treatments-xml/data/95/BF/68/95BF68FE5E535D45AFF57158EF477E07.xml

442 lines
37 KiB
XML
Raw Blame History

This file contains ambiguous Unicode characters

This file contains Unicode characters that might be confused with other characters. If you think that this is intentional, you can safely ignore this warning. Use the Escape button to reveal them.

<document ID-CLB-Dataset="288272" ID-DOI="http://dx.doi.org/10.3897/mycokeys.102.112565" ID-GBIF-Dataset="6c26b09a-68a9-40fe-a70d-096d14594da9" ID-PMC="PMC10882549" ID-Pensoft-Pub="1314-4049-102-127" ID-Pensoft-UUID="E3547F30F7FB5B3AA050B3CC2737F8BF" ID-PubMed="38390559" ModsDocID="1314-4049-102-127" checkinTime="1708002395988" checkinUser="pensoft" docAuthor="Li, Cui-Jin-Yi, Thilini Chethana, Kandawatte Wedaralalage, Eungwanichayapant, Prapassorn Damrongkool, Zhou, De-Qun &amp; Zhao, Qi" docDate="2024" docId="95BF68FE5E535D45AFF57158EF477E07" docLanguage="en" docName="MycoKeys 102: 127-154" docOrigin="MycoKeys 102" docPubDate="2024-02-14" docSource="http://dx.doi.org/10.3897/mycokeys.102.112565" docTitle="Tatraea griseoturcoisina C. J. Y. Li &amp; Q. Zhao 2024, sp. nov." docType="treatment" docVersion="4" id="E3547F30F7FB5B3AA050B3CC2737F8BF" lastPageNumber="127" masterDocId="E3547F30F7FB5B3AA050B3CC2737F8BF" masterDocTitle="Additional four species of Tatraea (Leotiomycetes, Helotiales) in Yunnan Province, China" masterLastPageNumber="154" masterPageNumber="127" pageNumber="127" updateTime="1732566562766" updateUser="ExternalLinkService">
<mods:mods id="BE73225A35E106042CCBA13D0F89CB21" xmlns:mods="http://www.loc.gov/mods/v3">
<mods:titleInfo id="9CE0B3E4C1677F4AE17D5DAD8062729A">
<mods:title id="8B2FEDE0365FCDDB491E10D63247EE3A">Additional four species of Tatraea (Leotiomycetes, Helotiales) in Yunnan Province, China</mods:title>
</mods:titleInfo>
<mods:name id="D83CF9E5568710228310821ED1A2599F" type="personal">
<mods:role id="E70EECF06F9B098A7DA1069CFA5F40CF">
<mods:roleTerm id="AAE5B10988DD67E93B4194AC4AF15108">Author</mods:roleTerm>
</mods:role>
<mods:namePart id="EF04645B7964B1232924FF4FDFB27BF9">Li, Cui-Jin-Yi</mods:namePart>
<mods:nameIdentifier id="FFAC3B4CA6EBCA9FC1DD758BF088BE89" type="ORCID">https://orcid.org/0000-0002-2805-7071</mods:nameIdentifier>
<mods:affiliation id="C5F85A59A32CE560B6D2FD27E4E1E9B2">Key Laboratory for Plant Diversity and Biogeography of East Asia, Yunnan Key Laboratory of Fungal Diversity and Green Development, Kunming Institute of Botany, Chinese Academy of Sciences, Kunming, Yunnan 650201, China &amp; School of Science, Mae Fah Luang University, Chiang Rai, 57100, Thailand &amp; Institute of Applied Fungi, Southwest Forestry University, Kunming, Yunnan 650224, China</mods:affiliation>
</mods:name>
<mods:name id="2C842BC4DBFE5AEEA38D637AD47A6124" type="personal">
<mods:role id="AF226C5B18C1B058DE480A33157EC0B0">
<mods:roleTerm id="4BFA89E88DD785F05139093D2AF4BEAC">Author</mods:roleTerm>
</mods:role>
<mods:namePart id="A8DFF50AE528B39A687D5A3520926ED6">Thilini Chethana, Kandawatte Wedaralalage</mods:namePart>
<mods:nameIdentifier id="23B0B78EB8FC32CD08AB251123563E61" type="ORCID">https://orcid.org/0000-0002-5816-9269</mods:nameIdentifier>
<mods:affiliation id="B111F782A49FC0923264D0EAF0929F39">School of Science, Mae Fah Luang University, Chiang Rai, 57100, Thailand</mods:affiliation>
</mods:name>
<mods:name id="E0DC0E9C3CA5532D6F772F0F873C5D9F" type="personal">
<mods:role id="1C0184B6F6BD983F665CF1CA61B508B5">
<mods:roleTerm id="33CD8B69475AB17AF92DA3866060AB9A">Author</mods:roleTerm>
</mods:role>
<mods:namePart id="A6C1901501BF4F49255A7E3B77AA521B">Eungwanichayapant, Prapassorn Damrongkool</mods:namePart>
<mods:nameIdentifier id="937018DA552419FC71C0D64A2669793A" type="ORCID">https://orcid.org/0000-0001-8005-4137</mods:nameIdentifier>
<mods:affiliation id="2E19685797F2135E18DC4739B3B598F2">School of Science, Mae Fah Luang University, Chiang Rai, 57100, Thailand</mods:affiliation>
</mods:name>
<mods:name id="B1E1532A70703BC3454373F335986A04" type="personal">
<mods:role id="32F64987D0424EEDA6A2F7736C3667C5">
<mods:roleTerm id="6AF4D66CA693DE695DDE16148F5B5314">Author</mods:roleTerm>
</mods:role>
<mods:namePart id="9556BD3A22ED682DBF27DAD746842911">Zhou, De-Qun</mods:namePart>
<mods:nameIdentifier id="B5CC6DC0E0EB49A7B10B8F6325C61532" type="ORCID">https://orcid.org/0009-0009-3459-3186</mods:nameIdentifier>
<mods:affiliation id="2EC2BE015B6198807FE0E895343F63C0">Key Laboratory for Plant Diversity and Biogeography of East Asia, Yunnan Key Laboratory of Fungal Diversity and Green Development, Kunming Institute of Botany, Chinese Academy of Sciences, Kunming, Yunnan 650201, China &amp; Center of Excellence in Fungal Research, Mae Fah Luang University, Chiang Rai, 57100, Thailand</mods:affiliation>
</mods:name>
<mods:name id="6273B83C93ADFBC0D516D4D732EB5EF6" type="personal">
<mods:role id="3548D308F0329922223E949B94FA4E34">
<mods:roleTerm id="AC731885F34F0BB737E2A8B95D1C8405">Author</mods:roleTerm>
</mods:role>
<mods:namePart id="8FF398EF923B2230F0752D7D5D4A84F2">Zhao, Qi</mods:namePart>
<mods:nameIdentifier id="EB780421A1A0D468CFF36CABA90CD65B" type="ORCID">https://orcid.org/0000-0001-8169-0573</mods:nameIdentifier>
