treatments-xml/data/8A/5D/BB/8A5DBB36FFA02902FCFCFDF2FB57F911.xml
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<document id="808FAD6762AC48E249D4B4D566E0AF52" ID-CLB-Dataset="246324" ID-DOI="10.5252/cryptogamie-mycologie2020v41a3" ID-GBIF-Dataset="62653781-1f18-4362-a843-6dd324fe64be" ID-ISSN="1776-100X" ID-Zenodo-Dep="7815042" IM.bibliography_approvedBy="juliana" IM.illustrations_approvedBy="juliana" IM.materialsCitations_approvedBy="felipe" IM.metadata_approvedBy="felipe" IM.tables_approvedBy="juliana" IM.taxonomicNames_approvedBy="felipe" IM.treatments_approvedBy="juliana" checkinTime="1681175622560" checkinUser="felipe" docAuthor="Dayarathne, Monika C., Wanasinghe, Dhanushka N., Devadatha, B., Abeywickrama, Pranami, G, E. B., Jones, areth, Chomnunti, Putarak, Sarma, V. V., Hyde, Kevin D., Lumyong, Saisamorn, C., Eric H. &amp; Mckenzie" docDate="2020" docId="8A5DBB36FFA02902FCFCFDF2FB57F911" docLanguage="en" docName="CryptogamieMycologie.41.3.21-67.pdf" docOrigin="Cryptogamie, Mycologie 20 (3)" docSource="http://dx.doi.org/10.5252/cryptogamie-mycologie2020v41a3" docStyle="DocumentStyle:81F49AB8619EB7E5D11A6328441E2653.3:CryptogamieMycologie.2019-.journal_article" docStyleId="81F49AB8619EB7E5D11A6328441E2653" docStyleName="CryptogamieMycologie.2019-.journal_article" docStyleVersion="3" docTitle="Diatrypasimilis australiensis J. J. Zhou &amp; Kohlm" docType="treatment" docVersion="10" lastPageNumber="48" masterDocId="7664C34EFFBD291FFF95FFE4FFA0FFBD" masterDocTitle="Modern taxonomic approaches to identifying diatrypaceous fungi from marine habitats, with a novel genus Halocryptovalsa Dayarathne &amp; K. D. Hyde, gen. nov." masterLastPageNumber="67" masterPageNumber="21" pageNumber="48" updateTime="1699513688639" updateUser="ExternalLinkService" zenodo-license-document="CC0-1.0" zenodo-license-figures="CC0-1.0" zenodo-license-treatments="UNSPECIFIED">
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<mods:title id="44A15E95A2C02C79D46C68DAF36DAF29">Modern taxonomic approaches to identifying diatrypaceous fungi from marine habitats, with a novel genus Halocryptovalsa Dayarathne &amp; K. D. Hyde, gen. nov.</mods:title>
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<mods:namePart id="21B8B6DD8B195A30EFA68B3339D81D9C">Dayarathne, Monika C.</mods:namePart>
<mods:affiliation id="226F2C1F229E1FCF22B26BD71200DF66">Center of Excellence in Fungal Research, Mae Fah Luang University, Chiang Rai 57100 (Thailand) World Agroforestry Centre East and Central Asia Office, 132 Lanhei Road, Kunming 650201 (China) Laboratory for Plant Biodiversity and Biogeography of East Asia (KLPB), Kunming Institute of Botany, Chinese Academy of Science, Kunming 650201, Yunnan (China) monidaya 40 @ gmail. com (corresponding author)</mods:affiliation>
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<mods:namePart id="5CCC62F732763F9C6CADB805D94C45BC">Wanasinghe, Dhanushka N.</mods:namePart>
<mods:affiliation id="4E7655974ED3C693BC2B3D2639B14C8B">Center of Excellence in Fungal Research, Mae Fah Luang University, Chiang Rai 57100 (Thailand) World Agroforestry Centre East and Central Asia Office, 132 Lanhei Road, Kunming 650201 (China)</mods:affiliation>
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<mods:namePart id="AE590E4513F595787A0FFCB34B73AA81">Abeywickrama, Pranami</mods:namePart>
<mods:affiliation id="3793ABCC02A4D9DF951F0C3AD33E8546">Center of Excellence in Fungal Research, Mae Fah Luang University, Chiang Rai 57100 (Thailand) of Plant and Environment Protection, Beijing Academy of Agriculture and Forestry Sciences (China)</mods:affiliation>
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<mods:namePart id="EC9C2638F64CD450AC83ADD026CAE4DD">G, E. B.</mods:namePart>
