the stigma is covered by a hooded structure, with several small perforations (
<figureCitation id="769CDCF3846FFFCE04124C21FC264C22" box="[840,924,1846,1871]" captionStart="FIGURES 2530" captionStartId="4.[136,243,1240,1261]" captionTargetBox="[226,1357,190,1215]" captionTargetId="figure-14@4.[226,1361,190,1215]" captionTargetPageId="4" captionText="FIGURES 2530. Gomphosinica lugunsis Liu, Kociolek, You &amp; Fan sp. nov. SEM pictures, internally view. Figs 2526: The whole valve; Fig.27: Headpole of the valve, showing the helictoglossa (white arrow) and the septa (black arrow); Fig. 28: Footpole of the valve, showing the pseudosepta; Fig. 29: Central area, showing the opening of the stigma (white arrow) and proximal raphe ends (black arrow); Fig. 30: Magnification of the striae, showing the internal opening of the areolae." pageId="1" pageNumber="119">Fig. 29</figureCitation>
<figureCitation id="769CDCF3846FFFCE04124C21FC264C22" box="[840,924,1846,1871]" captionStart="FIGURES 2530" captionStartId="4.[136,243,1240,1261]" captionTargetBox="[226,1357,190,1215]" captionTargetId="figure-14@4.[226,1361,190,1215]" captionTargetPageId="4" captionText="FIGURES 2530. Gomphosinica lugunsis Liu, Kociolek, You &amp; Fan sp. nov. SEM pictures, internally view. Figs 2526: The whole valve; Fig.27: Headpole of the valve, showing the helictoglossa (white arrow) and the septa (black arrow); Fig. 28: Footpole of the valve, showing the pseudosepta; Fig. 29: Central area, showing the opening of the stigma (white arrow) and proximal raphe ends (black arrow); Fig. 30: Magnification of the striae, showing the internal opening of the areolae." figureDoi="http://doi.org/10.5281/zenodo.13709040" httpUri="https://zenodo.org/record/13709040/files/figure.png" pageId="1" pageNumber="119">Fig. 29</figureCitation>
). Helictoglossae and pseudosepta are evident at the poles (
<figureCitation id="769CDCF3846FFFCE07A64C4EFEEB4C1F" box="[252,337,1881,1906]" captionStart="FIGURES 2530" captionStartId="4.[136,243,1240,1261]" captionTargetBox="[226,1357,190,1215]" captionTargetId="figure-14@4.[226,1361,190,1215]" captionTargetPageId="4" captionText="FIGURES 2530. Gomphosinica lugunsis Liu, Kociolek, You &amp; Fan sp. nov. SEM pictures, internally view. Figs 2526: The whole valve; Fig.27: Headpole of the valve, showing the helictoglossa (white arrow) and the septa (black arrow); Fig. 28: Footpole of the valve, showing the pseudosepta; Fig. 29: Central area, showing the opening of the stigma (white arrow) and proximal raphe ends (black arrow); Fig. 30: Magnification of the striae, showing the internal opening of the areolae." pageId="1" pageNumber="119">Fig. 27</figureCitation>
<figureCitation id="769CDCF3846FFFCE07A64C4EFEEB4C1F" box="[252,337,1881,1906]" captionStart="FIGURES 2530" captionStartId="4.[136,243,1240,1261]" captionTargetBox="[226,1357,190,1215]" captionTargetId="figure-14@4.[226,1361,190,1215]" captionTargetPageId="4" captionText="FIGURES 2530. Gomphosinica lugunsis Liu, Kociolek, You &amp; Fan sp. nov. SEM pictures, internally view. Figs 2526: The whole valve; Fig.27: Headpole of the valve, showing the helictoglossa (white arrow) and the septa (black arrow); Fig. 28: Footpole of the valve, showing the pseudosepta; Fig. 29: Central area, showing the opening of the stigma (white arrow) and proximal raphe ends (black arrow); Fig. 30: Magnification of the striae, showing the internal opening of the areolae." figureDoi="http://doi.org/10.5281/zenodo.13709040" httpUri="https://zenodo.org/record/13709040/files/figure.png" pageId="1" pageNumber="119">Fig. 27</figureCitation>
). The helictoglossae at the headpole are positioned a distance from the terminus of the valve. Septa and pseudosepta present at the apices (
<figureCitation id="769CDCF3846FFFCE05634C6BFD014CF8" box="[569,699,1916,1941]" captionStart="FIGURES 2530" captionStartId="4.[136,243,1240,1261]" captionTargetBox="[226,1357,190,1215]" captionTargetId="figure-14@4.[226,1361,190,1215]" captionTargetPageId="4" captionText="FIGURES 2530. Gomphosinica lugunsis Liu, Kociolek, You &amp; Fan sp. nov. SEM pictures, internally view. Figs 2526: The whole valve; Fig.27: Headpole of the valve, showing the helictoglossa (white arrow) and the septa (black arrow); Fig. 28: Footpole of the valve, showing the pseudosepta; Fig. 29: Central area, showing the opening of the stigma (white arrow) and proximal raphe ends (black arrow); Fig. 30: Magnification of the striae, showing the internal opening of the areolae." pageId="1" pageNumber="119">Figs 27, 28</figureCitation>
<figureCitation id="769CDCF3846FFFCE05634C6BFD014CF8" box="[569,699,1916,1941]" captionStart="FIGURES 2530" captionStartId="4.[136,243,1240,1261]" captionTargetBox="[226,1357,190,1215]" captionTargetId="figure-14@4.[226,1361,190,1215]" captionTargetPageId="4" captionText="FIGURES 2530. Gomphosinica lugunsis Liu, Kociolek, You &amp; Fan sp. nov. SEM pictures, internally view. Figs 2526: The whole valve; Fig.27: Headpole of the valve, showing the helictoglossa (white arrow) and the septa (black arrow); Fig. 28: Footpole of the valve, showing the pseudosepta; Fig. 29: Central area, showing the opening of the stigma (white arrow) and proximal raphe ends (black arrow); Fig. 30: Magnification of the striae, showing the internal opening of the areolae." figureDoi="http://doi.org/10.5281/zenodo.13709040" httpUri="https://zenodo.org/record/13709040/files/figure.png" pageId="1" pageNumber="119">Figs 27, 28</figureCitation>
).