<mods:affiliation id="85D46CD003E679093906CBD2643EF1D3">Key Laboratory for Plant Diversity and Biogeography of East Asia, Yunnan Key Laboratory of Fungal Diversity and Green Development, Kunming Institute of Botany, Chinese Academy of Sciences, Kunming, Yunnan 650201, China &amp; Institute of Applied Fungi, Southwest Forestry University, Kunming, Yunnan 650224, China</mods:affiliation>
<mods:nameIdentifier id="EAF3077E0379C56860B9BF9E7AD72EAF" type="email">52253337@qq.com</mods:nameIdentifier>
</mods:name>
<mods:typeOfResource id="70832E84898D8AF27A10180E383630D4">text</mods:typeOfResource>
<mods:relatedItem id="B1C213A7B01876BEAB1ECCC226EE90E8" type="host">
<mods:titleInfo id="5B294F10840F51233D5D6BC21C22FF75">
<mods:title id="C2D9EAAFAB225C7123627067D3E319A7">MycoKeys</mods:title>
</mods:titleInfo>
<mods:part id="B70EA04D06797B185E40135C0E2183AB">
<mods:date id="1FF5BFD85A3DB6EA052A97D0AE20A1E4">2024</mods:date>
<mods:detail id="8EAC9AC177DC9C3FB228B555F888776C" type="pubDate">
<mods:number id="974D605F675F9D26DEE78101AE7BC5A3">2024-02-14</mods:number>
</mods:detail>
<mods:detail id="E0420EB1924759F34D0623D46E4985C5" type="volume">
<mods:number id="254B7A0900B33DC1ED6CBF7674B23AB5">102</mods:number>
</mods:detail>
<mods:extent id="08F0755F4FE056D2DA6A1DC693C3668E" unit="page">
<mods:start id="7348D4612728B3D0E0DA2ADAF6CAA497">127</mods:start>
<mods:end id="695257849726D863C46BC46814EE85AF">154</mods:end>
</mods:extent>
</mods:part>
</mods:relatedItem>
<mods:location id="BC4891A3FCA20C97E3C61CAB0654525A">
<mods:url id="ACA37DF5B75664112152CA4849F842F1">http://dx.doi.org/10.3897/mycokeys.102.112565</mods:url>
</mods:location>
<mods:classification id="A0C3CC6442D25B08FDA7A1CFEC9193AA">journal article</mods:classification>
<mods:identifier id="5B65E18A05F0D079A10AA0B8EB351773" type="DOI">http://dx.doi.org/10.3897/mycokeys.102.112565</mods:identifier>
<mods:identifier id="B26826EA7BB0F61F298285279E7F91E2" type="Pensoft-Pub">1314-4049-102-127</mods:identifier>
<mods:identifier id="A2848F262E67880EF34F28B4F5822DA2" type="Pensoft-UUID">E3547F30F7FB5B3AA050B3CC2737F8BF</mods:identifier>
</mods:mods>
<treatment id="95BF68FE5E535D45AFF57158EF477E07" ID-GBIF-Taxon="221259556" LSID="urn:lsid:plazi:treatment:95BF68FE5E535D45AFF57158EF477E07" httpUri="http://treatment.plazi.org/id/95BF68FE5E535D45AFF57158EF477E07" lastPageNumber="127" pageId="0" pageNumber="127" scope_class="Leotiomycetes" scope_order="Helotiales">
<subSubSection id="D664C832AC9EA9914D00DEFC88FF9BF1" pageId="0" pageNumber="127" type="nomenclature">
<paragraph id="DBF53182C6A9A5D73CA4F01247A47B82" pageId="0" pageNumber="127">
<taxonomicName id="59502D10CA18CF16B24A7E2AB01E05AB" ID-CoL="CC6RW" LSID="95BF68FE-5E53-5D45-AFF5-7158EF477E07" authority="C. J. Y. Li &amp; Q. Zhao" authorityName="C. J. Y. Li &amp; Q. Zhao" authorityYear="2024" class="Leotiomycetes" family="Helotiaceae" genus="Tatraea" higherTaxonomySource="CoL" kingdom="Fungi" lsidName="Tatraea griseoturcoisina" order="Helotiales" pageId="0" pageNumber="127" phylum="Ascomycota" rank="species" species="griseoturcoisina" status="sp. nov.">Tatraea griseoturcoisina C.J.Y. Li &amp; Q. Zhao</taxonomicName>
<taxonomicNameLabel id="47D39428E4D55CA872A796C73B329B6F" pageId="0" pageNumber="127">sp. nov.</taxonomicNameLabel>
</paragraph>
</subSubSection>
<subSubSection id="7A5DD6C8D55EB57AF426171969A8A2FB" pageId="0" pageNumber="127" type="description">
<paragraph id="755794F0543EC2D5ACFD7E017B35FF53" pageId="0" pageNumber="127">
<figureCitation id="5D00654B118A4E72DBE160282B5E7D04" captionStart="Figure 6" captionStartId="F6" captionText="Figure 6. Tatraea griseoturcoisina (HKAS 128276, holotype) a fresh ascomata on the wood d-g dried ascomata on the wood d vertical section of an ascoma e-h excipulum i paraphyses j-n asci (o-n asci in Meltzer's reagent) o-t ascospores. Scale bars: 900 μm (b); 600 μm (c); 1000 μm (d); 80 μm (e, g); 40 μm (f); 60 μm (h-n); 10 μm (o-t)." figureDoi="10.3897/mycokeys.102.112565.figure6" httpUri="https://binary.pensoft.net/fig/983952" pageId="0" pageNumber="127">Fig. 6</figureCitation>
</paragraph>
</subSubSection>
<subSubSection id="AB475D3E170657D0B7E68BEF2BFF8C89" pageId="0" pageNumber="127" type="etymology">
<paragraph id="66869CFC8007DEFC3C5346B9322EFAFF" pageId="0" pageNumber="127">Etymology.</paragraph>
<paragraph id="01C6E84FE67D91C03A8317F82F5575E7" pageId="0" pageNumber="127">The specific epithet refers to the greyish turquoise color of the disc.</paragraph>
</subSubSection>
<subSubSection id="AB0BA97D8ADFDAA7794DA0EBE107E1FE" pageId="0" pageNumber="127" type="holotype">
<paragraph id="FE1812DE998FC92CFCD37CD43E25B741" pageId="0" pageNumber="127">Holotype.</paragraph>
<paragraph id="F33D0E457A3E2395F6676BAA3E3B185A" pageId="0" pageNumber="127">HKAS 128276.</paragraph>
</subSubSection>
<subSubSection id="EAFCF8F1ECCD13C4477FD59325C3BF37" pageId="0" pageNumber="127" type="description">
<paragraph id="4D6CA3CAD78D1B3F3CCD828E664387E1" pageId="0" pageNumber="127">Description.</paragraph>
<paragraph id="52BF710B92EB5E3AE8E197114D79B9CD" pageId="0" pageNumber="127">
Saprobic on decayed branches.
