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<document ID-DOI="http://dx.doi.org/10.3897/mycokeys.101.114872" ID-Pensoft-Pub="1314-4049-101-81" ID-Pensoft-UUID="13B98E3CA70C5AC6B46338C0D7F14E83" ModsDocID="1314-4049-101-81" checkinTime="1705112362279" checkinUser="pensoft" docAuthor="Lu, Yun-Feng, Chai, Chun-Yue &amp; Hui, Feng-Li" docDate="2024" docId="7FF46A198FD65F62BDCA4672F50D0AD0" docLanguage="en" docName="MycoKeys 101: 81-94" docOrigin="MycoKeys 101" docPubDate="2024-01-12" docSource="http://dx.doi.org/10.3897/mycokeys.101.114872" docTitle="Colacogloea celtidis C. Y. Chai &amp; F. L. Hui 2024, sp. nov." docType="treatment" docVersion="2" id="13B98E3CA70C5AC6B46338C0D7F14E83" lastPageNumber="81" masterDocId="13B98E3CA70C5AC6B46338C0D7F14E83" masterDocTitle="Two new phyllospheric species of Colacogloea (Colacogloeaceae, Pucciniomycotina) identified in China" masterLastPageNumber="94" masterPageNumber="81" pageNumber="81" updateTime="1705112663464" updateUser="ExternalLinkService">
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<mods:title id="4BCDF52F3EF1ED59557B2A4E50F06FAC">Two new phyllospheric species of Colacogloea (Colacogloeaceae, Pucciniomycotina) identified in China</mods:title>
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<mods:namePart id="06F68C828E0145009C0F4E4261F06177">Lu, Yun-Feng</mods:namePart>
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<mods:namePart id="7B98659E54610E9892C238554DB5119F">Chai, Chun-Yue</mods:namePart>
<mods:nameIdentifier id="9176B94B0C03E58867AE5244EFFA5A86" type="ORCID">https://orcid.org/0000-0001-7753-6223</mods:nameIdentifier>
<mods:affiliation id="297EAD87568A3C3642AB5F4946EEBECF">School of Life Science and Agricultural Engineering, Nanyang Normal University, Nanyang 473061, China</mods:affiliation>
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<mods:namePart id="2B7FBD88DDE5AE3D7C0F180094799522">Hui, Feng-Li</mods:namePart>
<mods:nameIdentifier id="28290C434926E2DB3729DD073D708325" type="ORCID">https://orcid.org/0000-0001-7928-3055</mods:nameIdentifier>
<mods:affiliation id="87E0299A5FD39E11325EC981569B43D8">School of Life Science and Agricultural Engineering, Nanyang Normal University, Nanyang 473061, China</mods:affiliation>
<mods:nameIdentifier id="7629AEB1279E419F2976CA43B99420FD" type="email">fenglihui@yeah.net</mods:nameIdentifier>
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<mods:date id="1E4E15455E2DB462793CF4151EF919DE">2024</mods:date>
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<mods:identifier id="672926B26B2B53FC597BFFAF4230682B" type="DOI">http://dx.doi.org/10.3897/mycokeys.101.114872</mods:identifier>
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<subSubSection id="0912CC9978824AE923C19529FA076535" pageId="0" pageNumber="81" type="nomenclature">
<paragraph id="5707913AB5638160227F65ACFCB9CE49" pageId="0" pageNumber="81">