</paragraph>
</subSubSection>
@ -144,7 +145,7 @@ SEM: The exterior valve face has broad, biseriate striae (
! Individual in slide
<collectionCode id="88B658B3846FFFCE063F4CD4FE0E4CB1" box="[357,436,1987,2012]" pageId="1" pageNumber="119">THHN</collectionCode>
2014469, here illustrated as
<figureCitation id="769CDCF3846FFFCE05A44CD4FCFF4CB1" box="[766,837,1987,2012]" captionStart="FIGURES 118" captionStartId="2.[136,243,1273,1294]" captionTargetBox="[331,1260,207,1221]" captionTargetId="figure-14@2.[305,1282,187,1244]" captionTargetPageId="2" captionText="FIGURES 118. Gomphosinica lugunsis Liu, Kociolek,You &amp; Fan sp. nov. Figs 117: LM pictures.Valve views showing size diminution series. Figure 2 is of the holotype. Fig. 18: Girdle view. Scale bar=10 μm." pageId="1" pageNumber="119">Fig. 2</figureCitation>
<figureCitation id="769CDCF3846FFFCE05A44CD4FCFF4CB1" box="[766,837,1987,2012]" captionStart="FIGURES 118" captionStartId="2.[136,243,1273,1294]" captionTargetBox="[331,1260,207,1221]" captionTargetId="figure-14@2.[305,1282,187,1244]" captionTargetPageId="2" captionText="FIGURES 118. Gomphosinica lugunsis Liu, Kociolek,You &amp; Fan sp. nov. Figs 117: LM pictures.Valve views showing size diminution series. Figure 2 is of the holotype. Fig. 18: Girdle view. Scale bar=10 μm." figureDoi="http://doi.org/10.5281/zenodo.13709034" httpUri="https://zenodo.org/record/13709034/files/figure.png" pageId="1" pageNumber="119">Fig. 2</figureCitation>
,
<typeStatus id="311C7ED4846FFFCE040F4CD4FC104CB1" box="[853,938,1987,2012]" pageId="1" pageNumber="119" type="isotype">isotype</typeStatus>
:

View file

@ -1,66 +1,67 @@
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<figureCitation id="7EC82A4AFFEFFB28FC9FFD37FC6BFD4E" box="[828,896,726,751]" captionStart="FIGURE 2" captionStartId="6.[136,229,1794,1815]" captionTargetBox="[151,1436,190,1769]" captionTargetId="figure-16@6.[151,1436,190,1769]" captionTargetPageId="6" captionText="FIGURE 2. Phylloporia minuta. A. Basidioma in situ indicated by a white arrow growing on Doliocarpus schottianus (FLOR 63064 paratype); B. Detail of the sulcate surface of the basidioma (FLOR 63063paratype); C. Minute dried basidiomata, showing the hymenophore (SPparatype); D. Detail of the basidiomata, showing the lower context and the upper tomentum separated by a thin black line indicated by a white arrow (FURB 55088holotype); D. Generative hyphae from the hymenophoral trama (SP paratype); E. Mass of collapsed basidiospores, observed in some specimens (SPparatype); F. Basidiospores (FURB 55088holotype). Bars:A, B = 10 mm; C, D = 2 mm, E, F = 20 μm. Photos by F. Bittencourt." figureDoi="http://doi.org/10.5281/zenodo.13708722" httpUri="https://zenodo.org/record/13708722/files/figure.png" pageId="5" pageNumber="204">Fig. 2</figureCitation>
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@ -61,9 +62,9 @@ E. Pérez-Calix &amp; R.Torres
<taxonomicNameLabel id="D2E4745D5C70AF49B50154DB038CFC5B" box="[838,923,943,968]" pageId="1" pageNumber="57" rank="species">sp. nov.</taxonomicNameLabel>
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,
<figureCitation id="639809B15C70AF49B5EF54DB03FDFC5B" box="[936,1002,943,968]" captionStart="FIGURE 1" captionStartId="2.[136,229,1443,1464]" captionTargetBox="[167,1421,194,1409]" captionTargetId="figure-14@2.[151,1436,183,1417]" captionTargetPageId="2" captionText="FIGURE 1. Pachyphytum rogeliocardenasii E. Pérez-Calix &amp; R. Torres, sp. nov. A) Habit; B) Variation of the foliar lamina and cross section of the leaf blade; C) Cincinnus lateral view; D) Cincinnus adaxial view; E) Flower; F) Flower dissection; G1) Petal abaxial view; G2) Petal lateral view; H) Seed. (AH based on E. Pérez 6616, IEB)" pageId="1" pageNumber="57">Fig. 1</figureCitation>
<figureCitation id="639809B15C70AF49B5EF54DB03FDFC5B" box="[936,1002,943,968]" captionStart="FIGURE 1" captionStartId="2.[136,229,1443,1464]" captionTargetBox="[167,1421,194,1409]" captionTargetId="figure-14@2.[151,1436,183,1417]" captionTargetPageId="2" captionText="FIGURE 1. Pachyphytum rogeliocardenasii E. Pérez-Calix &amp; R. Torres, sp. nov. A) Habit; B) Variation of the foliar lamina and cross section of the leaf blade; C) Cincinnus lateral view; D) Cincinnus adaxial view; E) Flower; F) Flower dissection; G1) Petal abaxial view; G2) Petal lateral view; H) Seed. (AH based on E. Pérez 6616, IEB)" figureDoi="http://doi.org/10.5281/zenodo.13708603" httpUri="https://zenodo.org/record/13708603/files/figure.png" pageId="1" pageNumber="57">Fig. 1</figureCitation>
;
<figureCitation id="639809B15C70AF49B5BF54DB046FFC5B" box="[1016,1144,943,968]" captionStart="FIGURE 2" captionStartId="3.[136,229,2002,2023]" captionTargetBox="[268,1319,190,1977]" captionTargetId="figure-13@3.[268,1319,190,1977]" captionTargetPageId="3" captionText="FIGURE 2. Pachyphytum rogeliocardenasii: A) habit; B) petal color; C) calyx lobes; D) inflorescence peduncle and floral bracts. P. garciae: E) habit; F) petal color; G) calyx lobes; H) inflorescence peduncle and flowers bracts." pageId="1" pageNumber="57">
<figureCitation id="639809B15C70AF49B5BF54DB046FFC5B" box="[1016,1144,943,968]" captionStart="FIGURE 2" captionStartId="3.[136,229,2002,2023]" captionTargetBox="[268,1319,190,1977]" captionTargetId="figure-13@3.[268,1319,190,1977]" captionTargetPageId="3" captionText="FIGURE 2. Pachyphytum rogeliocardenasii: A) habit; B) petal color; C) calyx lobes; D) inflorescence peduncle and floral bracts. P. garciae: E) habit; F) petal color; G) calyx lobes; H) inflorescence peduncle and flowers bracts." figureDoi="http://doi.org/10.5281/zenodo.13708605" httpUri="https://zenodo.org/record/13708605/files/figure.png" pageId="1" pageNumber="57">
Fig. 2 A
<emphasis id="C9D7C9265C70AF49B21454C50476FC54" box="[1107,1121,945,967]" italics="true" pageId="1" pageNumber="57"></emphasis>
D
@ -382,7 +383,7 @@ elevation,
<emphasis id="C9D7C9265C70AF49B6FA5094012EF86A" bold="true" box="[189,313,2016,2041]" pageId="1" pageNumber="57">Phenology</emphasis>
:—The new species is suffrutex and perennial, so it can be seen with the leaves arranged near the apex of the hanging stems throughout the year. It has been registered flowering in November and eventually in June.
