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<document ID-DOI="http://dx.doi.org/10.3897/mycokeys.101.117174" ID-Pensoft-Pub="1314-4049-101-313" ID-Pensoft-UUID="405ADAF086DC5BE5A739CD7089E3EB89" ModsDocID="1314-4049-101-313" checkinTime="1706965532706" checkinUser="pensoft" docAuthor="Qiao, Ya-Zhuo, Liu, Shan, Niu, Qiu-Hong &amp; Hui, Feng-Li" docDate="2024" docId="25F39E2570655997963FC3C25D79CD1E" docLanguage="en" docName="MycoKeys 101: 313-328" docOrigin="MycoKeys 101" docPubDate="2024-02-02" docSource="http://dx.doi.org/10.3897/mycokeys.101.117174" docTitle="Dioszegia foliicola Y. Z. Qiao &amp; F. L. Hui 2024, sp. nov." docType="treatment" docVersion="1" id="405ADAF086DC5BE5A739CD7089E3EB89" lastPageNumber="313" masterDocId="405ADAF086DC5BE5A739CD7089E3EB89" masterDocTitle="Three new Dioszegia species (Bulleribasidiaceae, Tremellales) discovered in the phylloplane in China" masterLastPageNumber="328" masterPageNumber="313" pageNumber="313" updateTime="1706965532706" updateUser="pensoft">
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<mods:title id="95DFFAFCE7874D1AC61627CDBDB538AA">Three new Dioszegia species (Bulleribasidiaceae, Tremellales) discovered in the phylloplane in China</mods:title>
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<mods:namePart id="E3C6BD1FBBAE3B666A4D17F38CF1F6CD">Qiao, Ya-Zhuo</mods:namePart>
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<mods:namePart id="EB48FDC517B51BC0C4E1ECB50D54C7CC">Liu, Shan</mods:namePart>
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<mods:namePart id="9C2104CF2FB0D6F70843D75C2BD73CEE">Niu, Qiu-Hong</mods:namePart>
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<mods:affiliation id="8C80208A71F4627A8FA3DC3394DC2AD7">School of Life Science and Agricultural Engineering, Nanyang Normal University, Nanyang 473061, China</mods:affiliation>
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<mods:namePart id="45617B56404A3E7F05CB1964690D8223">Hui, Feng-Li</mods:namePart>
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<mods:affiliation id="75F08F6A96E0F93FF1342711662474F8">School of Life Science and Agricultural Engineering, Nanyang Normal University, Nanyang 473061, China</mods:affiliation>
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<mods:date id="9E27E2623CB14E7B23FC98A025C09EAC">2024</mods:date>
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<treatment id="25F39E2570655997963FC3C25D79CD1E" LSID="urn:lsid:plazi:treatment:25F39E2570655997963FC3C25D79CD1E" httpUri="http://treatment.plazi.org/id/25F39E2570655997963FC3C25D79CD1E" lastPageNumber="313" pageId="0" pageNumber="313">
<subSubSection id="B82DD9F5821F05A3FDB4C2883DD32530" pageId="0" pageNumber="313" type="nomenclature">
<paragraph id="F0DCEA2BED1F31A3A0B4E2CDEBBEF4C4" pageId="0" pageNumber="313">
<taxonomicName id="030EF36EAE19088CAB2FEF2E7D46A90E" LSID="25F39E25-7065-5997-963F-C3C25D79CD1E" authority="Y. Z. Qiao &amp; F. L. Hui" authorityName="Y. Z. Qiao &amp; F. L. Hui" authorityYear="2024" class="Malasseziomycetes" family="Bulleribasidiaceae" genus="Dioszegia" higherTaxonomySource="treatment-meta" kingdom="Fungi" lsidName="Dioszegia foliicola" order="Tremellales" pageId="0" pageNumber="313" phylum="Basidiomycota" rank="species" species="foliicola" status="sp. nov.">Dioszegia foliicola Y.Z. Qiao &amp; F.L. Hui</taxonomicName>
<taxonomicNameLabel id="1F8D798FF5D1EFBC8A1857AF69B7C982" pageId="0" pageNumber="313">sp. nov.</taxonomicNameLabel>
</paragraph>
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<paragraph id="B438E02ECCCA77CEF78F379B35B0B914" pageId="0" pageNumber="313">
<figureCitation id="3130026D367A461B283E0D51418D8B58" captionStart="Figure 2" captionStartId="F2" captionText="Figure 2. Vegetative cells of Dioszegia guizhouensis sp. nov. NYNU 22985 T (A), Dioszegia foliicola sp. nov. NYUN 229182 T (B), and Dioszegia aurantia sp. nov. NYNU 229189 T (C) following growth in YM broth for 7 days at 20 ° C. Scale bars: 10 μm." figureDoi="10.3897/mycokeys.101.117174.figure2" httpUri="https://binary.pensoft.net/fig/978059" pageId="0" pageNumber="313">Fig. 2B</figureCitation>
</paragraph>
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<subSubSection id="6891759317BAD98D7A1388EA28CF6B13" pageId="0" pageNumber="313" type="etymology">
<paragraph id="2B8A00DBDB424EB1F5DD15A2980F1D7F" pageId="0" pageNumber="313">Etymology.</paragraph>
<paragraph id="06AAA7E3602730F4D96039FB2B040320" pageId="0" pageNumber="313">
The specific epithet
<emphasis id="0C39C8C5AC4572683D42CA130B8E92B2" italics="true" pageId="0" pageNumber="313">foliicola</emphasis>
refers to the type strain isolated from a leaf.