<taxonomicName id="34BE68EC9C4ACEBABF6845227C8FB0A2" LSID="7FF46A19-8FD6-5F62-BDCA-4672F50D0AD0" authority="C. Y. Chai &amp; F. L. Hui" authorityName="C. Y. Chai &amp; F. L. Hui" authorityYear="2024" class="Malasseziomycetes" family="Colacogloeaceae" genus="Colacogloea" higherTaxonomySource="CoL" kingdom="Fungi" lsidName="Colacogloea celtidis" order="Heterogastridiales" pageId="0" pageNumber="81" phylum="Basidiomycota" rank="species" species="celtidis" status="sp. nov.">Colacogloea celtidis C.Y. Chai &amp; F.L. Hui</taxonomicName>
<taxonomicNameLabel id="C2E671432166C9D643B248F0B802CB8A" pageId="0" pageNumber="81">sp. nov.</taxonomicNameLabel>
</paragraph>
</subSubSection>
<subSubSection id="F6C6204345000F1287B3AE5678FF29FD" pageId="0" pageNumber="81" type="description">
<paragraph id="12D8034A28721A1E0A673DF1EC4C0E50" pageId="0" pageNumber="81">
<figureCitation id="E4190C38BAF5A4010874292EE7B80FCA" captionStart="Figure 2" captionStartId="F2" captionText="Figure 2. Vegetative cells of Colacogloea celtidis sp. nov. NYUN 2210184 T (A) and Colacogloea pararetinophila sp. nov. NYNU 2110393 T (B) following growth in YM broth for 7 days at 20 ° C. Scale bars: 10 μm." figureDoi="10.3897/mycokeys.101.114872.figure2" httpUri="https://binary.pensoft.net/fig/965869" pageId="0" pageNumber="81">Fig. 2A</figureCitation>
</paragraph>
</subSubSection>
<subSubSection id="F9D1482C4C5809F598FF2FEB27B65CF6" pageId="0" pageNumber="81" type="etymology">
<paragraph id="E01E075FFF75F3D7309536936F4CA472" pageId="0" pageNumber="81">Etymology.</paragraph>
<paragraph id="835D994BC060F80D9AC3BA8E3C6435AE" pageId="0" pageNumber="81">
The specific epithet &quot;
<emphasis id="31271F5A8EC0FFD39E6520EF9851BE6A" italics="true" pageId="0" pageNumber="81">celtidis</emphasis>
&quot; refers to
<emphasis id="83AFD5486191E95BD5B4B3C496ADA6BC" italics="true" pageId="0" pageNumber="81">Celtis</emphasis>
, the plant genus, from which the type strain was isolated.
</paragraph>
</subSubSection>
<subSubSection id="9583462E79FF5579D3CF601B0764C0AF" pageId="0" pageNumber="81" type="typus">
<paragraph id="3E5431A22EA344AF9E4A93BF686703EC" pageId="0" pageNumber="81">Typus.</paragraph>
<paragraph id="E778357F50BAFAC9F3C2BEE67FB7D547" pageId="0" pageNumber="81">
China, Henan Province, Neixiang County, Baotianman Nature Reserve, Getiaopa (
<geoCoordinate id="742273A2A32C4976139F15BC296E8911" degrees="33" direction="north" minutes="29" orientation="latitude" precision="15" seconds="07" value="33.48528">33°2907″N</geoCoordinate>
,
<geoCoordinate id="EEF18493E4FE04495BA0AB770F85483E" degrees="111" direction="east" minutes="52" orientation="longitude" precision="15" seconds="51" value="111.88084">111°5251″E</geoCoordinate>
), in phylloplane from leaf of
<taxonomicName id="1E8E79F9BBB53DF980E9A0FF75683543" class="Dicotyledoneae" family="Ulmaceae" genus="Celtis" higherTaxonomySource="GBIF" kingdom="Plantae" lsidName="Celtis bungeana" order="Urticales" pageId="0" pageNumber="81" phylum="Angiospermae" rank="species" species="bungeana">
<emphasis id="DFC4409AD32C15983486CF26DC1BE765" italics="true" pageId="0" pageNumber="81">Celtis bungeana</emphasis>
</taxonomicName>
, October 2022, J.Z. Li, NYUN 2210184 (holotype GDMCC 2.332T preserved as a metabolically inactive state, culture ex-type KCTC 37265 and CICC 33577).