</paragraph>
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<emphasis id="C9D7C9265C73AF4AB6CF52D700E8FA2B" bold="true" box="[136,255,1443,1464]" pageId="2" pageNumber="58">FIGURE 1.</emphasis>
<taxonomicName id="3CA36EB75C73AF4AB74152D7035AFA2B" authority="E. Perez-Calix &amp; R. Torres" authorityName="E. Perez-Calix &amp; R. Torres" authorityYear="2018" box="[262,845,1443,1464]" class="Magnoliopsida" family="Crassulaceae" genus="Pachyphytum" kingdom="Plantae" order="Saxifragales" pageId="2" pageNumber="58" phylum="Tracheophyta" rank="species" species="rogeliocardenasii" status="sp. nov.">
@ -464,7 +465,7 @@ is classified in Section
</paragraph>
<paragraph id="FB1C15345C73AF4AB6FA50C904ABF845" blockId="2.[136,1452,1585,2078]" box="[189,1212,1981,2006]" pageId="2" pageNumber="58">—The bracts are narrowly imbricate in the young cincinnus, long and bidentate at the base.</paragraph>
<paragraph id="FB1C15345C73AF4AB6FA5095025DF78D" blockId="2.[136,1452,1585,2078]" pageId="2" pageNumber="58">—The calyx exceeds the corolla, the segments of the first whorl are unequal between them, and the longer ones are imbricated before and after anthesis.</paragraph>
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<caption id="AFDC45BC5C72AF4BB6CF50A60401F798" ID-DOI="http://doi.org/10.5281/zenodo.13708605" ID-Zenodo-Dep="13708605" httpUri="https://zenodo.org/record/13708605/files/figure.png" pageId="3" pageNumber="59" startId="3.[136,229,2002,2023]" targetBox="[268,1319,190,1977]" targetPageId="3" targetType="figure">
<paragraph id="FB1C15345C72AF4BB6CF50A60401F798" blockId="3.[136,1455,2002,2059]" pageId="3" pageNumber="59">
<emphasis id="C9D7C9265C72AF4BB6CF50A60117F874" bold="true" box="[136,256,2002,2023]" pageId="3" pageNumber="59">FIGURE 2.</emphasis>
<taxonomicName id="3CA36EB75C72AF4BB74F50A6022BF874" authorityName="E. Perez-Calix &amp; R. Torres" authorityYear="2018" box="[264,572,2002,2023]" class="Magnoliopsida" family="Crassulaceae" genus="Pachyphytum" kingdom="Plantae" order="Saxifragales" pageId="3" pageNumber="59" phylum="Tracheophyta" rank="species" species="rogeliocardenasii">
@ -505,7 +506,7 @@ is morphologically similar to
longer and
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wider (
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@ -74,9 +75,9 @@ Zia Ullah, S. Jabeen, H. Ahmad
.
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(
<figureCitation id="86CA2A3EBA6CFFB588628F33FBD7FE0C" box="[1047,1142,1871,1896]" captionStart="FIGURE 3" captionStartId="4.[136,229,2026,2047]" captionTargetBox="[241,1346,353,2001]" captionTargetId="figure-69@4.[241,1346,353,2001]" captionTargetPageId="4" captionText="FIGURE 3. Inocybe pakistanensis sp. nov. basidiomata.A. LAH35283; B. LAH35284; C. LAH35285 (Holotype). Bars: A = 0.8 cm, B = 0.85 cm, C = 1.5 cm. Photographs by Zia Ullah." pageId="3" pageNumber="282">Figure 3</figureCitation>
<figureCitation id="86CA2A3EBA6CFFB588628F33FBD7FE0C" box="[1047,1142,1871,1896]" captionStart="FIGURE 3" captionStartId="4.[136,229,2026,2047]" captionTargetBox="[241,1346,353,2001]" captionTargetId="figure-69@4.[241,1346,353,2001]" captionTargetPageId="4" captionText="FIGURE 3. Inocybe pakistanensis sp. nov. basidiomata.A. LAH35283; B. LAH35284; C. LAH35285 (Holotype). Bars: A = 0.8 cm, B = 0.85 cm, C = 1.5 cm. Photographs by Zia Ullah." figureDoi="http://doi.org/10.5281/zenodo.13709191" httpUri="https://zenodo.org/record/13709191/files/figure.png" pageId="3" pageNumber="282">Figure 3</figureCitation>
&amp;
<figureCitation id="86CA2A3EBA6CFFB588EF8F33FB08FE0C" box="[1178,1193,1871,1896]" captionStart="FIGURE 4" captionStartId="5.[136,229,1741,1762]" captionTargetBox="[301,1291,198,1707]" captionTargetId="figure-14@5.[288,1300,190,1718]" captionTargetPageId="5" captionText="FIGURE 4. Anatomy of Inocybe pakistanensis sp. nov. (LAH35285). A. Basidiospores; B. Basidia; C. Cheilocystidia; D. Pleurocystidia; E. Pileipellis; F. Stipitipellis. Bars: AF = 10 μm. Drawings by Sana Jabeen." pageId="3" pageNumber="282">4</figureCitation>
<figureCitation id="86CA2A3EBA6CFFB588EF8F33FB08FE0C" box="[1178,1193,1871,1896]" captionStart="FIGURE 4" captionStartId="5.[136,229,1741,1762]" captionTargetBox="[301,1291,198,1707]" captionTargetId="figure-14@5.[288,1300,190,1718]" captionTargetPageId="5" captionText="FIGURE 4. Anatomy of Inocybe pakistanensis sp. nov. (LAH35285). A. Basidiospores; B. Basidia; C. Cheilocystidia; D. Pleurocystidia; E. Pileipellis; F. Stipitipellis. Bars: AF = 10 μm. Drawings by Sana Jabeen." figureDoi="http://doi.org/10.5281/zenodo.13709195" httpUri="https://zenodo.org/record/13709195/files/figure.png" pageId="3" pageNumber="282">4</figureCitation>
)
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@ -139,7 +140,7 @@ and
).