<emphasis id="3049B1B32ED4E07F4FF5839C33012F45" bold="true" italics="true" pageId="0" pageNumber="127">Sexual morph</emphasis>
: Apothecia 2.5-4.0 mm wide (x̄ = 3.1
<normalizedToken id="70240E079DF3690A476B374B6BBD7C35" originalValue="±">+/-</normalizedToken>
0.4 mm, n = 27) when fresh, 1.0-2.1 mm wide
<normalizedToken id="75819352B5B1ABB72C5C314CC48E7C6A" originalValue="×">x</normalizedToken>
0.6-0.8 mm high (x̄ = 1.6
<normalizedToken id="EB9B8991302A20E6BE47B22F0981386C" originalValue="±">+/-</normalizedToken>
0.3
<normalizedToken id="F4F015DE4BF898AB659FBBC8E3C59E81" originalValue="×">x</normalizedToken>
0.7
<normalizedToken id="89993C40AB4B0BF9B46B2DF93482ABE8" originalValue="±">+/-</normalizedToken>
0.1 mm, n = 20) when dry, scattered or gregarious, superficial, discoid with thin and short stipitate, glabrous. Disc flat and circular, greyish turquoise (24E5) when fresh in wet habitat, slightly concave in the center, edge slightly curved upwards, deep green (28E8) with greyish green (28D5) to dark greyish green (28F7) when fresh in slightly dried habitat, edge slightly fold inward towards the discs, yellowish white (1A2) to snow white (1A1) when dry. Margins concolorous to the discs when fresh in wet habitat, white when dry or living in the dried habitat. Receptacle not observed when fresh, rough and finely pustules, dark brown to nearly black when dry, with some slightly dark and irregular veins on the surface. Stipe 330-360
<normalizedToken id="3DD3F2063653D9091B7C67BEFC351E12" originalValue="μm">μm</normalizedToken>
wide
<normalizedToken id="BE46EE2B38EEA1F7632BB406583C1DDF" originalValue="×">x</normalizedToken>
220-440
<normalizedToken id="A01D4AA29E590D0523B1A8E1946970F1" originalValue="μm">μm</normalizedToken>
long (x̄ = 350
<normalizedToken id="211BCAB3F61769281B8834B35AD87454" originalValue="±">+/-</normalizedToken>
89
<normalizedToken id="FA4243AC7D4024D4EC61127360848310" originalValue="×">x</normalizedToken>
330
<normalizedToken id="75C8368EBFD7182279B1C320893E7262" originalValue="±">+/-</normalizedToken>
8
<normalizedToken id="8F5222948604DEC6DDDAF7F461FC7CB8" originalValue="μm">μm</normalizedToken>
, n = 5), short and thin, rough and finely pustules, concolorous to the receptacle. Hymenium 103-138
<normalizedToken id="03C9799EA92BE17CAD618E08FCBB4BAA" originalValue="μm">μm</normalizedToken>
(x̄ = 117
<normalizedToken id="DC3B68E81D4D39D009CFD965AD58D07B" originalValue="±">+/-</normalizedToken>
8
<normalizedToken id="2D93D9A5F32B4E75D82002B5E31D4200" originalValue="μm">μm</normalizedToken>
, n = 25), hyaline. Subhymenium 43-66
<normalizedToken id="7D2A264D5818E18B48E4A8205EF2E5D5" originalValue="μm">μm</normalizedToken>
(x̄ = 53
<normalizedToken id="786A02CAA0724D88C26CC6FA525C424C" originalValue="±">+/-</normalizedToken>
6
<normalizedToken id="7414FECE3A28D8A527AF314687C5F587" originalValue="μm">μm</normalizedToken>
, n = 15), dense brownish-orange (6C8) hyphae of
<emphasis id="0DCE204736E76714D0AB6BA57202B045" italics="true" pageId="0" pageNumber="127">textura intricata</emphasis>
, hyphae 1.3-2.9(-3.9)
<normalizedToken id="75DCDAF2FCD159FE68C3774F90C0B598" originalValue="μm">μm</normalizedToken>
(x̄ = 2.2
<normalizedToken id="6166A280AD35E6CE440F3ABD1B31ECA4" originalValue="±">+/-</normalizedToken>
0.5
<normalizedToken id="3FE21CECB244E170219355F8FA94FB5B" originalValue="μm">μm</normalizedToken>
, n = 50) diam., appear with excipulum at the margin, non-gelatinous. Medullary excipulum 164-308
<normalizedToken id="7FCFB377E9E78F10FBF01FC226D06B4F" originalValue="μm">μm</normalizedToken>
(x̄ = 238
<normalizedToken id="789D587244284C385D0C5844EE5041EF" originalValue="±">+/-</normalizedToken>
33
<normalizedToken id="743957154B8C939C8E71FA14DD463432" originalValue="μm">μm</normalizedToken>
, n = 15) thick, well-developed, comprised of thin-walled, septate, pale brown to pale yellow cells of
<emphasis id="46AA80C5168E7145F31CDE5801823026" italics="true" pageId="0" pageNumber="127">textura intricata</emphasis>
, hyphae 2.6-5.2
<normalizedToken id="FEBF33FD09B84DDC3FD73EDD6856B240" originalValue="μm">μm</normalizedToken>
(x̄ = 3.9
<normalizedToken id="42DCEFA2C79B4C13106AA4B03D1AA1A1" originalValue="±">+/-</normalizedToken>
0.5
<normalizedToken id="C7950D6F00D1626F99B4A630372723B2" originalValue="μm">μm</normalizedToken>