</paragraph>
</subSubSection>
<subSubSection id="C010CAC98A7670465E52EE34F775E436" pageId="0" pageNumber="81" type="description">
<paragraph id="043350997C1185E4CE820E095C821C29" pageId="0" pageNumber="81">Description.</paragraph>
<paragraph id="B13ED4D435F694D519CE1B3084E76B66" pageId="0" pageNumber="81">
On YM agar, after two weeks at 20 °C, the streak culture is cream, butyrous, and smooth. The margin is entire. In YM broth, after 7 d at 20 °C, cells are long cylindrical, 2.3-3.0
<normalizedToken id="F6DE4CB7EFF5DD2AC41A03B573EF050C" originalValue="×">x</normalizedToken>
7.0-10.2
<normalizedToken id="282E01BC4FAA957A47809F926D61EEB7" originalValue="μm">μm</normalizedToken>
and single, budding is polar. After 1 mo 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. Glucose fermentation is absent. Glucose, salicin, D-xylose (weak), D-arabinose, 5-keto-D-gluconate, ethanol (weak), glycerol, ribitol, D-mannitol, D-glucitol, succinate, D-gluconate, D-glucosamine (weak), 2-keto-D-gluconate, D-glucuronate, and glucono-1,5-lactone are assimilated as sole carbon sources. Inulin, sucrose, raffinose, melibiose, galactose, lactose, trehalose, maltose, melezitose,
<normalizedToken id="FF8B9BB8BB860A547D4DCB4F9DE9EFDB" originalValue="methyl-α-D-glucoside">methyl-α-D-glucoside</normalizedToken>
, cellobiose, L-sorbose, L-rhamnose, L-arabinose, D-ribose, methanol, erythritol, galactitol, myo-inositol, DL-lactate, and citrate are not assimilated. Nitrate, nitrite (delayed and weak), ethylamine (delayed and weak), and L-lysine (delayed) are assimilated as sole nitrogen sources. Cadaverine is not assimilated. Maximum growth temperature is 30 °C. Growth in vitamin-free medium is positive. Starch-like substances are not produced. Urease activity is positive. Diazonium Blue B reaction is positive.
</paragraph>
<caption id="DA95C378740250B625DCCD9D0C1A95CE" doi="10.3897/mycokeys.101.114872.figure2" httpUri="https://binary.pensoft.net/fig/965869" pageId="0" pageNumber="81" start="Figure 2" startId="F2">
<paragraph id="BB682591CABD666FF5B1F7FC21F249BC" pageId="0" pageNumber="81">
<emphasis id="E5733BFF5C584491A719F57AAE3552C7" bold="true" pageId="0" pageNumber="81">Figure 2.</emphasis>
Vegetative cells of
<taxonomicName id="B7FE8AEB0C3288105E1DDC4A2A0682D6" authorityName="C. Y. Chai &amp; F. L. Hui" authorityYear="2024" class="Malasseziomycetes" family="Sporobolomycetaceae" genus="Colacogloea" higherTaxonomySource="CoL" kingdom="Fungi" lsidName="Colacogloea celtidis" order="Heterogastridiales" pageId="0" pageNumber="81" phylum="Basidiomycota" rank="species" species="celtidis">
<emphasis id="ACEFE1115994F60D8136F2B57CDF84E2" italics="true" pageId="0" pageNumber="81">Colacogloea celtidis</emphasis>
</taxonomicName>
sp. nov. NYUN 2210184T (
<emphasis id="115F9324DCBFC88470C2D6C8B6E21222" bold="true" pageId="0" pageNumber="81">A</emphasis>
) and
<taxonomicName id="940ADB4D58A281D2B8ED8D0F7CCB236A" authorityName="C. Y. Chai &amp; F. L. Hui" authorityYear="2024" class="Malasseziomycetes" family="Sporobolomycetaceae" genus="Colacogloea" higherTaxonomySource="CoL" kingdom="Fungi" lsidName="Colacogloea pararetinophila" order="Heterogastridiales" pageId="0" pageNumber="81" phylum="Basidiomycota" rank="species" species="pararetinophila">
<emphasis id="FF54150843ED424ECA62F0C0F075703F" italics="true" pageId="0" pageNumber="81">Colacogloea pararetinophila</emphasis>
</taxonomicName>
sp. nov. NYNU 2110393T (
<emphasis id="008EE81A4798338C140827BDF1217504" bold="true" pageId="0" pageNumber="81">B</emphasis>
) following growth in YM broth for 7 days at 20 °C. Scale bars: 10
<normalizedToken id="0A7D96A3CB1CB0ADB007DB202EE0089C" originalValue="μm">μm</normalizedToken>
.