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<emphasis id="2C85EAA9BA6BFFB28CFD8F96FF5CFE9B" bold="true" box="[136,253,2026,2047]" pageId="4" pageNumber="283">FIGURE 3.</emphasis>
<taxonomicName id="D9F14D38BA6BFFB28D768F96FE77FE9B" authorityName="Ullah &amp; Jabeen &amp; Ahmad &amp; Khalid" authorityYear="2018" box="[259,470,2026,2047]" class="Agaricomycetes" family="Inocybaceae" genus="Inocybe" kingdom="Fungi" order="Agaricales" pageId="4" pageNumber="283" phylum="Basidiomycota" rank="species" species="pakistanensis" status="sp. nov.">
@ -154,7 +155,7 @@ and
basidiomata. A. LAH35283; B. LAH35284; C. LAH35285 (Holotype). Bars: A = 0.8 cm, B = 0.85 cm, C = 1.5 cm. Photographs by Zia Ullah.
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<emphasis id="2C85EAA9BA6AFFB38CFD8EB1FF5CFF86" bold="true" box="[136,253,1741,1762]" pageId="5" pageNumber="284">FIGURE 4.</emphasis>
Anatomy of

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@ -61,7 +62,7 @@ Funez &amp; Pansarin
<taxonomicNameLabel id="3897579D2045FFEEA22321B4E463FE8C" box="[533,618,246,271]" pageId="1" pageNumber="62" rank="species">sp. nov.</taxonomicNameLabel>
</emphasis>
(
<figureCitation id="89EB2A712045FFEEA24E21B4E4EBFE8C" box="[632,738,246,271]" captionStart-0="FIGURE 1" captionStart-1="FIGURE 2" captionStartId-0="2.[136,229,1953,1974]" captionStartId-1="3.[136,229,1944,1965]" captionTargetBox-0="[192,1396,187,1925]" captionTargetId-0="figure-15@2.[192,1396,187,1925]" captionTargetPageId-0="2" captionText-0="FIGURE 1. Cleistes pallida Funez &amp; Pansarin.A. Habit. B. Detail of a leaf. C. Flower in front view.D. Flower in lateral view.E. Perianth. F. Column in lateral view. Bars: A= 5 cm; BF = 1 cm." captionText-1="FIGURE 2. Holotype of Cleistes pallida." pageId="1" pageNumber="62">Figs. 12</figureCitation>
<figureCitation id="89EB2A712045FFEEA24E21B4E4EBFE8C" box="[632,738,246,271]" captionStart-0="FIGURE 1" captionStart-1="FIGURE 2" captionStartId-0="2.[136,229,1953,1974]" captionStartId-1="3.[136,229,1944,1965]" captionTargetBox-0="[192,1396,187,1925]" captionTargetId-0="figure-15@2.[192,1396,187,1925]" captionTargetPageId-0="2" captionText-0="FIGURE 1. Cleistes pallida Funez &amp; Pansarin.A. Habit. B. Detail of a leaf. C. Flower in front view.D. Flower in lateral view.E. Perianth. F. Column in lateral view. Bars: A= 5 cm; BF = 1 cm." captionText-1="FIGURE 2. Holotype of Cleistes pallida." figureDoi-0="http://doi.org/10.5281/zenodo.13709078" httpUri-0="https://zenodo.org/record/13709078/files/figure.png" pageId="1" pageNumber="62">Figs. 12</figureCitation>
)
</heading>
</paragraph>
@ -192,7 +193,7 @@ is known for the type-locality, an area of less than
, southern
<collectingCountry id="69C776642045FFEEA0BE254CE6D9FBA4" box="[136,208,1038,1063]" name="Brazil" pageId="1" pageNumber="62">Brazil</collectingCountry>
. (
<figureCitation id="89EB2A712045FFEEA0D2254CE720FBA4" box="[228,297,1038,1063]" captionStart="FIGURE 3" captionStartId="4.[136,229,1074,1095]" captionTargetBox="[195,1399,196,1044]" captionTargetId="figure-15@4.[183,1404,190,1049]" captionTargetPageId="4" captionText="FIGURE 3. Distribution map of Cleistes pallida." pageId="1" pageNumber="62">Fig. 3</figureCitation>
<figureCitation id="89EB2A712045FFEEA0D2254CE720FBA4" box="[228,297,1038,1063]" captionStart="FIGURE 3" captionStartId="4.[136,229,1074,1095]" captionTargetBox="[195,1399,196,1044]" captionTargetId="figure-15@4.[183,1404,190,1049]" captionTargetPageId="4" captionText="FIGURE 3. Distribution map of Cleistes pallida." figureDoi="http://doi.org/10.5281/zenodo.13709080" httpUri="https://zenodo.org/record/13709080/files/figure.png" pageId="1" pageNumber="62">Fig. 3</figureCitation>
). This species occurs on open vegetation of hilltops, in
<emphasis id="23A4EAE62045FFEEA3A8254CE23EFBA4" box="[926,1079,1038,1063]" italics="true" pageId="1" pageNumber="62">Vale do Itajaí</emphasis>
region
@ -206,7 +207,7 @@ elevation. The vegetation where
has been found is naturally more open than the surrounding vegetation. The presence of some ruderal species of grasses and
<taxonomicName id="D6D04D772045FFEEA20D2514E4EFFBEC" box="[571,742,1110,1135]" class="Polypodiopsida" family="Gleicheniaceae" kingdom="Plantae" order="Gleicheniales" pageId="1" pageNumber="62" phylum="Tracheophyta" rank="family">Gleicheniaceae</taxonomicName>
ferns is an indicative of anthropogenic disturbance in this area. (
<figureCitation id="89EB2A712045FFEEA0A62538E6DFFB10" box="[144,214,1146,1171]" captionStart="FIGURE 4" captionStartId="4.[136,229,2062,2083]" captionTargetBox="[183,1404,1121,2037]" captionTargetId="figure-25@4.[183,1404,1121,2037]" captionTargetPageId="4" captionText="FIGURE 4. Habitat of Cleistes pallida." pageId="1" pageNumber="62">Fig. 4</figureCitation>
<figureCitation id="89EB2A712045FFEEA0A62538E6DFFB10" box="[144,214,1146,1171]" captionStart="FIGURE 4" captionStartId="4.[136,229,2062,2083]" captionTargetBox="[183,1404,1121,2037]" captionTargetId="figure-25@4.[183,1404,1121,2037]" captionTargetPageId="4" captionText="FIGURE 4. Habitat of Cleistes pallida." figureDoi="http://doi.org/10.5281/zenodo.13709084" httpUri="https://zenodo.org/record/13709084/files/figure.png" pageId="1" pageNumber="62">Fig. 4</figureCitation>
).
