Add updates up until 2025-01-22 17:31:36
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<document id="557B9524E131F81D42456E12DCEA5A25" ID-DOI="10.3897/mycokeys.112.136158" ID-publisher-id="136158" URI-arpha="A6789751-2315-5696-825D-10FF9451A221" article-type="research-article" checkinTime="1737566998102" checkinUser="pensoft" docAuthor="Błaszkowski, Janusz, Zubek, Szymon, Milczarski, Paweł, Malinowski, Ryszard, Niezgoda, Piotr & Goto, Bruno Tomio" docDate="2025" docId="60062287D34E5DBF8C6FD9F6B3F88A50" docLanguage="en" docName="MycoKeys 112: 253-276" docOrigin="MycoKeys 112" docSource="https://mycokeys.pensoft.net/article/136158/download/xml/" docStyle="DocumentStyle:PensoftTaxPub.0000.journal_article.mycokeys" docStyleName="PensoftTaxPub.0000.journal_article.mycokeys" docTitle="Delicatispora indica Blaszk., Niezgoda & B. T. Goto 2025, comb. nov." docType="treatment" docVersion="1" dtd-version="3.0" lastPageNumber="276" masterDocId="A678975123155696825D10FF9451A221" masterDocTitle="New taxa and a combination in Glomerales (Glomeromycota, Glomeromycetes)" masterLastPageNumber="276" masterPageNumber="253" pageNumber="253" updateTime="1737567085748" updateUser="pensoft">
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<mods:titleInfo id="2B43D84F36170299806A91EA846B1D77">
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<mods:title id="7092963ACFC59535CBB1CDF5B5C4CD49">New taxa and a combination in Glomerales (Glomeromycota, Glomeromycetes)</mods:title>
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</mods:titleInfo>
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<mods:name id="D51F23DB9FEB0862EFCB28A69609FB05" type="personal">
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<mods:roleTerm id="261100870F29F5E5E14D6DB2935DC5D4">Author</mods:roleTerm>
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</mods:role>
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<mods:namePart id="74B6F871BAB6F48766427A90B7631B40">Błaszkowski, Janusz</mods:namePart>
|
||||
<mods:nameIdentifier id="9616356181B9C3BF8F790859F4C45C64" type="ORCID">0000-0003-3688-164X</mods:nameIdentifier>
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||||
<mods:affiliation id="59DE66E9C0F29524CD87C641A6BAD9D7">Department of Environmental Management, West Pomeranian University of Technology in Szczecin, Słowackiego 17, PL- 71434 Szczecin, Poland</mods:affiliation>
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</mods:name>
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<mods:name id="2C29F54BE62303F5CE22A31894010D81" type="personal">
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<mods:roleTerm id="25086A0F30A71213AAEBE847CE2F3218">Author</mods:roleTerm>
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</mods:role>
|
||||
<mods:namePart id="049C3168445DAFF5A2E68B2E2AAAA650">Zubek, Szymon</mods:namePart>
|
||||
<mods:nameIdentifier id="D4BD9F86A0B1DAEF8A6D6254115EF8D8" type="ORCID">0000-0003-1338-9572</mods:nameIdentifier>
|
||||
<mods:affiliation id="E77F46D62336F1B113F6D056EBAD0FFF">Institute of Botany, Faculty of Biology, Jagiellonian University, 30 - 387, Kraków, Poland</mods:affiliation>
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</mods:name>
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<mods:name id="BA6EF29F5C56095267E0B32A7D63292A" type="personal">
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<mods:roleTerm id="9764B9C4D0E3744E5E2EF200D082B5B8">Author</mods:roleTerm>
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</mods:role>
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||||
<mods:namePart id="EE2D031096060A761285A4435FFFE824">Milczarski, Paweł</mods:namePart>
|
||||
<mods:nameIdentifier id="079559AF5ABA85AEB1FD700963CBECA7" type="ORCID">0000-0003-2622-8938</mods:nameIdentifier>
|
||||
<mods:affiliation id="EC14619DC61C259AF20CFE5ECC6FA3BA">Department of Environmental Management, West Pomeranian University of Technology in Szczecin, Słowackiego 17, PL- 71434 Szczecin, Poland</mods:affiliation>