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<mods:namePart id="0D1069B34344E2F78A15BEBB5B9949FB">Chomnunti, Putarak</mods:namePart>
<mods:affiliation id="2F03583AA401611A7C454F85F22C1469">Center of Excellence in Fungal Research, Mae Fah Luang University, Chiang Rai 57100 (Thailand)</mods:affiliation>
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<mods:namePart id="16F75EDD37D1B3EE4DFA59DFB9A85A0E">Sarma, V. V.</mods:namePart>
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<mods:namePart id="DFD35C5E3BEA8EE8632D58A5DE0FEC9C">Hyde, Kevin D.</mods:namePart>
<mods:affiliation id="D9395BCADEA7882540C137DD3AD0F36F">Center of Excellence in Fungal Research, Mae Fah Luang University, Chiang Rai 57100 (Thailand) World Agroforestry Centre East and Central Asia Office, 132 Lanhei Road, Kunming 650201 (China) Laboratory for Plant Biodiversity and Biogeography of East Asia (KLPB), Kunming Institute of Botany, Chinese Academy of Science, Kunming 650201, Yunnan (China)</mods:affiliation>
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<mods:namePart id="D28189AA8E8CB2D62935BF0EF43A5588">Lumyong, Saisamorn</mods:namePart>
<mods:affiliation id="10C911D0CFFD98899422B17943A201D6">Department of Biology, Faculty of Science, Chiang Mai University, Chiang Mai 50200 (Thailand)</mods:affiliation>
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<mods:namePart id="1AB2DC8A94E48D004069773E1C935815">C., Eric H.</mods:namePart>
<mods:affiliation id="C8E979A1C0A9BD18FF589A739524FC0D">Department of Biology, Faculty of Science, Chiang Mai University, Chiang Mai Research New Zealand, Private Bag 92170, Auckland Mail Centre, Auckland 1142 mckenziee @ landcareresearch. co. nz (corresponding</mods:affiliation>
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<treatment id="8A5DBB36FFA02902FCFCFDF2FB57F911" ID-DOI="http://doi.org/10.5281/zenodo.7826227" ID-GBIF-Taxon="209502957" ID-Zenodo-Dep="7826227" LSID="urn:lsid:plazi:treatment:8A5DBB36FFA02902FCFCFDF2FB57F911" httpUri="http://treatment.plazi.org/id/8A5DBB36FFA02902FCFCFDF2FB57F911" lastPageNumber="48" pageId="29" pageNumber="48">
<subSubSection id="4AEE59ABFFA02902FCFCFDF2FBD9FDDA" pageId="29" pageNumber="48" type="nomenclature">
<paragraph id="024B0A20FFA02902FCFCFDF2FAD3FD8D" blockId="29.[873,1395,534,561]" box="[873,1395,534,561]" pageId="29" pageNumber="48">
<heading id="5903BD4CFFA02902FCFCFDF2FAD3FD8D" box="[873,1395,534,561]" centered="true" fontSize="11" level="2" pageId="29" pageNumber="48" reason="4">
<taxonomicName id="C5F471A3FFA02902FCFCFDF2FAD3FD8D" ID-CoL="6CQVV" ID-ENA="646464" authority="J. J. Zhou &amp; Kohlm" box="[873,1395,534,561]" class="Sordariomycetes" family="Diatrypaceae" genus="Diatrypasimilis" kingdom="Fungi" order="Xylariales" pageId="29" pageNumber="48" phylum="Ascomycota" rank="species" species="australiensis">
<emphasis id="3080D632FFA02902FCFCFDF2FB3DFD8C" bold="true" box="[873,1181,534,561]" italics="true" pageId="29" pageNumber="48">Diatrypasimilis australiensis</emphasis>
J.J.Zhou &amp; Kohlm
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</heading>
</paragraph>
<paragraph id="024B0A20FFA02902FCDFFDABFBD9FDDA" blockId="29.[813,1455,591,655]" box="[842,1145,591,615]" pageId="29" pageNumber="48">
<bibCitation id="D7DE024CFFA02902FCDFFDABFBD5FDDA" box="[842,1141,591,615]" issue="2" journal="Mycologia" page="432" pageId="29" pageNumber="48" score="9.729594737742866" volume="102" year="2010">
<emphasis id="3080D632FFA02902FCDFFDABFC08FDDA" box="[842,936,591,615]" italics="true" pageId="29" pageNumber="48">Mycologia</emphasis>
102 (2): 432 (2010)
</bibCitation>
.