</paragraph>
<paragraph id="116F36F42045FFEEA08B25DCE4D6FB7C" blockId="1.[136,1452,462,1927]" pageId="1" pageNumber="62">

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@ -1,59 +1,60 @@
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@ -66,7 +67,7 @@ W.B.
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@ -156,7 +157,7 @@ bromeliad tanks (
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@ -191,7 +192,7 @@ Sophia
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<paragraph id="460536DC9F244E3FFF6EFF5CFBFCFEA7" blockId="12.[136,1452,232,725]" pageId="12" pageNumber="71">Cells 3radiate, 0.91.1 times wider than long, median constriction shallow, sinus open, processes generally short, with 3 short spines at their terminations; semicells subtrapeziform, triangular in apical view, with an intramarginal series of warts, usually curves into direction to the angles, margins between the processes almost straight, slightly crenate; chloroplast axial. Cells 43.546 μm long, 5052 μm wide, 12.515 μm isthmus.</paragraph>

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@ -83,11 +84,11 @@ material numbered (
, population partially illustrated here in
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View file

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@ -65,7 +66,7 @@ G.J.P.Ramos, C.E.M.Bicudo &amp; C.W.N.Moura
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<taxonomicNameLabel id="6FFD57B59F2A4E31FBD3FD98FB01FD8F" box="[1077,1173,556,581]" pageId="2" pageNumber="61" rank="variety">var. nov.</taxonomicNameLabel>
(
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<figureCitation id="DE812A599F2A4E31FB45FD98FA93FD8F" box="[1187,1287,556,581]" captionStart="FIGURES 125" captionStartId="3.[136,243,1898,1919]" captionTargetBox="[213,1376,198,1859]" captionTargetId="figure-14@3.[202,1385,187,1870]" captionTargetPageId="3" captionText="FIGURES 125. Closterium cornu var. minus LM (1, 2); Cosmarium amoenum var. jiboensis: LM (36); SEM (78), ventral view (34, 7), lateral view (44) apical view (4648) and detail of cell wall with granules surrounded by pores; C. bahianum: LM (912); SEM (13), ventral view (910, 13), lateral view (11) apical view (12); C. elegantissimum: LM (1416); SEM (19), ventral view (1415, 1719), apical view (16); C. scrobiculosum: LM (2023); SEM (2425), ventral view (2021, 25), lateral view (22) apical view (2324). Scale bar 10 μm (17, 924), 5 μm (8, 25)." figureDoi="http://doi.org/10.5281/zenodo.13708374" httpUri="https://zenodo.org/record/13708374/files/figure.png" pageId="2" pageNumber="61">Figs 38</figureCitation>
)
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@ -85,11 +86,11 @@ material numbered (
, population partially illustrated here in
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View file

@ -1,59 +1,60 @@
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@ -83,11 +84,11 @@ material numbered (
, population partially illustrated here in
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@ -165,7 +166,7 @@ occurred in samples collected in bromeliad tanks (
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@ -168,7 +169,7 @@ resembles
Wille
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; the latter species differs, however, by having irregularly arranged granules, cells subcircular-elliptic in apical view, and smaller cell dimensions. During our analyses we observed some morphological variations in which the semicells were less elongated and had finer granules (
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@ -74,7 +75,7 @@ J. Kumla, N. Suwannarach &amp; S. Lumyong
<emphasis id="4C85281EFD465E14FC0CF94D9658F936" box="[996,1036,1750,1775]" italics="true" pageId="2" pageNumber="111">nov</emphasis>
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<figureCitation id="E6CAE889FD465E14FBF2F94D962CF936" box="[1050,1144,1750,1775]" captionStart="FIGURE 2" captionStartId="4.[136,229,2009,2030]" captionTargetBox="[166,1399,242,1957]" captionTargetId="figure-41@4.[166,1422,242,1981]" captionTargetPageId="4" captionText="FIGURE 2. Xanthagaricus thailandensis SDBR-CMUJK 010 (holotype).A. Basidiome, B. Basidiospores, C. Basidia, D. Cheliocystidia. E. Squamules on pileus. F. Caulocystidia. Scale bars: A = 1 cm; B, E and F = 5 μm; C, D = 10 μm." figureDoi="http://doi.org/10.5281/zenodo.13708595" httpUri="https://zenodo.org/record/13708595/files/figure.png" pageId="2" pageNumber="111">Figure 2</figureCitation>
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@ -147,7 +148,7 @@ sequence
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<emphasis id="4C85281EFD475E15FF60F93392A8F964" bold="true" box="[136,252,1704,1725]" pageId="3" pageNumber="112">FIGURE 1.</emphasis>
Phylogram derived from maximum likelihood analysis of the combined ITS and LSU region of nuclear rDNA of 40 sequences.