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</mods:name>
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<mods:name id="292EA18AF21B0F2BE5317CBCF9C7AEE9" type="personal">
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<mods:roleTerm id="015D93B32CFF3960D5EE37E8BCFF4B76">Author</mods:roleTerm>
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</mods:role>
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||||
<mods:namePart id="F1D9747875EEEA556CF4FA51AAFEC53B">Malinowski, Ryszard</mods:namePart>
|
||||
<mods:nameIdentifier id="86057DBCA09004B7CF8C2F08EA33FC95" type="ORCID">0000-0003-3413-2653</mods:nameIdentifier>
|
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<mods:affiliation id="9135DDD07B1737996601D38F5F0EE9AB">Department of Environmental Management, West Pomeranian University of Technology in Szczecin, Słowackiego 17, PL- 71434 Szczecin, Poland</mods:affiliation>
|
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</mods:name>
|
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<mods:name id="AA61430AE612EECD2ED386DD9EE8E33F" type="personal">
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<mods:role id="26BD17CE442957C765C25151B2BCF344">
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<mods:roleTerm id="6220A67815860E9DF8BD9C79166B7439">Author</mods:roleTerm>
|
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</mods:role>
|
||||
<mods:namePart id="CC600F2C08F6661023F1098DF5F4DB06">Niezgoda, Piotr</mods:namePart>
|
||||
<mods:nameIdentifier id="6FE4B158821015F5C967109FAFC904D0" type="ORCID">0000-0002-0560-6154</mods:nameIdentifier>
|
||||
<mods:affiliation id="755E37F900EDA4DA4FD54356011BE71A">Department of Environmental Management, West Pomeranian University of Technology in Szczecin, Słowackiego 17, PL- 71434 Szczecin, Poland</mods:affiliation>
|
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</mods:name>
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<mods:roleTerm id="100341152E9DF1E7854C6BC4F5F79F55">Author</mods:roleTerm>
|
||||
</mods:role>
|
||||
<mods:namePart id="AE1E735BF840801361F7EEE34E9FDC0A">Goto, Bruno Tomio</mods:namePart>
|
||||
<mods:nameIdentifier id="DEA60E27053B83336ED0F79D40DD2917" type="ORCID">0000-0001-6157-4954</mods:nameIdentifier>
|
||||
<mods:affiliation id="7D8CA95DD4DD01DEC56A09442B9332C9">Department of Genetic, Plant Breeding & Biotechnology, West Pomeranian University of Technology in Szczecin, Słowackiego 17, PL- 71434 Szczecin, Poland</mods:affiliation>
|
||||
</mods:name>
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<mods:typeOfResource id="863A68CB712E092EE809B474F0842265">text</mods:typeOfResource>
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<mods:titleInfo id="C5DD3307ADFFC0FDF6813B64DE159CD8">
|
||||
<mods:title id="335D378098C81B10DEFC7EA22D044C1B">MycoKeys</mods:title>
|
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</mods:titleInfo>
|
||||
<mods:part id="4DB444E4BA65C7B7395CDC342B08935A">
|
||||
<mods:date id="061AF0790681DA9FED69295A09BC453D">2025</mods:date>
|
||||
<mods:detail id="BE4BF175F9DC01FB002FC9345F74C64A" type="pubDate">
|
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<mods:number id="3C189DFFD296BE82F0BF05E0BF80C2D9">2025-01-22</mods:number>
|
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</mods:detail>
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<mods:detail id="27B9130652F7A61712CC170907830D82" type="volume">
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<mods:number id="7777F58B1A5750EC0FA36A5603FE54A2">112</mods:number>
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</mods:detail>
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<mods:extent id="51219F51D2C027374BB3DC39ECC6C7AB" unit="page">
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<mods:start id="C22CDCB8CE5802406D8DE457F87EEF74">253</mods:start>
|