, n = 30) diam., hyaline, slightly loose in the center, becoming well-organized, parallel and strongly dense near the ectal excipulum, narrow hyphae 1.3-3.2
<normalizedToken id="FA81BB4581F25337D55A251D5C93F57E" originalValue="μm">μm</normalizedToken>
(x̄ = 2.3
<normalizedToken id="8FB4569111F39DDCF8F53BE6F123CD33" originalValue="±">+/-</normalizedToken>
0.4
<normalizedToken id="E6DB554736E1511A2DBC4853A39698C4" originalValue="μm">μm</normalizedToken>
, n = 30) diam., non-gelatinous. Ectal excipulum well-differentiated from the medullary part, the inner layers generally consists of 5-6 layers
<emphasis id="A7423E459955AD914F95382A72C5EF81" italics="true" pageId="0" pageNumber="127">textura angularis</emphasis>
cells, 27-68
<normalizedToken id="534D4A619E8B3231DBE2866F14C7A887" originalValue="μm">μm</normalizedToken>
(x̄ = 42
<normalizedToken id="5B1056B173F1E6C09BB680337C889FCC" originalValue="±">+/-</normalizedToken>
9
<normalizedToken id="BF1FD837727F51D44102EBABFC777CC7" originalValue="μm">μm</normalizedToken>
, n = 37) thick, cells 6.6-14.4
<normalizedToken id="655E9336D874002ADF364E9145392847" originalValue="μm">μm</normalizedToken>
(x̄ = 10.2
<normalizedToken id="0B16E1C071FD52B41746E3968EC6C512" originalValue="±">+/-</normalizedToken>
2.4
<normalizedToken id="FCE8AF7CD6D911E67A6CCAD488CD65E8" originalValue="μm">μm</normalizedToken>
, n = 100) diam., wall moderately thick 0.41-0.84
<normalizedToken id="EF8628CC9C9637664F15841CD442E875" originalValue="μm">μm</normalizedToken>
(x̄ = 0.6
<normalizedToken id="7AA90DAEAFC007068FB10F2CCBAD72C6" originalValue="±">+/-</normalizedToken>
0.1
<normalizedToken id="A60F89E83E8D033F8D42D2EEDBC77803" originalValue="μm">μm</normalizedToken>
, n = 50); the outer layers partially uneven proliferous to some gradually smaller brown cells, stack into short and broad triangles to trapezoids, 20-46(-63)
<normalizedToken id="6E834D689FD7E48D39C49A5672793872" originalValue="μm">μm</normalizedToken>
(x̄ = 31
<normalizedToken id="272160DC697C7E5AC0E18A7B96546824" originalValue="±">+/-</normalizedToken>
12
<normalizedToken id="2179DBF77975675BBF7AF2FE8D0306B9" originalValue="μm">μm</normalizedToken>
, n = 20) thick (excluding the inner layers), cells 4.5-10.2
<normalizedToken id="152733EB0D2F4E971D053EEF93657A1A" originalValue="μm">μm</normalizedToken>
(x̄ = 7.8
<normalizedToken id="560E51EC2300217843C619A78E45AD29" originalValue="±">+/-</normalizedToken>
1.6
<normalizedToken id="065502F649CB8A8C375C1053C6D24AB5" originalValue="μm">μm</normalizedToken>
, n = 80) diam., wall moderate; cells from the outer inward the inner layers gradually increase in diameter, brown to pale yellow; terminal cells at the margin stretch to elongated
<emphasis id="63A847B5687BD6487A6FED1187826278" italics="true" pageId="0" pageNumber="127">textura prismatica</emphasis>
cells 10-13
<normalizedToken id="17C19B01B314DBEBD32F96343A652C3A" originalValue="μm">μm</normalizedToken>
<normalizedToken id="1E1AD76BD4362B684CB456B7C12BBB3B" originalValue="×">x</normalizedToken>
3.3-4.1
<normalizedToken id="AAB22553236A41F2EF9E2DFE53B85336" originalValue="μm">μm</normalizedToken>
with rounded ends, wall moderately thick, brown, non-gelatinous. Paraphyses 1.7-2.7
<normalizedToken id="2738720A85C602D2EC60F57503A6A98B" originalValue="μm">μm</normalizedToken>
(x̄ = 2.3
<normalizedToken id="EC6E94F5D3881AB7FBA08F83CFC7DFD0" originalValue="±">+/-</normalizedToken>
0.2
<normalizedToken id="9F79337B702C19AE8B86428758812C6C" originalValue="μm">μm</normalizedToken>
, n = 35), hyaline, filiform, rounded apex, 2-septate at the middle, unbranched, conspicuous contents not observed, scarcely extending beyond the asci. Asci (91-)109-122
<normalizedToken id="B6D3B8D05436967925FD80A09D5FF472" originalValue="×">x</normalizedToken>
8.2-11.5
<normalizedToken id="66149CC10EAF9CE8C14DAEF058F5C916" originalValue="μm">μm</normalizedToken>
(x̄ = 113
<normalizedToken id="1629BDD834B37427B6B85C68449BFA3A" originalValue="±">+/-</normalizedToken>
5
<normalizedToken id="FDA804736D9EBD212CEC9D3C89A256E8" originalValue="×">x</normalizedToken>
9.5
<normalizedToken id="6350DD9CCAAC046BDE79ED8FE9FC43B4" originalValue="±">+/-</normalizedToken>
0.7
<normalizedToken id="92E95DD76113265C46A8130DB68B865D" originalValue="μm">μm</normalizedToken>