@ -167,7 +168,7 @@ were used as outgroup. The numbers above branches represent maximum likelihood b
<emphasis id="4C85281EFD475E15FF55F8C19357F8AA" box="[189,259,1882,1907]" italics="true" pageId="3" pageNumber="112">Pileus</emphasis>
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in diameter, conico-campanulate, hemispherical to convex, not umbonate, surface dry, pale orange (6A2), without any greenish tinge during development, at first covered by a smooth, pale orange (6A2) to grayish orange (6B3), plate-like squamule, with minute, scattered squamules towards the margin; margin at first incurved, appendiculate with white membranous remnants of annulus (
<figureCitation id="E6CAE889FD475E15FC74F85D91A2F806" box="[924,1014,1990,2015]" captionStart="FIGURE 2" captionStartId="4.[136,229,2009,2030]" captionTargetBox="[166,1399,242,1957]" captionTargetId="figure-41@4.[166,1422,242,1981]" captionTargetPageId="4" captionText="FIGURE 2. Xanthagaricus thailandensis SDBR-CMUJK 010 (holotype).A. Basidiome, B. Basidiospores, C. Basidia, D. Cheliocystidia. E. Squamules on pileus. F. Caulocystidia. Scale bars: A = 1 cm; B, E and F = 5 μm; C, D = 10 μm." pageId="3" pageNumber="112">Fig. 2A</figureCitation>
<figureCitation id="E6CAE889FD475E15FC74F85D91A2F806" box="[924,1014,1990,2015]" captionStart="FIGURE 2" captionStartId="4.[136,229,2009,2030]" captionTargetBox="[166,1399,242,1957]" captionTargetId="figure-41@4.[166,1422,242,1981]" captionTargetPageId="4" captionText="FIGURE 2. Xanthagaricus thailandensis SDBR-CMUJK 010 (holotype).A. Basidiome, B. Basidiospores, C. Basidia, D. Cheliocystidia. E. Squamules on pileus. F. Caulocystidia. Scale bars: A = 1 cm; B, E and F = 5 μm; C, D = 10 μm." figureDoi="http://doi.org/10.5281/zenodo.13708595" httpUri="https://zenodo.org/record/13708595/files/figure.png" pageId="3" pageNumber="112">Fig. 2A</figureCitation>
).
<emphasis id="4C85281EFD475E15FBE0F85D9624F806" box="[1032,1136,1990,2015]" italics="true" pageId="3" pageNumber="112">Lamellae</emphasis>
free, white to pinkish (7A2) when young, then becoming grayish pink (7B2) to brownish orange (5C4), up to
@ -180,7 +181,7 @@ wide, densely crowded, with 23 tiers of lamellulae.
<emphasis id="4C85281EFD405E12FF60FF5F92B0FF04" box="[136,228,196,221]" italics="true" pageId="4" pageNumber="113">Annulus</emphasis>
membranous, whitish, superior, attached to upper third of stipe.
</paragraph>
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<emphasis id="4C85281EFD405E12FF60F84292A9F837" bold="true" box="[136,253,2009,2030]" pageId="4" pageNumber="113">FIGURE 2.</emphasis>
<taxonomicName id="B9F18F8FFD405E12FEEBF84290E7F837" authority="SDBR-CMUJK" authorityName="SDBR-CMUJK" box="[259,691,2009,2030]" class="Agaricomycetes" family="Agaricaceae" genus="Xanthagaricus" kingdom="Fungi" order="Agaricales" pageId="4" pageNumber="113" phylum="Basidiomycota" rank="species" species="thailandensis">
@ -197,17 +198,17 @@ SDBR-CMUJK
= 1.331.75,
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= 1.56 ± 0.14, ellipsoidal to elongate, brownish yellow, smooth, thick-walled (
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<figureCitation id="E6CAE889FD415E13FECCFF5F9329FF04" box="[292,381,196,221]" captionStart="FIGURE 2" captionStartId="4.[136,229,2009,2030]" captionTargetBox="[166,1399,242,1957]" captionTargetId="figure-41@4.[166,1422,242,1981]" captionTargetPageId="4" captionText="FIGURE 2. Xanthagaricus thailandensis SDBR-CMUJK 010 (holotype).A. Basidiome, B. Basidiospores, C. Basidia, D. Cheliocystidia. E. Squamules on pileus. F. Caulocystidia. Scale bars: A = 1 cm; B, E and F = 5 μm; C, D = 10 μm." figureDoi="http://doi.org/10.5281/zenodo.13708595" httpUri="https://zenodo.org/record/13708595/files/figure.png" pageId="5" pageNumber="114">Fig. 2B</figureCitation>
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<emphasis id="4C85281EFD415E13FE7AFF5F93BCFF04" box="[402,488,196,221]" italics="true" pageId="5" pageNumber="114">Basidia</emphasis>
19.525 × 78 μm, clavate, hyaline, 4-spored; sterigmata up to 3 μm long (
<figureCitation id="E6CAE889FD415E13FAADFF5F97CBFF04" box="[1349,1439,196,221]" captionStart="FIGURE 2" captionStartId="4.[136,229,2009,2030]" captionTargetBox="[166,1399,242,1957]" captionTargetId="figure-41@4.[166,1422,242,1981]" captionTargetPageId="4" captionText="FIGURE 2. Xanthagaricus thailandensis SDBR-CMUJK 010 (holotype).A. Basidiome, B. Basidiospores, C. Basidia, D. Cheliocystidia. E. Squamules on pileus. F. Caulocystidia. Scale bars: A = 1 cm; B, E and F = 5 μm; C, D = 10 μm." pageId="5" pageNumber="114">Fig. 2C</figureCitation>
<figureCitation id="E6CAE889FD415E13FAADFF5F97CBFF04" box="[1349,1439,196,221]" captionStart="FIGURE 2" captionStartId="4.[136,229,2009,2030]" captionTargetBox="[166,1399,242,1957]" captionTargetId="figure-41@4.[166,1422,242,1981]" captionTargetPageId="4" captionText="FIGURE 2. Xanthagaricus thailandensis SDBR-CMUJK 010 (holotype).A. Basidiome, B. Basidiospores, C. Basidia, D. Cheliocystidia. E. Squamules on pileus. F. Caulocystidia. Scale bars: A = 1 cm; B, E and F = 5 μm; C, D = 10 μm." figureDoi="http://doi.org/10.5281/zenodo.13708595" httpUri="https://zenodo.org/record/13708595/files/figure.png" pageId="5" pageNumber="114">Fig. 2C</figureCitation>
).
<emphasis id="4C85281EFD415E13FF60FF73937EFED8" box="[136,298,232,257]" italics="true" pageId="5" pageNumber="114">Pleurocystidia</emphasis>
absent.