</paragraph>
</caption>
</subSubSection>
<subSubSection id="FAE567016329D3CAA2D17DDA255E54CC" pageId="0" pageNumber="81" type="additional strain examined">
<paragraph id="FF14516FA81396E75D8D165E9FAE43A5" pageId="0" pageNumber="81">Additional strain examined.</paragraph>
<paragraph id="F9F601283758DA3F65149D8A403604F4" pageId="0" pageNumber="81">
China, Henan Province, Neixiang County, Baotianman Nature Reserve, Mayigou (
<geoCoordinate id="BAB29C16B13EB2FE9CB44C5A1598AD13" degrees="33" direction="north" minutes="30" orientation="latitude" precision="15" seconds="44" value="33.512222">33°3044″N</geoCoordinate>
,
<geoCoordinate id="FF8A6C6B8D80592E06A649BE9897811E" degrees="111" direction="east" minutes="55" orientation="longitude" precision="15" seconds="47" value="111.92972">111°5547″E</geoCoordinate>
) in phylloplane from undetermined leaf, October 2022, J.Z. Li, NYNU 221136.
</paragraph>
</subSubSection>
<subSubSection id="C7D14005E4790CEE3F6D7D7EBC31DDC4" pageId="0" pageNumber="81" type="genbank accession numbers">
<paragraph id="3BC4EFF6A21CC1616DDC79216757AB65" pageId="0" pageNumber="81">GenBank accession numbers.</paragraph>
<paragraph id="F17C8CDD7FCC5FFCC6C938C9C8BE14CF" pageId="0" pageNumber="81">Holotype NYUN 2210184T (ITS: OP954665, D1/D2: OP954664); additional strain NYUN 221136 (ITS: OR727350, D1/D2: OR727349).</paragraph>
</subSubSection>
<subSubSection id="8A4FF868700F4F27A26C5DBC857F68D3" pageId="0" pageNumber="81" type="notes">
<paragraph id="F299054688CC5FD06140133FEECF1D41" pageId="0" pageNumber="81">Note.</paragraph>
<paragraph id="21FABFD32C4EA216EE25BE812B9961CD" pageId="0" pageNumber="81">
Phylogenetic analyses revealed that
<taxonomicName id="66F0ACDA4C09ACE3763EFFA1085413D2" lsidName="C. celtidis" pageId="0" pageNumber="81" rank="species" species="celtidis">
<emphasis id="AF84A2A1027919BCCDC3ADAC64A42C15" italics="true" pageId="0" pageNumber="81">C. celtidis</emphasis>
</taxonomicName>
sp. nov. formed a single clade with high support (100 MLBP/1 BPP; Fig.
<figureCitation id="A1E87540CB45B8858A1B2C394168A05F" captionStart="Figure 1" captionStartId="F1" captionText="Figure 1. Maximum likelihood (ML) phylogram of Colacogloea species based on combined ITS and LSU sequence data. Udeniozyma ferulica CBS 7416 T was used as the outgroup. Branches are labeled with MLBS ≥ 50 % and BPP ≥ 0.95. New strains described in this study are shown in bold." figureDoi="10.3897/mycokeys.101.114872.figure1" httpUri="https://binary.pensoft.net/fig/965868" pageId="0" pageNumber="81">1</figureCitation>
).