</paragraph>
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<subSubSection id="4AEE59ABFFA02902FCB8FD9CFA0FFD32" box="[813,1455,631,655]" pageId="29" pageNumber="48" type="description">
<paragraph id="024B0A20FFA02902FCB8FD9CFA0FFD32" blockId="29.[813,1455,591,655]" box="[813,1455,631,655]" pageId="29" pageNumber="48">
DESCRIPTION AND ILLUSTRATION. — SeeAbdel-Wahab
<emphasis id="3080D632FFA02902FAA2FD9CFAC4FD32" box="[1335,1380,631,655]" italics="true" pageId="29" pageNumber="48">et al.</emphasis>
(2014).
</paragraph>
</subSubSection>
<subSubSection id="4AEE59ABFFA02902FCB8FD43FCD7FCB3" pageId="29" pageNumber="48" type="distribution">
<paragraph id="024B0A20FFA02902FCB8FD43FB6DFD02" blockId="29.[813,1229,679,703]" box="[813,1229,679,703]" pageId="29" pageNumber="48">
DISTRIBUTION. —
<collectingCountry id="7AE34AB0FFA02902FC73FD43FB9FFD02" box="[998,1087,679,703]" name="Australia" pageId="29" pageNumber="48">Australia</collectingCountry>
,
<collectingCountry id="7AE34AB0FFA02902FBDCFD43FB69FD02" box="[1097,1225,679,703]" name="Saudi Arabia" pageId="29" pageNumber="48">Saudi Arabia</collectingCountry>
.
</paragraph>
<paragraph id="024B0A20FFA02902FCB8FD12FCD7FCB3" blockId="29.[813,887,758,784]" box="[813,887,758,784]" pageId="29" pageNumber="48">
<heading id="5903BD4CFFA02902FCB8FD12FCD7FCB3" box="[813,887,758,784]" fontSize="9" level="3" pageId="29" pageNumber="48" reason="5">NOTES</heading>
</paragraph>
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<subSubSection id="4AEE59ABFFA02902FCB8FCF1FB57F911" pageId="29" pageNumber="48" type="reference_group">
<paragraph id="024B0A20FFA02902FCB8FCF1FB57F911" blockId="29.[811,1458,789,1708]" pageId="29" pageNumber="48">
<taxonomicName id="C5F471A3FFA02902FCB8FCF1FBF0FC92" ID-CoL="6CQVV" authority="J.J.Zhou &amp; Kohlm." box="[813,1104,789,815]" class="Sordariomycetes" family="Diatrypaceae" genus="Diatrypasimilis" kingdom="Fungi" order="Xylariales" pageId="29" pageNumber="48" phylum="Ascomycota" rank="species" species="australiensis">
<emphasis id="3080D632FFA02902FCB8FCF1FBF0FC92" box="[813,1104,789,815]" italics="true" pageId="29" pageNumber="48">Diatrypasimilis australiensis</emphasis>
</taxonomicName>
has characters that are common to the
<taxonomicName id="C5F471A3FFA02902FCEFFCD2FBA3FCF2" ID-CoL="977" box="[890,1027,822,847]" class="Sordariomycetes" family="Diatrypaceae" kingdom="Fungi" order="Xylariales" pageId="29" pageNumber="48" phylum="Ascomycota" rank="family">
<emphasis id="3080D632FFA02902FCEFFCD2FBA3FCF2" box="[890,1027,822,847]" italics="true" pageId="29" pageNumber="48">Diatrypaceae</emphasis>
</taxonomicName>
, but the ellipsoidal ascospores, with a germ slit are unique. Members of
<taxonomicName id="C5F471A3FFA02902FB08FCB2FA84FCD2" ID-CoL="977" box="[1181,1316,854,879]" class="Sordariomycetes" family="Diatrypaceae" kingdom="Fungi" order="Xylariales" pageId="29" pageNumber="48" phylum="Ascomycota" rank="family">