, n = 25), unitunicate, 8-spored, almost filling the whole asci, clavate, rounded apex with an amyloid apical pore in
<normalizedToken id="931A05202E014F356954F2607D80053A" originalValue="Melzers">Melzer's</normalizedToken>
reagent, wall incrassated at the apex, 5.5-6.8
<normalizedToken id="38E22ECA23F0F49B9CAB32C8778A4027" originalValue="μm">μm</normalizedToken>
wide
<normalizedToken id="4BC73111E142E0ABF5F5D74E1EBA7818" originalValue="×">x</normalizedToken>
2.3-4.2
<normalizedToken id="0BED1178F8224A723CC4AA4706525189" originalValue="μm">μm</normalizedToken>
high (x̄ = 6.0
<normalizedToken id="91A77C4EDFFB02999231751DFEF73D5A" originalValue="±">+/-</normalizedToken>
0.5
<normalizedToken id="2C3A5EF3A12EEE884C0783ADCEED1AE4" originalValue="×">x</normalizedToken>
3.2
<normalizedToken id="1BD91DBF0BB8674EDDFCDF944A5D554E" originalValue="±">+/-</normalizedToken>
0.4
<normalizedToken id="C110DF95D1FA95140D5B054463C3356E" originalValue="μm">μm</normalizedToken>
, n = 25), slightly constricted downward when developing, tapering to a cylindric and aporhynchous subtruncate base, croziers present. Ascospore 14.6-20.4(-22.5)
<normalizedToken id="A239D28930DA8AEF15C491C9E11440BD" originalValue="×">x</normalizedToken>
4.9-6.2
<normalizedToken id="759E9E37E6E1BA49D7DE8D77BE25452B" originalValue="μm">μm</normalizedToken>
(x̄ = 17.1
<normalizedToken id="B567718C1C235042A5288507E97320DB" originalValue="±">+/-</normalizedToken>
1.7
<normalizedToken id="207F3B41850132B9BE3997D5F4576C12" originalValue="×">x</normalizedToken>
5.4
<normalizedToken id="F1FCA53B7A159DE52321FF3A842EEAE3" originalValue="±">+/-</normalizedToken>
0.4
<normalizedToken id="86D85C8AF7DDD6A6E7CE5836CE251364" originalValue="μm">μm</normalizedToken>
, n = 60), Q = 2.4-3.7(-4.2), Qm = 3.1
<normalizedToken id="9FDA08C9790200FED88125FA2B8B046D" originalValue="±">+/-</normalizedToken>
0.1, overlapping uniseriate, slightly narrow ellipsoidal with a large guttule, ends rounded at the base, slightly pointed at the apex, slightly curved on the lateral view, hyaline, thin-walled, smooth and aseptate.
<emphasis id="B368D802D31B96C670051BE1F6079B08" bold="true" italics="true" pageId="0" pageNumber="127">Asexual morph</emphasis>
: Undetermined.
</paragraph>
<caption id="9F630B7E90EEDC83CA0DD1F3774B08F8" doi="10.3897/mycokeys.102.112565.figure6" httpUri="https://binary.pensoft.net/fig/983952" pageId="0" pageNumber="127" start="Figure 6" startId="F6">
<paragraph id="A7CC9CE2E7192B9CBC4412C6C715AC98" pageId="0" pageNumber="127">
<emphasis id="B63C1020DB4D4A624C31E2C3881B3C92" bold="true" pageId="0" pageNumber="127">Figure 6.</emphasis>
<taxonomicName id="4F5B81F239D108939F49D5EF7A803AA4" authorityName="C. J. Y. Li &amp; Q. Zhao" authorityYear="2024" class="Leotiomycetes" family="Helotiaceae" genus="Tatraea" higherTaxonomySource="CoL" kingdom="Fungi" lsidName="Tatraea griseoturcoisina" order="Helotiales" pageId="0" pageNumber="127" phylum="Ascomycota" rank="species" species="griseoturcoisina">
<emphasis id="1C196A2279CD74B87215444CC36270BF" italics="true" pageId="0" pageNumber="127">Tatraea griseoturcoisina</emphasis>
</taxonomicName>
(HKAS 128276, holotype)
<emphasis id="0813151B1F9783A8509CECD06735E92B" bold="true" pageId="0" pageNumber="127">a</emphasis>
fresh ascomata on the wood
<emphasis id="99F0DBFA1B1A60B45F14FB713345F81B" bold="true" pageId="0" pageNumber="127">d-g</emphasis>
dried ascomata on the wood
<emphasis id="63663F221AF192ECF2FEC3E0A045C188" bold="true" pageId="0" pageNumber="127">d</emphasis>
vertical section of an ascoma
<emphasis id="5A31201E38508FA59EB1CCFADFDC3D19" bold="true" pageId="0" pageNumber="127">e-h</emphasis>
excipulum
<emphasis id="164083FF23A8267EEB2A0CFC799A43CF" bold="true" pageId="0" pageNumber="127">i</emphasis>
paraphyses
<emphasis id="FBE097362112FCB5F320D7990F07849A" bold="true" pageId="0" pageNumber="127">j-n</emphasis>
asci (
<emphasis id="87DFD357D2F60E4FB954613C0038780D" bold="true" pageId="0" pageNumber="127">o-n</emphasis>
asci in
<normalizedToken id="6C21170B6632ED50DCD698E9E0F7003D" originalValue="Meltzers">Meltzer's</normalizedToken>
reagent)
<emphasis id="AAAAFC9A1CC04F81B537D0F7C5F96A3F" bold="true" pageId="0" pageNumber="127">o-t</emphasis>
ascospores. Scale bars: 900
<normalizedToken id="0EA525A466F69A6131DFA32B8696DD77" originalValue="μm">μm</normalizedToken>