<taxonomicName id="9197170DD59BDC1A2B7EE5C0ECA20D66" lsidName="C. eltise" pageId="0" pageNumber="81" rank="species" species="eltise">
<emphasis id="8B31E9E1AD77FEB07F59BA48FD1035A8" italics="true" pageId="0" pageNumber="81">C. eltise</emphasis>
</taxonomicName>
sp. nov. can be physiologically differentiated from its closest known species
<taxonomicName id="27A0524D7CB63563D9C23586E746976A" lsidName="C. armeniacae" pageId="0" pageNumber="81" rank="species" species="armeniacae">
<emphasis id="8C94F61F5747DC8720964F8FE31EDDF7" italics="true" pageId="0" pageNumber="81">C. armeniacae</emphasis>
</taxonomicName>
(
<bibRefCitation id="4676E266AB48374A0CD09506AA9E7E2B" DOI="https://doi.org/10.47371/mycosci.2020.08.005" author="Wang, GS" journalOrPublisher="Mycoscience" pageId="0" pageNumber="81" pagination="42 - 46" refId="B33" refString="Wang, GS, Sun, Y, Wangmu, , Wang, Q-M, 2021. Colacogloea armeniacae sp. nov., a novel pucciniomycetous yeast species isolated from apricots. Mycoscience 62 (1): 42 - 46, DOI: https://doi.org/10.47371/mycosci.2020.08.005" title="Colacogloea armeniacae sp. nov., a novel pucciniomycetous yeast species isolated from apricots." url="https://doi.org/10.47371/mycosci.2020.08.005" volume="62" year="2021">Wang et al. 2021</bibRefCitation>
) by its ability to grow in D-xylose and D-arabinose and inability to grow in trehalose and cellobiose (Table
<tableCitation id="952DEEF793B949032B35206A027C84C2" captionStart="Table 3" captionStartId="T3" captionText="Table 3. Physiological and biochemical characteristics that differ between the new species and closely related species." httpUri="http://table.plazi.org/id/110B51A84ED808CAE66B3A43E15DFF61" pageId="0" pageNumber="81" tableUuid="110B51A84ED808CAE66B3A43E15DFF61">3</tableCitation>
).
</paragraph>
<caption id="110B51A84ED808CAE66B3A43E15DFF61" ID-Table-UUID="110B51A84ED808CAE66B3A43E15DFF61" httpUri="http://table.plazi.org/id/110B51A84ED808CAE66B3A43E15DFF61" pageId="0" pageNumber="81" start="Table 3" startId="T3">
<paragraph id="676AA84D7F4E91CC31317AA4C52AABDD" pageId="0" pageNumber="81">
<emphasis id="CC4BFBD29B37296FDB46ADA46492DABF" bold="true" pageId="0" pageNumber="81">Table 3.</emphasis>
Physiological and biochemical characteristics that differ between the new species and closely related species.
</paragraph>
</caption>
<paragraph id="A65403F55BF6D6C389FFCF0931D43E19" pageId="0" pageNumber="81">
<table id="D3A51B4D0370C81E3138F5A79FCC81F4" pageId="0" pageNumber="81">
<tr id="A4EA52E58AD464A97502A882F412698E" pageId="0" pageNumber="81">
<th id="ABC083A3CDECA4A0CE4D509756693910" colspan="1" pageId="0" pageNumber="81" rowspan="1">Characteristics</th>
<th id="2F4E5CF0C9EB5DC8DEB7FFBBA7759079" colspan="1" pageId="0" pageNumber="81" rowspan="1">
<taxonomicName id="CEC3D7A2A2F0BC92DB330496407D9D17" lsidName="C. celtidis" pageId="0" pageNumber="81" rank="species" species="celtidis">
<emphasis id="14440B2659F3177D6F570839DF7096F9" italics="true" pageId="0" pageNumber="81">C. celtidis</emphasis>
</taxonomicName>
</th>