<emphasis id="3080D632FFA02902FB08FCB2FA84FCD2" box="[1181,1316,854,879]" italics="true" pageId="29" pageNumber="48">Diatrypaceae</emphasis>
</taxonomicName>
usually have allantoid ascospores and lack germ pores or slits (
<bibRefCitation id="666577D1FFA02902FADAFC91FC3DFC12" author="Chalkley" etAl="et al." firstAuthor="Chalkley" pageId="29" pageNumber="48" pagination="430 - 437" refId="ref23951" refString="CHALKLEY D. B., SU S. O., KOHLMEYE B. V., KOHLMEYER J. &amp; ZHOU J. J. 2010. - Diatrypasimilis australiensis, a novel xylarialean fungus from mangrove. Mycologia 102: 430 - 437. https: // doi. org / 10.3852 / 09 - 142" type="journal article" year="2010">
Chalkley
<emphasis id="3080D632FFA02902FCB8FC72FCFFFC12" box="[813,863,917,943]" italics="true" pageId="29" pageNumber="48">et al.</emphasis>
2010
</bibRefCitation>
; Abdel-Wahab
<emphasis id="3080D632FFA02902FBD7FC72FBD4FC12" box="[1090,1140,917,943]" italics="true" pageId="29" pageNumber="48">et al.</emphasis>
2014). However, the original authors did not fully characterize the morphology of the fungus on natural substrates, apparently because of a lack of material (Abdel-Wahab
<emphasis id="3080D632FFA02902FBC5FC11FB26FBB3" box="[1104,1158,1012,1038]" italics="true" pageId="29" pageNumber="48">et al.</emphasis>
2014). Abdel-Wahab
<emphasis id="3080D632FFA02902FAEFFC11FA10FBB3" box="[1402,1456,1012,1038]" italics="true" pageId="29" pageNumber="48">et al.</emphasis>
(2014) re-described this fungus based on a culture isolated from unidentified driftwood at Yanbu beach,
<collectingCountry id="7AE34AB0FFA02902FA8AFBD0FA0DFBF3" box="[1311,1453,1076,1102]" name="Saudi Arabia" pageId="29" pageNumber="48">Saudi Arabia</collectingCountry>
. This isolate of
<taxonomicName id="C5F471A3FFA02902FC51FBB0FB46FBD3" ID-CoL="6CQVV" authority="J.J.Zhou &amp; Kohlm." box="[964,1254,1108,1134]" class="Sordariomycetes" family="Diatrypaceae" genus="Diatrypasimilis" kingdom="Fungi" order="Xylariales" pageId="29" pageNumber="48" phylum="Ascomycota" rank="species" species="australiensis">
<emphasis id="3080D632FFA02902FC51FBB0FB46FBD3" box="[964,1254,1108,1134]" italics="true" pageId="29" pageNumber="48">Diatrypasimilis australiensis</emphasis>
</taxonomicName>
was different from the
<typeStatus id="DD4FB482FFA02902FCC1FB91FC22FB32" box="[852,898,1141,1167]" pageId="29" pageNumber="48">type</typeStatus>
species in having larger, deeply immersed ascomata (Abdel-Wahab
<emphasis id="3080D632FFA02902FC58FB71FBA0FB13" box="[973,1024,1172,1198]" italics="true" pageId="29" pageNumber="48">et al.</emphasis>
2014). However, the difference between the two collections did not warrant separation at the species level. The strain from
<collectingCountry id="7AE34AB0FFA02902FBDDFB30FB73FB53" box="[1096,1235,1236,1262]" name="Saudi Arabia" pageId="29" pageNumber="48">Saudi Arabia</collectingCountry>
(Abdel-Wahab
<emphasis id="3080D632FFA02902FAE9FB30FA10FB53" box="[1404,1456,1236,1262]" italics="true" pageId="29" pageNumber="48">et al.</emphasis>