(
<emphasis id="FDB3CE400FA6ABF6934ACFD0C2B4C91A" bold="true" pageId="0" pageNumber="127">b</emphasis>
); 600
<normalizedToken id="5F8F6F6B37183D314654C8F91C6BE857" originalValue="μm">μm</normalizedToken>
(
<emphasis id="0495363143E4ECEBB0D8E1707F7DA4AA" bold="true" pageId="0" pageNumber="127">c</emphasis>
); 1000
<normalizedToken id="405F0E4EC451DB25BDE1E824B9615D1F" originalValue="μm">μm</normalizedToken>
(
<emphasis id="99BBF15F38F182446CEE9761C708B632" bold="true" pageId="0" pageNumber="127">d</emphasis>
); 80
<normalizedToken id="F8204E58406DE62AE2FD678AF072FBFF" originalValue="μm">μm</normalizedToken>
(
<emphasis id="1C9533E5578AC60402B4DD60D46B5213" bold="true" pageId="0" pageNumber="127">e, g</emphasis>
); 40
<normalizedToken id="B32C937C842FD5B098F3DC7B7B423616" originalValue="μm">μm</normalizedToken>
(
<emphasis id="F58DC8DDF89B14D14387327ED7E75FC8" bold="true" pageId="0" pageNumber="127">f</emphasis>
); 60
<normalizedToken id="704E85BC97766AB2B1F2394475F31A3F" originalValue="μm">μm</normalizedToken>
(
<emphasis id="8A4ABF5F6460017531769FFA6824D290" bold="true" pageId="0" pageNumber="127">h-n</emphasis>
); 10
<normalizedToken id="5B2F509673962835675405587C1577C3" originalValue="μm">μm</normalizedToken>
(
<emphasis id="CB024B31154FFC782D03A42612972481" bold="true" pageId="0" pageNumber="127">o-t</emphasis>
).
</paragraph>
</caption>
</subSubSection>
<subSubSection id="17D5F915AA960452234F14BA22060513" pageId="0" pageNumber="127" type="materials_examined">
<paragraph id="5B7FB7BADE4A55C6EC0E3160DE4EC370" pageId="0" pageNumber="127">Material examined.</paragraph>
<paragraph id="DED87FB9838A9F67D0E6BC69FCF2FC15" pageId="0" pageNumber="127">
<materialsCitation id="52CDF74E50830C82A05C9799A9E70674" collectingDate="2022-09-08" country="China" county="Menghai County" elevation="1660" location="Cuijinyi Li" municipality="Xishuangbanna City" specimenCount="1" stateProvince="Yunnan Province" typeStatus="holotype">
<collectingCountry id="94F162BBE1AE7D7FC0B2373A8609A35C" name="China">China</collectingCountry>
,
<collectingRegion id="7418526646A7C1D06307C88C7EE49FE1" country="China" name="Yunnan">Yunnan Province</collectingRegion>
,
<collectingMunicipality id="757DF7247B864B5F0B5CD68B1E77B060">Xishuangbanna City</collectingMunicipality>
,
<collectingCounty id="0419F33759CB677E41430780D1BC97FA">Menghai County</collectingCounty>
, altitude
<quantity id="D145E2BDE5068C44FC0B481041DC183D" metricMagnitude="3" metricUnit="m" metricValue="1.66" unit="m" value="1660.0">
<elevation id="45EE9938C6150C11099CC0323B0A552B" metricMagnitude="3" metricUnit="m" metricValue="1.66" unit="m" value="1660.0">1660 m</elevation>
</quantity>
, on decayed oak tree branches in a managed plantation,
<collectingDate id="32E5ACE2EE7A2C4FD97377AC48C13E77" value="2022-09-08">8 September 2022</collectingDate>
,
<location id="04CB6263665F703F08124CF2F16522AB" LSID="urn:lsid:plazi:treatment:95BF68FE5E535D45AFF57158EF477E07:04CB6263665F703F08124CF2F16522AB" country="China" county="Menghai County" municipality="Xishuangbanna City" name="Cuijinyi Li" stateProvince="Yunnan Province">Cuijinyi Li</location>
, LCJY-1402 (HKAS 128276,
<typeStatus id="02087F9ECE2DA36A46241303C6177CFB" type="holotype">holotype</typeStatus>
);
<emphasis id="86EC9634093DEE610A1DF4E9B613B87F" italics="true" pageId="0" pageNumber="127">ibid</emphasis>
.,
<location id="2785DA5AB21CBAEE90B90BEC761BB7C9" LSID="urn:lsid:plazi:treatment:95BF68FE5E535D45AFF57158EF477E07:2785DA5AB21CBAEE90B90BEC761BB7C9" country="China" county="Menghai County" municipality="Xishuangbanna City" name="Menghai County" stateProvince="Yunnan Province">Menghai County</location>
, altitude
<quantity id="E91BA0BE67ED719A0AE57834F45C66EC" metricMagnitude="3" metricUnit="m" metricValue="1.5" unit="m" value="1500.0">
<elevation id="E69E60E62B53E5687A198A46A4B0CC8D" metricMagnitude="3" metricUnit="m" metricValue="1.5" unit="m" value="1500.0">1500 m</elevation>
</quantity>
, on decayed oak tree branches in a managed plantation,
<collectingDate id="ED656BDB99096A56815285D0D9229A1B" value="2022-09-08">8 September 2022</collectingDate>
, Cuijinyi Li, 22-9-8-5 (HKAS 128277,
<typeStatus id="46BE4D32B137DE06E2EEE208801D1777" type="paratype">paratype</typeStatus>
)
</materialsCitation>
.