<th id="D47260710D1FD753DBCA73A3A2EFD110" colspan="1" pageId="0" pageNumber="81" rowspan="1">
<taxonomicName id="15092AE689D738042B24952EEF191776" lsidName="C. armeniacae" pageId="0" pageNumber="81" rank="species" species="armeniacae">
<emphasis id="0D2A8AA115834E56C696996C68AE9CC9" italics="true" pageId="0" pageNumber="81">C. armeniacae</emphasis>
</taxonomicName>
*
</th>
<th id="FE964331D2BEC55B9FD364DF772AEA51" colspan="1" pageId="0" pageNumber="81" rowspan="1">
<taxonomicName id="9CC095FA2508658B30B7933D2D01616A" lsidName="C. pararetinophila" pageId="0" pageNumber="81" rank="species" species="pararetinophila">
<emphasis id="1CBA79A22B947EA96CE31966A820E6D6" italics="true" pageId="0" pageNumber="81">C. pararetinophila</emphasis>
</taxonomicName>
</th>
<th id="825A9510423F247BA4D60DE3922165CC" colspan="1" pageId="0" pageNumber="81" rowspan="1">
<taxonomicName id="62E84F58C510E767E8E9F39A9CA1B9DD" lsidName="C. retinophila" pageId="0" pageNumber="81" rank="species" species="retinophila">
<emphasis id="F26F62F9398F4E4E3C5E007B5C366A66" italics="true" pageId="0" pageNumber="81">C. retinophila</emphasis>
</taxonomicName>
*
</th>
</tr>
<tr id="494BC72190D17CE1F9CD4691E92244E5" pageId="0" pageNumber="81">
<td id="E9992B8A1C208FAC08A06ADD06A90E49" colspan="4" pageId="0" pageNumber="81" rowspan="1">Carbon assimilation</td>
<td id="DC0717EB87EA5F5D4034248124BE7B0E" colspan="1" isEmpty="true" pageId="0" pageNumber="81" rowspan="1">-</td>
</tr>
<tr id="36DA0829A14A30CDCF768A78E23723D9" pageId="0" pageNumber="81">
<td id="5EFB5771192084E28D5E26BB0B9CA8B4" colspan="1" pageId="0" pageNumber="81" rowspan="1">Trehalose</td>
<td id="4AB9A7F48250A145347F7C7539822ED0" colspan="1" pageId="0" pageNumber="81" rowspan="1">-</td>
<td id="EBE3C34E2766F5461362EBBD79DC8E43" colspan="1" pageId="0" pageNumber="81" rowspan="1">+</td>
<td id="388806A735B2347A9AE7DD98115BBA27" colspan="1" pageId="0" pageNumber="81" rowspan="1">w</td>
<td id="2FD3F6ECAC32CC0A3E72002F16682C8A" colspan="1" pageId="0" pageNumber="81" rowspan="1">+</td>
</tr>
<tr id="A6D30ABA34E04AE52BABA081A355070D" pageId="0" pageNumber="81">
<td id="9F2510D18F2D70287A03DC08A1C6282D" colspan="1" pageId="0" pageNumber="81" rowspan="1">Cellobiose</td>
<td id="67C6DB337ABCD67E945579FDBD79AC91" colspan="1" pageId="0" pageNumber="81" rowspan="1">-</td>
<td id="CE95003B21BA9E55C953B94EE0EC32CE" colspan="1" pageId="0" pageNumber="81" rowspan="1">+</td>
<td id="37399451DA560C1521904568BA81BF89" colspan="1" pageId="0" pageNumber="81" rowspan="1">-</td>
<td id="827DB815B735CABDD458D1622D224EE8" colspan="1" pageId="0" pageNumber="81" rowspan="1">-</td>
</tr>
<tr id="4F5AB80BC6F266A5F6AE8E2D3B93F7A8" pageId="0" pageNumber="81">
<td id="4532443F12F89F2A4A13CDE5F1DC0361" colspan="1" pageId="0" pageNumber="81" rowspan="1">Salicin</td>
<td id="C504F75B6650619A6305AB4F0C8786C4" colspan="1" pageId="0" pageNumber="81" rowspan="1">+</td>
<td id="958EFE25A52A9AA4B9407A31A1A0D3CF" colspan="1" pageId="0" pageNumber="81" rowspan="1">-/d/w</td>
<td id="DCB23168063C8F0B963A1A0DDBA89759" colspan="1" pageId="0" pageNumber="81" rowspan="1">w</td>