2014) produced holoblastic conidia singly, while in the
<typeStatus id="DD4FB482FFA02902FA14FB10FA0FFAB3" box="[1409,1455,1268,1294]" pageId="29" pageNumber="48">type</typeStatus>
strain, the conidiophores proliferated either sympodially or annellidically, or possibly by a combination of both, producing conidia on minute denticles (
<bibRefCitation id="666577D1FFA02902FB57FAB7FA3FFAD0" author="Chalkley" box="[1218,1439,1363,1389]" etAl="et al." firstAuthor="Chalkley" pageId="29" pageNumber="48" pagination="430 - 437" refId="ref23951" refString="CHALKLEY D. B., SU S. O., KOHLMEYE B. V., KOHLMEYER J. &amp; ZHOU J. J. 2010. - Diatrypasimilis australiensis, a novel xylarialean fungus from mangrove. Mycologia 102: 430 - 437. https: // doi. org / 10.3852 / 09 - 142" type="journal article" year="2010">
Chalkley
<emphasis id="3080D632FFA02902FABFFAB0FAFFFAD0" box="[1322,1375,1363,1389]" italics="true" pageId="29" pageNumber="48">et al.</emphasis>
2010
</bibRefCitation>
). Abdel-Wahab
<emphasis id="3080D632FFA02902FC50FA90FC59FA30" box="[965,1017,1395,1421]" italics="true" pageId="29" pageNumber="48">et al.</emphasis>
(2014) noted that LSU sequences of the two strains were 99% similar. According to our phylogenetic analysis with combined ITS+Btub
<taxonomicName id="C5F471A3FFA02902FB01FA57FA0EFA70" ID-CoL="6CQVV" authority="J.J.Zhou &amp; Kohlm." box="[1172,1454,1459,1485]" class="Sordariomycetes" family="Diatrypaceae" genus="Diatrypasimilis" kingdom="Fungi" order="Xylariales" pageId="29" pageNumber="48" phylum="Ascomycota" rank="species" species="australiensis">
<emphasis id="3080D632FFA02902FB01FA57FA0EFA70" box="[1172,1454,1459,1485]" italics="true" pageId="29" pageNumber="48">Diatrypasimilis australiensis</emphasis>
</taxonomicName>
groups in a clade (clade K) comprising
<taxonomicName id="C5F471A3FFA02902FB76FA30FC31F9B0" ID-CoL="449CJ" authority="Pollack &amp; Uecker" class="Sordariomycetes" family="Diatrypaceae" genus="Monosporascus" kingdom="Fungi" order="Xylariales" pageId="29" pageNumber="48" phylum="Ascomycota" rank="species" species="cannonballus">
<emphasis id="3080D632FFA02902FB76FA30FC31F9B0" italics="true" pageId="29" pageNumber="48">Monosporascus cannonballus</emphasis>
</taxonomicName>
(ATCC 26931 and CMM3646) as a basal lineage (
<figureCitation id="9ACF16A5FFA02902FCA3F9F6FCD4F990" box="[822,884,1554,1581]" captionStart="FIG" captionStartId="10.[132,143,1917,1935]" captionTargetBox="[221,1353,215,1869]" captionTargetId="graphics-154@10.