<emphasis id="4C85281EFD415E13FE60FF73907EFED8" box="[392,554,232,257]" italics="true" pageId="5" pageNumber="114">Cheliocystidia</emphasis>
1427 × 78.5 μm, varying in shape from subcylindrical to clavate, sometimes ovate, hyaline, thin-walled (
<figureCitation id="E6CAE889FD415E13FE2CFE97904BFEFC" box="[452,543,268,293]" captionStart="FIGURE 2" captionStartId="4.[136,229,2009,2030]" captionTargetBox="[166,1399,242,1957]" captionTargetId="figure-41@4.[166,1422,242,1981]" captionTargetPageId="4" captionText="FIGURE 2. Xanthagaricus thailandensis SDBR-CMUJK 010 (holotype).A. Basidiome, B. Basidiospores, C. Basidia, D. Cheliocystidia. E. Squamules on pileus. F. Caulocystidia. Scale bars: A = 1 cm; B, E and F = 5 μm; C, D = 10 μm." pageId="5" pageNumber="114">Fig. 2D</figureCitation>
<figureCitation id="E6CAE889FD415E13FE2CFE97904BFEFC" box="[452,543,268,293]" captionStart="FIGURE 2" captionStartId="4.[136,229,2009,2030]" captionTargetBox="[166,1399,242,1957]" captionTargetId="figure-41@4.[166,1422,242,1981]" captionTargetPageId="4" captionText="FIGURE 2. Xanthagaricus thailandensis SDBR-CMUJK 010 (holotype).A. Basidiome, B. Basidiospores, C. Basidia, D. Cheliocystidia. E. Squamules on pileus. F. Caulocystidia. Scale bars: A = 1 cm; B, E and F = 5 μm; C, D = 10 μm." figureDoi="http://doi.org/10.5281/zenodo.13708595" httpUri="https://zenodo.org/record/13708595/files/figure.png" pageId="5" pageNumber="114">Fig. 2D</figureCitation>
).
<emphasis id="4C85281EFD415E13FDDBFE979146FEFC" box="[563,786,268,293]" italics="true" pageId="5" pageNumber="114">Subhymenium layer</emphasis>
composed of thin-walled, inflated subglobose cells 512.5 μm diameter.
@ -215,11 +216,11 @@ composed of thin-walled, inflated subglobose cells 512.5 μm diameter.
regular to sub-regular, composed of subcylindrical hyphae, thin-walled, hyaline, 2.55 μm wide.
<emphasis id="4C85281EFD415E13FF16FECF9324FEB4" box="[254,368,340,365]" italics="true" pageId="5" pageNumber="114">Pileipellis</emphasis>
(squamules from pileal surface) epithelial, pseudoparenchymatous, composed of agglutinated, subglobose to oblong ellipsoidal cells, thin-walled, terminal cells 526 × 4.58.5 μm (
<figureCitation id="E6CAE889FD415E13FBBDFEE396F9FE48" box="[1109,1197,376,401]" captionStart="FIGURE 2" captionStartId="4.[136,229,2009,2030]" captionTargetBox="[166,1399,242,1957]" captionTargetId="figure-41@4.[166,1422,242,1981]" captionTargetPageId="4" captionText="FIGURE 2. Xanthagaricus thailandensis SDBR-CMUJK 010 (holotype).A. Basidiome, B. Basidiospores, C. Basidia, D. Cheliocystidia. E. Squamules on pileus. F. Caulocystidia. Scale bars: A = 1 cm; B, E and F = 5 μm; C, D = 10 μm." pageId="5" pageNumber="114">Fig. 2E</figureCitation>
<figureCitation id="E6CAE889FD415E13FBBDFEE396F9FE48" box="[1109,1197,376,401]" captionStart="FIGURE 2" captionStartId="4.[136,229,2009,2030]" captionTargetBox="[166,1399,242,1957]" captionTargetId="figure-41@4.[166,1422,242,1981]" captionTargetPageId="4" captionText="FIGURE 2. Xanthagaricus thailandensis SDBR-CMUJK 010 (holotype).A. Basidiome, B. Basidiospores, C. Basidia, D. Cheliocystidia. E. Squamules on pileus. F. Caulocystidia. Scale bars: A = 1 cm; B, E and F = 5 μm; C, D = 10 μm." figureDoi="http://doi.org/10.5281/zenodo.13708595" httpUri="https://zenodo.org/record/13708595/files/figure.png" pageId="5" pageNumber="114">Fig. 2E</figureCitation>
).
<emphasis id="4C85281EFD415E13FB29FEE39709FE48" box="[1217,1373,376,401]" italics="true" pageId="5" pageNumber="114">Caulocystidia</emphasis>
1530 × 35 μm, abundant, varying in shape from cylindrical to clavate, sometimes ovate, hyaline, slightly thick-walled; basal cells variable in shape, cylindrical to clavate, sometimes ovate, 1535 × 25 μm, smooth, thin-walled to slightly thick-walled (
<figureCitation id="E6CAE889FD415E13FECBFE7F932DFE24" box="[291,377,484,509]" captionStart="FIGURE 2" captionStartId="4.[136,229,2009,2030]" captionTargetBox="[166,1399,242,1957]" captionTargetId="figure-41@4.[166,1422,242,1981]" captionTargetPageId="4" captionText="FIGURE 2. Xanthagaricus thailandensis SDBR-CMUJK 010 (holotype).A. Basidiome, B. Basidiospores, C. Basidia, D. Cheliocystidia. E. Squamules on pileus. F. Caulocystidia. Scale bars: A = 1 cm; B, E and F = 5 μm; C, D = 10 μm." pageId="5" pageNumber="114">Fig. 2F</figureCitation>
<figureCitation id="E6CAE889FD415E13FECBFE7F932DFE24" box="[291,377,484,509]" captionStart="FIGURE 2" captionStartId="4.[136,229,2009,2030]" captionTargetBox="[166,1399,242,1957]" captionTargetId="figure-41@4.[166,1422,242,1981]" captionTargetPageId="4" captionText="FIGURE 2. Xanthagaricus thailandensis SDBR-CMUJK 010 (holotype).A. Basidiome, B. Basidiospores, C. Basidia, D. Cheliocystidia. E. Squamules on pileus. F. Caulocystidia. Scale bars: A = 1 cm; B, E and F = 5 μm; C, D = 10 μm." figureDoi="http://doi.org/10.5281/zenodo.13708595" httpUri="https://zenodo.org/record/13708595/files/figure.png" pageId="5" pageNumber="114">Fig. 2F</figureCitation>
).
<emphasis id="4C85281EFD415E13FE65FE7F9030FE24" box="[397,612,484,509]" italics="true" pageId="5" pageNumber="114">Clamp connections</emphasis>
absent in all tissues.