<td id="FE905DB3CF49178640720263EAEE926C" colspan="1" pageId="0" pageNumber="81" rowspan="1">-</td>
</tr>
<tr id="C91AC57C4E59EEE5346D0496AE01A73B" pageId="0" pageNumber="81">
<td id="A92E2390A9803D03B6934CFD362B60C8" colspan="1" pageId="0" pageNumber="81" rowspan="1">D-Xylose</td>
<td id="846994D2C73AAC0E8B4221D539293378" colspan="1" pageId="0" pageNumber="81" rowspan="1">w</td>
<td id="3944D9BF01BBA1262CBE3C16B5907426" colspan="1" pageId="0" pageNumber="81" rowspan="1">-</td>
<td id="B52B51378FB8A47868DB5B4F8B936A78" colspan="1" pageId="0" pageNumber="81" rowspan="1">+</td>
<td id="06A7E7808D84A03AEA8AE326901DF28F" colspan="1" pageId="0" pageNumber="81" rowspan="1">s</td>
</tr>
<tr id="CFC8F57E5990612FD5AAE612AC68D946" pageId="0" pageNumber="81">
<td id="035CB597879FAEB245B3FE61F0937D9F" colspan="1" pageId="0" pageNumber="81" rowspan="1">D-Arabinose</td>
<td id="E5B684C9064263523231BBBC1BDB4917" colspan="1" pageId="0" pageNumber="81" rowspan="1">+</td>
<td id="DFFA9FD8326E2A83F62238A3016F3FFD" colspan="1" pageId="0" pageNumber="81" rowspan="1">-</td>
<td id="D3446DA57D39EB05799CA0985D0C41FD" colspan="1" pageId="0" pageNumber="81" rowspan="1">+</td>
<td id="3F1FB112F81970E7C7620CFA1EE5928C" colspan="1" pageId="0" pageNumber="81" rowspan="1">s</td>
</tr>
<tr id="BD0B2DFF942F9D58AA4623C6F265E7D4" pageId="0" pageNumber="81">
<td id="0921664A21743DA5C87650B8C7EA8E52" colspan="1" pageId="0" pageNumber="81" rowspan="1">D-Ribose</td>
<td id="0E0714E122DCAE1F952246837583265B" colspan="1" pageId="0" pageNumber="81" rowspan="1">-</td>
<td id="30CBF6465CB598BE5B0FB322173A200E" colspan="1" pageId="0" pageNumber="81" rowspan="1">-/d/w</td>
<td id="674D3F159AE872C09503B778B39C618F" colspan="1" pageId="0" pageNumber="81" rowspan="1">+</td>
<td id="7A51DA758CDDD799C32ABFB0CD5F7284" colspan="1" pageId="0" pageNumber="81" rowspan="1">-</td>
</tr>
<tr id="326D2B86BD1C82F4EECECF2BF7711F2A" pageId="0" pageNumber="81">
<td id="155B96219AF7769A18132FDF34C7C47F" colspan="1" pageId="0" pageNumber="81" rowspan="1">D-Glucuronate</td>
<td id="C771848C44DDCC7CDB8ABA77E9BB5E5F" colspan="1" pageId="0" pageNumber="81" rowspan="1">+</td>
<td id="1B3CF8FC420FD035B7C8999B68D2FF84" colspan="1" pageId="0" pageNumber="81" rowspan="1">+</td>
<td id="5787FAF9A2E83ECA7D5A8023B12692CA" colspan="1" pageId="0" pageNumber="81" rowspan="1">-</td>
<td id="42495A010EEFF6709DC1C737C8EDA439" colspan="1" pageId="0" pageNumber="81" rowspan="1">+</td>
</tr>
<tr id="0D4550072054F3A14054CE813AC37793" pageId="0" pageNumber="81">
<td id="575387A30CA533D73E224602A0ADE187" colspan="5" pageId="0" pageNumber="81" rowspan="1">Nitrogen assimilation</td>
</tr>
<tr id="139DEB1002D2F9A16847BE30D40D2FBF" pageId="0" pageNumber="81">
<td id="4E4D6A54D6C7F8EFC646F8684DEFEB62" colspan="1" pageId="0" pageNumber="81" rowspan="1">Nitrate</td>
<td id="746D98238B3B25D3CC55F6E27F6868C2" colspan="1" pageId="0" pageNumber="81" rowspan="1">+</td>
<td id="FB0896630A7F3B0EE3B7B8A86DF8E655" colspan="1" pageId="0" pageNumber="81" rowspan="1">+</td>
<td id="FFB34C66E75B911D0183E344AC227436" colspan="1" pageId="0" pageNumber="81" rowspan="1">+</td>