[221,1324,215,1869]" captionTargetPageId="10" captionText="FIG. 1. — Phylogram generated from the best scoring RAxML tree based on combined ITS and Btub sequence data. Bootstrap support values for maximum likelihood (ML,black) and maximum parsimony (MP, blue) equal or greater than 60 % are given above the nodes. Bayesian posterior probabilities (PP,green) equal or greater than 0.90 are shown above the branch. The tree is rooted to Xylaria hypoxylon (CBS 122620) and Kretzschmaria deusta (CBS 826.72). All sequences from ex-type strains are in bold. Symbols:, polysporous species;, octosporous species;, species with less than eight spores. Scale bar: 0.2 (expected number of nucleotide substitutions per site per branch)." figureDoi="http://doi.org/10.5281/zenodo.7815044" httpUri="https://zenodo.org/record/7815044/files/figure.png" pageId="29" pageNumber="48">Fig. 1</figureCitation>
). ITS analysis yielded a single clade (clade M) comprising
<taxonomicName id="C5F471A3FFA02902FCE9F9D6FA09F9F1" ID-CoL="B332X" authority="Dayarathne &amp; K.D.Hyde" authorityName="Dayarathne &amp; K. D. Hyde" authorityYear="2020" box="[892,1449,1586,1613]" class="Sordariomycetes" family="Diatrypaceae" genus="Halocryptovalsa" higherTaxonomySource="CoL" kingdom="Fungi" order="Xylariales" pageId="29" pageNumber="48" phylum="Ascomycota" rank="species" species="salicorniae" status="sp. nov.">
<emphasis id="3080D632FFA02902FCE9F9D6FB32F9F1" box="[892,1170,1586,1612]" italics="true" pageId="29" pageNumber="48">Halocryptovalsa salicorniae</emphasis>
Dayarathne &amp; K.D.Hyde
</taxonomicName>
,
<taxonomicNameLabel id="2BB36B49FFA02902FCBEF9B7FCDAF9D0" box="[811,890,1619,1645]" pageId="29" pageNumber="48" rank="species">sp. nov.</taxonomicNameLabel>
(MFLUCC 15-0185) and
<taxonomicName id="C5F471A3FFA02902FB06F9B6FA0DF9D1" ID-CoL="6CQVV" authority="J.J.Zhou &amp; Kohlm." box="[1171,1453,1618,1644]" class="Sordariomycetes" family="Diatrypaceae" genus="Diatrypasimilis" kingdom="Fungi" order="Xylariales" pageId="29" pageNumber="48" phylum="Ascomycota" rank="species" species="australiensis">
<emphasis id="3080D632FFA02902FB06F9B6FA0DF9D1" box="[1171,1453,1618,1644]" italics="true" pageId="29" pageNumber="48">Diatrypasimilis australiensis</emphasis>
</taxonomicName>
but with no statistical support (
<figureCitation id="9ACF16A5FFA02902FBE9F996FB19F931" box="[1148,1209,1650,1676]" captionStart="FIG" captionStartId="12.[132,143,1940,1958]" captionTargetBox="[334,1258,217,1823]" captionTargetId="graphics-121@12.[334,1229,217,1824]" captionTargetPageId="12" captionText="FIG. 2. — Phylogram generated from the best scoring RAxML tree based on ITS sequence data. Bootstrap support values for maximum likelihood (ML, black) and maximum parsimony (MP, blue) equal or greater than 60% are given above the nodes. Bayesian posterior probabilities (PP,green) equal or greater than 0.90 are shown above the branch. The tree is rooted to Xylaria hypoxylon (CBS 122620) and Kretzschmaria deusta (CBS 826.72). Scale bar: 0.09 (expected number of nucleotide substitutions per site per branch)." figureDoi="http://doi.org/10.5281/zenodo.7815048" httpUri="https://zenodo.org/record/7815048/files/figure.png" pageId="29" pageNumber="48">Fig. 2</figureCitation>
). These two species are morphologically different from each other.
</paragraph>
</subSubSection>
</treatment>
</document>