</paragraph>
</subSubSection>
<subSubSection id="E5A27EEE3E2A65F8D6B1BAB5F5CD7F03" pageId="0" pageNumber="127" type="notes">
<paragraph id="C348B3F91B80D664B84FF9F76E27C80C" pageId="0" pageNumber="127">Notes.</paragraph>
<paragraph id="8D6E22572B2C72F345AAB95CE209ED4E" pageId="0" pageNumber="127">
The distinctive characteristics of
<taxonomicName id="62D429FF51F92198546C2DEB372C583C" authorityName="C. J. Y. Li &amp; Q. Zhao" authorityYear="2024" class="Leotiomycetes" family="Helotiaceae" genus="Tatraea" higherTaxonomySource="CoL" kingdom="Fungi" lsidName="Tatraea griseoturcoisina" order="Helotiales" pageId="0" pageNumber="127" phylum="Ascomycota" rank="species" species="griseoturcoisina">
<emphasis id="65E43C1DB77D3AA6F83BCB0CDDEAEEBB" italics="true" pageId="0" pageNumber="127">Tatraea griseoturcoisina</emphasis>
</taxonomicName>
are greyish-green apothecia, with yellowish-white to snow white discs when dry, narrow hyphae of medullary excipulum, short aporhynchous asci and slightly narrow ellipsoidal ascospores without septa.
</paragraph>
<paragraph id="4A8A80C9BE343F8679F4A56994BBD1D5" pageId="0" pageNumber="127">
Phylogenetically,
<taxonomicName id="31CDBC87E7D617A402DFE2D9069E6E2B" class="Leotiomycetes" family="Helotiaceae" kingdom="Fungi" lsidName="T. griseoturcoisina" order="Helotiales" pageId="0" pageNumber="127" phylum="Ascomycota" rank="species" species="griseoturcoisina">
<emphasis id="FB1DD7BFDF3A76907955469ADF21E3F2" italics="true" pageId="0" pageNumber="127">T. griseoturcoisina</emphasis>
</taxonomicName>
grouped with
<taxonomicName id="B7F3A485D4A3B1EB11135BA74C7C4769" class="Leotiomycetes" family="Helotiaceae" kingdom="Fungi" lsidName="T. clepsydriformis" order="Helotiales" pageId="0" pageNumber="127" phylum="Ascomycota" rank="species" species="clepsydriformis">
<emphasis id="6D4EBAA1ABB5F7A44DEC9A59EA733B80" italics="true" pageId="0" pageNumber="127">T. clepsydriformis</emphasis>
</taxonomicName>
with 85% ML bootstrap support and 0.96 Bayesian probability in the combined LSU and ITS phylogeny (Fig.
<figureCitation id="D89A4B334DDA72AB65BC24D84CE2B6B1" captionStart="Figure 2" captionStartId="F2" captionText="Figure 2. Maximum likelihood tree based on a combined dataset of LSU and ITS sequences for the genus Tatraea. The ML bootstrap proportions (ML-BP) equal to or higher than 70 % and Bayesian posterior proportions (BI-PP) equal to or higher than 0.90 are shown near the branches on the phylogenetic tree. Newly generated isolates of the current study are shown in blue and ex-types are shown in bold." figureDoi="10.3897/mycokeys.102.112565.figure2" httpUri="https://binary.pensoft.net/fig/983948" pageId="0" pageNumber="127">2</figureCitation>
). A pairwise homoplasy index (PHI) test was conducted using a five-gene dataset (ITS, LSU, mtSSU, RPB1 and RPB2) to assess the recombination level between clades of
<taxonomicName id="F98FCD16894A83617FB6990F049CF5A9" class="Leotiomycetes" family="Helotiaceae" kingdom="Fungi" lsidName="T. griseoturcoisina" order="Helotiales" pageId="0" pageNumber="127" phylum="Ascomycota" rank="species" species="griseoturcoisina">
<emphasis id="3CCD10F62BF8E7FBBD10D62344331324" italics="true" pageId="0" pageNumber="127">T. griseoturcoisina</emphasis>
</taxonomicName>
and
<taxonomicName id="BA73099E5731B07A08B0A96917958079" class="Leotiomycetes" family="Helotiaceae" kingdom="Fungi" lsidName="T. clepsydriformis" order="Helotiales" pageId="0" pageNumber="127" phylum="Ascomycota" rank="species" species="clepsydriformis">
<emphasis id="A6110381F7A226637A15122D9C70DB5A" italics="true" pageId="0" pageNumber="127">T. clepsydriformis</emphasis>
</taxonomicName>
. The results revealed that there were no significant recombination events observed between these two groups (
<normalizedToken id="D265C3BD1CD18CE4946EF4D742EEA43C" originalValue="Фw">Fw</normalizedToken>
&gt; 0.05), indicating that they are genetically isolated and thus supporting them as distinct species (Fig.
<figureCitation id="0992922BA364470D057395A380B368A8" captionStart="Figure 3" captionStartId="F3" captionText="Figure 3. The results of the pairwise homoplasy index (PHI) test for the closely related species in Tatraea using LogDet transformation. A. PHI test for Tatraea yunnanensis vs. Tatraea macrospora. B. PHI test for Tatraea yuxiensis vs. Tatraea aseptata. C. PHI test for T atraea Tatraea clepsydriformis vs. Tatraea griseoturcoisina. PHI test results (Φw &lt;0.05) indicate significant recombination within the dataset." figureDoi="10.3897/mycokeys.102.112565.figure3" httpUri="https://binary.pensoft.net/fig/983949" pageId="0" pageNumber="127">3</figureCitation>
).