<td id="C3224A2A4F5889B072885924DAA3FCB6" colspan="1" pageId="0" pageNumber="81" rowspan="1">-</td>
</tr>
<tr id="AC6A0D516FFEA6B0751EE0F03B058DD2" pageId="0" pageNumber="81">
<td id="DA0E958D70D45F42B4128F3E80847291" colspan="1" pageId="0" pageNumber="81" rowspan="1">Nitrite</td>
<td id="240557B8CC49E86D380C9978F85EC290" colspan="1" pageId="0" pageNumber="81" rowspan="1">d/w</td>
<td id="D846A7D641BE7259EF1095CC5722CD4E" colspan="1" pageId="0" pageNumber="81" rowspan="1">+</td>
<td id="6996A3B0D352CE387BFEF184F4912E04" colspan="1" pageId="0" pageNumber="81" rowspan="1">+</td>
<td id="BE9F80DC42470C639A2D942004206401" colspan="1" pageId="0" pageNumber="81" rowspan="1">-</td>
</tr>
<tr id="CD8FE24044FA653D038B3B05642F82EE" pageId="0" pageNumber="81">
<td id="B6C0828341E4AACB71E416A6F27EED71" colspan="1" pageId="0" pageNumber="81" rowspan="1">L-Lysine</td>
<td id="9F2E11EBB30F943606269777F08C13FC" colspan="1" pageId="0" pageNumber="81" rowspan="1">d</td>
<td id="21BC9F9275F36F901AD4260EE6CCE0D9" colspan="1" pageId="0" pageNumber="81" rowspan="1">-</td>
<td id="4C8B470C33B2299548FFB73FA1E4D1BC" colspan="1" pageId="0" pageNumber="81" rowspan="1">+</td>
<td id="C5DA24D2BE1C264D316DCA195971BE55" colspan="1" pageId="0" pageNumber="81" rowspan="1">n</td>
</tr>
<tr id="E24AC50BB5FB18AE6DC86317CBF4F2CC" pageId="0" pageNumber="81">
<td id="2C6E59930F82E2BFE80604E71FE89408" colspan="1" pageId="0" pageNumber="81" rowspan="1">Growth tests</td>
<td id="1BF4055B11EE8ACDB8587C90A6253B35" colspan="1" isEmpty="true" pageId="0" pageNumber="81" rowspan="1">-</td>
<td id="80EB74713FAE7DB2945793EA2E0E54F1" colspan="1" isEmpty="true" pageId="0" pageNumber="81" rowspan="1">-</td>
<td id="75EAC9582CA1A945CC3B62A7783517FE" colspan="1" isEmpty="true" pageId="0" pageNumber="81" rowspan="1">-</td>
<td id="8209A17EA840756CCD5603627869D67C" colspan="1" isEmpty="true" pageId="0" pageNumber="81" rowspan="1">-</td>
</tr>
<tr id="F20A93F3C9BA4570231DE770846203F3" pageId="0" pageNumber="81">
<td id="561616B65C69F686FA76E171407989BF" colspan="1" pageId="0" pageNumber="81" rowspan="1">0.1% Cycloheximide</td>
<td id="7FED2831E320C3A83D1E43D3181EEA9E" colspan="1" pageId="0" pageNumber="81" rowspan="1">-</td>
<td id="536D73C8E926123E754F1DC7540A4571" colspan="1" pageId="0" pageNumber="81" rowspan="1">n</td>
<td id="39D1E9819FFDEE2BCC0BB6606C447E78" colspan="1" pageId="0" pageNumber="81" rowspan="1">+</td>
<td id="0E0BEA39D93967379EA5E2D7088FB590" colspan="1" pageId="0" pageNumber="81" rowspan="1">-</td>
</tr>
</table>
</paragraph>
<paragraph id="E71D3AE543FD94FB5A77BA2F3DD1B746" pageId="0" pageNumber="81">
<tableNote id="3B4CEAD375F3C1B487D675ADFB7C45BC" pageId="0" pageNumber="81">
+, positive reaction; -, negative reaction; d, delayed positive; s, slowly positive; w, weakly positive; n, data not available. All data from this study, except* which were obtained from the original description (
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).
</tableNote>
</paragraph>
</subSubSection>
</treatment>
</document>