</paragraph>
</subSubSection>
<subSubSection id="1046CE153DF5AB958C406D8CF7EF1453" pageId="0" pageNumber="313" type="typus">
<paragraph id="2B465AA509871735CD8AF26E9988A4B7" pageId="0" pageNumber="313">Typus.</paragraph>
<paragraph id="2D0B82A55707D7F1062F6027D7B9872B" pageId="0" pageNumber="313">
China, Guizhou Province, Guiyang City, Guiyang Botanical Garden, in the phylloplane of
<taxonomicName id="3B40492B3E42626F244CBEFCA00CCC3D" class="Dicotyledoneae" family="Lamiaceae" genus="Salvia" higherTaxonomySource="GBIF" kingdom="Plantae" lsidName="Salvia" order="Tubiflorae" pageId="0" pageNumber="313" phylum="Angiospermae" rank="genus">
<emphasis id="600ABF06F521F198CFB62B2DD6F11C87" italics="true" pageId="0" pageNumber="313">Salvia</emphasis>
</taxonomicName>
sp., September 2022, L. Zhang and F.L. Hui, NYUN 229182 (holotype GDMCC 2.316T preserved as a metabolically inactive state, culture ex-type PYCC 9939 and CICC 33571).
</paragraph>
</subSubSection>
<subSubSection id="C8C47B31D6C1B268C1E397710FC7FACA" pageId="0" pageNumber="313" type="description">
<paragraph id="1AF2B9E53E8164F8FA620145EBCBEF2F" pageId="0" pageNumber="313">Description.</paragraph>
<paragraph id="FEAB5CE224442529C5DF97D0A824F882" pageId="0" pageNumber="313">
On YM agar, after 7 days at 20 °C, the streak culture is orange, butyrous, smooth. The margin is entire. On YM agar, after 7 days at 20 °C, cells are ovoid and ellipsoidal, 3.9-4.8
<normalizedToken id="06DC49EDAAB33A24E3E468B8BD57F0CA" originalValue="×">x</normalizedToken>
4.8-7.9
<normalizedToken id="E0ABD1113077839477D0C2F41384F942" originalValue="μm">μm</normalizedToken>
and single, budding is polar. After 1 month at 20 °C, a ring and sediment are present. In Dalmau plate culture on corn meal agar, hyphae and pseudohyphae are not formed. Sexual structures are not observed for individual strains and strain pairs on PDA, CM agar and YCBS agar for two months. Ballistoconidia are not produced on CM agar after two weeks at 20 °C. Glucose fermentation is absent. Glucose, sucrose, raffinose, melibiose, galactose, trehalose, maltose, melezitose,
<normalizedToken id="C0CEB9B9DA8E7D2ECB9534656E3BE784" originalValue="methyl-α-D-glucoside">methyl-α-D-glucoside</normalizedToken>
, cellobiose, salicin, L-sorbose, L-rhamnose, D-xylose, L-arabinose, D-arabinose, 5-keto-D-gluconate, D-ribose, galactitol, D-mannitol, succinate, D-gluconate, N-acetyl-D-glucosamine, 2-keto-D-gluconate and D-glucuronate are assimilated as carbon sources. Inulin, lactose, methanol, ethanol, glycerol, erythritol, ribitol, D-glucitol, myo-inositol, DL-lactate, citrate, D-glucosamine, and glucono-1,5-lactone are not assimilated. Nitrite and L-lysine are assimilated as nitrogen sources. Nitrate, ethylamine, and cadaverine are not assimilated. Maximum growth temperature is 30 °C. Growth in vitamin-free medium is positive. Starch-like substances are produced. Urease activity is positive. Diazonium Blue B reaction is positive.