View file

@ -1,56 +1,57 @@
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@ -65,9 +66,9 @@ Rasingam &amp; J. Swamy
<taxonomicNameLabel id="5EEBD4781C31FFE9C4A1F99EFCDD6B0F" box="[711,796,1586,1611]" pageId="0" pageNumber="159" rank="species">sp. nov.</taxonomicNameLabel>
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<figureCitation id="EF97A9941C31FFE9C545F99EFCA86B0F" box="[803,873,1586,1611]" captionStart="FIGURE 1" captionStartId="1.[136,229,1962,1983]" captionTargetBox="[151,1436,187,1934]" captionTargetId="figure-14@1.[151,1436,187,1934]" captionTargetPageId="1" captionText="FIGURE 1. Crotalaria nallamalayana sp. nov. a. Flowering twig; b. Raceme; c. Pods (photos: L. Rasingam)." figureDoi="http://doi.org/10.5281/zenodo.13708515" httpUri="https://zenodo.org/record/13708515/files/figure.png" pageId="0" pageNumber="159">Figs 1</figureCitation>
,
<figureCitation id="EF97A9941C31FFE9C511F99EFC476B0F" box="[887,902,1586,1611]" captionStart="FIGURE 2" captionStartId="2.[136,229,1953,1974]" captionTargetBox="[189,1398,190,1928]" captionTargetId="figure-14@2.[189,1399,190,1928]" captionTargetPageId="2" captionText="FIGURE 2. Crotalaria nallamalayana sp. nov. a. Flowering twig; b &amp; c. Leaf upper surface; d &amp; e. Leaf lower surface; f. Stipule; g. Bract; h. Flower; i. Calyx; j. Corolla; k. Stamens; l. Gynoecium; m. Pod (from L. Rasingam &amp; M. Sankara Rao 3715 (BSID))." pageId="0" pageNumber="159">2</figureCitation>
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.
</emphasis>
</heading>
@ -206,7 +207,7 @@ long with ca.
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geniculate beak, thinly hairy on surface, 78 seeded; seeds reniform.
</paragraph>
<caption id="23D3E5991C30FFE8C6EEF806FB666AFB" box="[136,1191,1962,1983]" pageId="1" pageNumber="160" startId="1.[136,229,1962,1983]" targetBox="[151,1436,187,1934]" targetPageId="1" targetType="figure">
<caption id="23D3E5991C30FFE8C6EEF806FB666AFB" ID-DOI="http://doi.org/10.5281/zenodo.13708515" ID-Zenodo-Dep="13708515" box="[136,1191,1962,1983]" httpUri="https://zenodo.org/record/13708515/files/figure.png" pageId="1" pageNumber="160" startId="1.[136,229,1962,1983]" targetBox="[151,1436,187,1934]" targetPageId="1" targetType="figure">
<paragraph id="7713B5111C30FFE8C6EEF806FB666AFB" blockId="1.[136,1191,1962,1983]" box="[136,1191,1962,1983]" pageId="1" pageNumber="160">
<emphasis id="45D869031C30FFE8C6EEF806FF3F6AFB" bold="true" box="[136,254,1962,1983]" pageId="1" pageNumber="160">FIGURE 1.</emphasis>
<taxonomicName id="B0ACCE921C30FFE8C765F806FE3E6AFB" authorityName="Rasingam &amp; Swamy &amp; Rao" authorityYear="2018" box="[259,511,1962,1983]" class="Magnoliopsida" family="Fabaceae" genus="Crotalaria" kingdom="Plantae" order="Fabales" pageId="1" pageNumber="160" phylum="Tracheophyta" rank="species" species="nallamalayana" status="sp. nov.">
@ -216,7 +217,7 @@ geniculate beak, thinly hairy on surface, 78 seeded; seeds reniform.
a. Flowering twig; b. Raceme; c. Pods (photos: L. Rasingam).
</paragraph>
</caption>
<caption id="23D3E5991C33FFEBC6EEF80DFAC26A9E" pageId="2" pageNumber="161" startId="2.[136,229,1953,1974]" targetBox="[189,1398,190,1928]" targetPageId="2" targetType="figure">
<caption id="23D3E5991C33FFEBC6EEF80DFAC26A9E" ID-DOI="http://doi.org/10.5281/zenodo.13708517" ID-Zenodo-Dep="13708517" httpUri="https://zenodo.org/record/13708517/files/figure.png" pageId="2" pageNumber="161" startId="2.[136,229,1953,1974]" targetBox="[189,1398,190,1928]" targetPageId="2" targetType="figure">
<paragraph id="7713B5111C33FFEBC6EEF80DFAC26A9E" blockId="2.[136,1452,1953,2010]" pageId="2" pageNumber="161">
<emphasis id="45D869031C33FFEBC6EEF80DFF3D6AF2" bold="true" box="[136,252,1953,1974]" pageId="2" pageNumber="161">FIGURE 2.</emphasis>
<taxonomicName id="B0ACCE921C33FFEBC767F80DFE3D6AF2" authorityName="Rasingam &amp; Swamy &amp; Rao" authorityYear="2018" box="[257,508,1953,1974]" class="Magnoliopsida" family="Fabaceae" genus="Crotalaria" kingdom="Plantae" order="Fabales" pageId="2" pageNumber="161" phylum="Tracheophyta" rank="species" species="nallamalayana" status="sp. nov.">
@ -272,7 +273,7 @@ L. (1753: 673).
<collectingCountry id="0FBBF5811C32FFEAC710FC38FE706EE9" box="[374,433,916,941]" name="India" pageId="3" pageNumber="162">India</collectingCountry>
, Telangana, Mahabubnagar district, Amrabad Tiger Reserve, Mallayalodhi (
<figureCitation id="EF97A9941C32FFEAC362FC38FA886EE9" box="[1284,1353,916,941]" captionStart="FIGURE 3" captionStartId="4.[136,229,1953,1974]" captionTargetBox="[253,1343,197,1923]" captionTargetId="figure-14@4.[241,1346,190,1929]" captionTargetPageId="4" captionText="FIGURE 3. Map showing the type locality of Crotalaria nallamalayana sp. nov. in Peninsular India." pageId="3" pageNumber="162">Fig. 3</figureCitation>
<figureCitation id="EF97A9941C32FFEAC362FC38FA886EE9" box="[1284,1353,916,941]" captionStart="FIGURE 3" captionStartId="4.[136,229,1953,1974]" captionTargetBox="[253,1343,197,1923]" captionTargetId="figure-14@4.[241,1346,190,1929]" captionTargetPageId="4" captionText="FIGURE 3. Map showing the type locality of Crotalaria nallamalayana sp. nov. in Peninsular India." figureDoi="http://doi.org/10.5281/zenodo.13708519" httpUri="https://zenodo.org/record/13708519/files/figure.png" pageId="3" pageNumber="162">Fig. 3</figureCitation>
).
</paragraph>
</subSubSection>