<taxonomicName id="45FFAE54D2E8825A7CF6D4C0BDC45017" authorityName="C. J. Y. Li &amp; Q. Zhao" authorityYear="2024" class="Leotiomycetes" family="Helotiaceae" genus="Tatraea" higherTaxonomySource="CoL" kingdom="Fungi" lsidName="Tatraea griseoturcoisina" order="Helotiales" pageId="0" pageNumber="127" phylum="Ascomycota" rank="species" species="griseoturcoisina">
<emphasis id="BD4FE31D1E87B102A399CA7C74105A06" italics="true" pageId="0" pageNumber="127">Tatraea griseoturcoisina</emphasis>
</taxonomicName>
is distinct from all other species based on its unique macro-characteristics of greyish-green apothecia, dried discs and receptacles. Micro-characteristics of
<taxonomicName id="C235C24694F9CC34B24179B7335E7665" class="Leotiomycetes" family="Helotiaceae" kingdom="Fungi" lsidName="T. griseoturcoisina" order="Helotiales" pageId="0" pageNumber="127" phylum="Ascomycota" rank="species" species="griseoturcoisina">
<emphasis id="D3FF1055AA7C239751B49F2F9AD2D49F" italics="true" pageId="0" pageNumber="127">T. griseoturcoisina</emphasis>
</taxonomicName>
resemble
<taxonomicName id="BAD691BAEC7EDC228EDE8A8201159731" class="Leotiomycetes" family="Helotiaceae" kingdom="Fungi" lsidName="T. clepsydriformis" order="Helotiales" pageId="0" pageNumber="127" phylum="Ascomycota" rank="species" species="clepsydriformis">
<emphasis id="3BCC56F677979346B1ED91A29E59CB2A" italics="true" pageId="0" pageNumber="127">T. clepsydriformis</emphasis>
</taxonomicName>
by having narrow hyphae of medullary excipulum, short asci and smaller ellipsoidal ascospores, but it is distinct from
<taxonomicName id="B06B5C686C4CFC23D2E29F064D1B4313" class="Leotiomycetes" family="Helotiaceae" kingdom="Fungi" lsidName="T. clepsydriformis" order="Helotiales" pageId="0" pageNumber="127" phylum="Ascomycota" rank="species" species="clepsydriformis">
<emphasis id="AC28203755466EB0F9B4D76D0B92A0F9" italics="true" pageId="0" pageNumber="127">T. clepsydriformis</emphasis>
</taxonomicName>
by having a thinner medullary excipulum (164-308
<normalizedToken id="1D960C850063C5AB3E987264E185F11C" originalValue="μm">μm</normalizedToken>
<emphasis id="EE7462743873DC3D06E01AD41387EE8E" italics="true" pageId="0" pageNumber="127">vs.</emphasis>
335-535
<normalizedToken id="267E909A1CA0E494E74D538FD32824CA" originalValue="μm">μm</normalizedToken>
), longer (17.1
<normalizedToken id="5DCA2BD5D8FA222F1F7CFD44E5593A31" originalValue="×">x</normalizedToken>
5.4
<normalizedToken id="531DB4569C04534ED57CB2FEAE584132" originalValue="μm">μm</normalizedToken>
<emphasis id="27C6A1D9A803488AD62862EAD5546110" italics="true" pageId="0" pageNumber="127">vs.</emphasis>
15.2
<normalizedToken id="6DB5312D1DC187E4E130A8B4DDBF796C" originalValue="×">x</normalizedToken>
5.7
<normalizedToken id="A170A13A2CD2BB4B6450B4BDB4D8A82B" originalValue="μm">μm</normalizedToken>
) and curved ascospores.
<taxonomicName id="A0AC72F112E3822FD3803F16B6579060" authorityName="C. J. Y. Li &amp; Q. Zhao" authorityYear="2024" class="Leotiomycetes" family="Helotiaceae" genus="Tatraea" higherTaxonomySource="CoL" kingdom="Fungi" lsidName="Tatraea griseoturcoisina" order="Helotiales" pageId="0" pageNumber="127" phylum="Ascomycota" rank="species" species="griseoturcoisina">
<emphasis id="BBBA363DD411E5B13E364AAE99798353" italics="true" pageId="0" pageNumber="127">Tatraea griseoturcoisina</emphasis>
</taxonomicName>
can be distinguished from the other five species (
<taxonomicName id="4467FCDC7C6362D4A5B303A1A44951C9" class="Leotiomycetes" family="Helotiaceae" kingdom="Fungi" lsidName="T. aseptata" order="Helotiales" pageId="0" pageNumber="127" phylum="Ascomycota" rank="species" species="aseptata">
<emphasis id="6F70C76FEFE62BAAA8E1C2025772004A" italics="true" pageId="0" pageNumber="127">T. aseptata</emphasis>
</taxonomicName>
,
<taxonomicName id="AF075E84B422D777E04EB8D3A123993E" class="Leotiomycetes" family="Helotiaceae" kingdom="Fungi" lsidName="T. dumbirensis" order="Helotiales" pageId="0" pageNumber="127" phylum="Ascomycota" rank="species" species="dumbirensis">
<emphasis id="58981673F6FC6DB788C7C60A96707B7F" italics="true" pageId="0" pageNumber="127">T. dumbirensis</emphasis>
</taxonomicName>
,
<taxonomicName id="75954571511A0DA62BE8ABBA0AFFB3BC" class="Leotiomycetes" family="Helotiaceae" kingdom="Fungi" lsidName="T. macrospora" order="Helotiales" pageId="0" pageNumber="127" phylum="Ascomycota" rank="species" species="macrospora">
<emphasis id="6F5DB1672219F9E159F0DB4C8BB2C109" italics="true" pageId="0" pageNumber="127">T. macrospora</emphasis>
</taxonomicName>
,
<taxonomicName id="83C70BAFD21FAD8138D7A02E7ECB13B7" class="Leotiomycetes" family="Helotiaceae" kingdom="Fungi" lsidName="T. yunnanensis" order="Helotiales" pageId="0" pageNumber="127" phylum="Ascomycota" rank="species" species="yunnanensis">
<emphasis id="701C329FC96BC7902EA436611899209A" italics="true" pageId="0" pageNumber="127">T. yunnanensis</emphasis>
</taxonomicName>
and
<taxonomicName id="BB836E2C1E2D28A494D552CCCBBB64A8" class="Leotiomycetes" family="Helotiaceae" kingdom="Fungi" lsidName="T. yuxiensis" order="Helotiales" pageId="0" pageNumber="127" phylum="Ascomycota" rank="species" species="yuxiensis">
<emphasis id="54B12DC3B4A0BB343AD020AFC9D701D1" italics="true" pageId="0" pageNumber="127">T. yuxiensis</emphasis>
</taxonomicName>
) based on its short asci (109-122
<normalizedToken id="F23F89171D579940AEF32C2738A63989" originalValue="μm">μm</normalizedToken>
) and ascospores (14.6-20.4
<normalizedToken id="163AC026608F9E5B7AB589373BD9F409" originalValue="μm">μm</normalizedToken>
) (see Suppl. material 1).
</paragraph>
</subSubSection>
</treatment>
</document>