</paragraph>
</subSubSection>
<subSubSection id="4E4D8BA5F912D5785189742D22FA0714" pageId="0" pageNumber="313" type="additional strain examined">
<paragraph id="F083F68A61ED4BE9AA1C0E036C6C5F82" pageId="0" pageNumber="313">Additional strain examined.</paragraph>
<paragraph id="5C8ED0AC6F450FC1D6C54B52B2B68811" pageId="0" pageNumber="313">
China, Guizhou Province, Guiyang City, Guiyang Botanical Garden, in the phylloplane of
<taxonomicName id="BDE1F47688E230552E6F13FC74B3EBD8" class="Dicotyledoneae" family="Moraceae" genus="Broussonetia" higherTaxonomySource="GBIF" kingdom="Plantae" lsidName="Broussonetia papyrifera" order="Urticales" pageId="0" pageNumber="313" phylum="Angiospermae" rank="species" species="papyrifera">
<emphasis id="80368FEB783AD1B1BD9C51673130177E" italics="true" pageId="0" pageNumber="313">Broussonetia papyrifera</emphasis>
</taxonomicName>
, September 2022, L. Zhang and F.L. Hui, NYUN 229188 and China, Henan Province, Nanyang City, Baotianman Nature Reserve, in the phylloplane from an unidentified tree, October 2022, J.Z. Li, NYUN 2211140.
</paragraph>
</subSubSection>
<subSubSection id="389996F59A548ABCC9BEDCE1749502BC" pageId="0" pageNumber="313" type="genbank accession numbers">
<paragraph id="524ADB2BB4BEA450F52D1FD0A1727DA5" pageId="0" pageNumber="313">GenBank accession numbers.</paragraph>
<paragraph id="E5060502E9897DBCEA93DA6348C79CDD" pageId="0" pageNumber="313">Holotype GDMCC 2.316T (ITS: OP566887, D1/D2: OP566888); additional strains NYUN 229188 (ITS: OP566890, D1/D2: OP566889) and NYUN 2211140 (ITS: OR863956, D1/D2: OR863957).</paragraph>
</subSubSection>
<subSubSection id="9B60C99B752EAF12D387AA1A99EE5613" pageId="0" pageNumber="313" type="notes">
<paragraph id="9F1327052F0582B7BBBC211D63993E81" pageId="0" pageNumber="313">Note.</paragraph>
<paragraph id="40B53E64A5C3778AF2A99FACE8EA2354" pageId="0" pageNumber="313">
<taxonomicName id="59A2252A0FF19CA9CEE956E82ECEB7D6" authorityName="Y. Z. Qiao &amp; F. L. Hui" authorityYear="2024" class="Malasseziomycetes" family="Sporobolomycetaceae" genus="Dioszegia" kingdom="Fungi" lsidName="Dioszegia foliicola" order="Tremellales" pageId="0" pageNumber="313" phylum="Basidiomycota" rank="species" species="foliicola">
<emphasis id="E36DCA02FC31D2DD6A67DCACA9204B2E" italics="true" pageId="0" pageNumber="313">Dioszegia foliicola</emphasis>
</taxonomicName>
sp. nov. can be physiologically differentiated from its closest known species
<taxonomicName id="0632E0A1687B0A1A6BCB5845B84820AE" lsidName="D. maotaiensis" pageId="0" pageNumber="313" rank="species" species="maotaiensis">
<emphasis id="1A2124496160107CBB31DD26903DEF0B" italics="true" pageId="0" pageNumber="313">D. maotaiensis</emphasis>
</taxonomicName>
(
<bibRefCitation id="7F24ECD2FCA4775466B28BFD282E67D9" DOI="https://doi.org/10.1016/j.simyco.2020.01.002" author="Li, AH" journalOrPublisher="Studies in Mycology" pageId="0" pageNumber="313" pagination="17 - 140" refId="B15" refString="Li, AH, Yuan, FX, Groenewald, M, Bensch, K, Yurkov, AM, Li, K, Han, PJ, Guo, LD, Aime, MC, Sampaio, JP, Jindamorakot, S, Turchetti, B, Inacio, J, Fungsin, B, Wang, QM, Bai, FY, 2020. Diversity and phylogeny of basidiomycetous yeasts from plant leaves and soil: Proposal of two new orders, three new families, eight new genera and one hundred and seven new species. Studies in Mycology 96: 17 - 140, DOI: https://doi.org/10.1016/j.simyco.2020.01.002" title="Diversity and phylogeny of basidiomycetous yeasts from plant leaves and soil: Proposal of two new orders, three new families, eight new genera and one hundred and seven new species." url="https://doi.org/10.1016/j.simyco.2020.01.002" volume="96" year="2020">Li et al. 2020</bibRefCitation>
) by its inability to assimilate inulin and citrate, its ability to assimilate
<normalizedToken id="407C9F28C1986B437F015709BBD00D96" originalValue="methyl-α-D-glucoside">methyl-α-D-glucoside</normalizedToken>
, salicin, L-sorbose, D-ribose, galactitol, and D-mannitol, and its capacity to grow at 30 °C.
</paragraph>
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</treatment>
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