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<mods:end id="FAE8BC664856CB0026491149E162DF76">276</mods:end>
|
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</mods:extent>
|
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</mods:part>
|
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</mods:relatedItem>
|
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<mods:classification id="553E0B30B9AF68250F12F3428375E7F7">journal article</mods:classification>
|
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<mods:identifier id="687F55CFB6D213D2F6DFF95FE4ECBBC7" type="DOI">10.3897/mycokeys.112.136158</mods:identifier>
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</mods:mods>
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<treatment id="60062287D34E5DBF8C6FD9F6B3F88A50" ID-arpha="60062287-D34E-5DBF-8C6F-D9F6B3F88A50" ID-mycobank="856189" LSID="urn:lsid:plazi:treatment:60062287D34E5DBF8C6FD9F6B3F88A50" httpUri="http://treatment.plazi.org/id/60062287D34E5DBF8C6FD9F6B3F88A50">
|
||||
<subSubSection id="33EC710EF9ECA05C3FA5479F039C2B9C" type="nomenclature">
|
||||
<paragraph id="2D60C43594218DEBCCECBB1B98924422">
|
||||
<taxonomicName id="16A3EB7E6612346E2D99B8D03ADF7839" authority="(Blaszk., Wubet & Harikumar) Blaszk., Niezgoda & B. T. Goto" authorityName="Blaszk., Niezgoda & B. T. Goto" authorityYear="2025" baseAuthorityName="Błaszkowski & Zubek & Milczarski & Malinowski & Niezgoda & Goto" baseAuthorityYear="2025" class="Glomeromycetes" family="Dominikiaceae" genus="Delicatispora" higherTaxonomySource="CoL,GBIF" kingdom="Fungi" order="Glomerales" phylum="Glomeromycota" rank="species" species="indica" status="comb. nov.">
|
||||
<emphasis id="3EB94D1A71BCF1F02C282410423CACAB" italics="true">Delicatispora indica</emphasis>
|
||||
(Błaszk., Wubet & Harikumar) Błaszk., Niezgoda & B. T. Goto
|
||||
</taxonomicName>
|
||||
<taxonomicNameLabel id="9C9A435EA7113E62CF388C4404F4A319" rank="species">comb. nov.</taxonomicNameLabel>
|
||||
</paragraph>
|
||||
</subSubSection>
|
||||
<subSubSection id="E33F4B1BAC53E01992D4988A7FEC33BC" type="description">
|
||||
<paragraph id="B8297604E767BE23235D092901202710">
|
||||
<figureCitation id="DB4F0C0BE21C6C574440FDCB55EAC8B9" captionStart="Figure 1" captionStartId="F1" captionText="Figure 1. 50 % majority-rule consensus tree from the Bayesian analysis of sequences of 45 S nuc rDNA concatenated with rpb 1 sequences of Macrodominikia compressa (= Isolate 517), Delicatispora indica, Dominikia paraminuta, 33 other species of Glomerales, as well as Entrophospora claroidea serving as outgroup. The new genera and species are in bold font. The Bayesian posterior probabilities ≥ 0.90 and ML bootstrap values ≥ 50 % are shown near the branches, respectively. Bar indicates 0.1 expected change per site per branch." figureDoi="10.3897/mycokeys.112.136158.figure1" httpUri="https://binary.pensoft.net/fig/1229335">Fig. 1</figureCitation>
|
||||
<xref id="DFA307D1242461B5761EDDCD865E7158" ref-type="supplementary-material" rid="S1">, Suppl. material 1</xref>
|
||||
</paragraph>
|
||||
</subSubSection>
|
||||
<subSubSection id="SECID0EG5AG" type="etymology">
|
||||
<paragraph id="E1F6E8CF053DA970E439B4EDCD156742">
|
||||
<heading id="55ABF5C50344EB551962062E5B6986AD" reason="title">Etymology.</heading>
|
||||
</paragraph>
|
||||
<paragraph id="A260424827C26D26CEDE3AFCFFF14D74">
|
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Latin, referring to
|
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<collectingCountry id="ECE152670D478450ED244BB8BD871F14" name="India">India</collectingCountry>
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where this species was originally found.
|
||||
</paragraph>
|
||||
</subSubSection>
|
||||
<subSubSection id="SECID0EL5AG" type="material">
|
||||
<paragraph id="B0E9C6D792028A71268E4CA89E11278F">
|
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<heading id="743CFB660D42E775433B71BB438CF9AF" reason="title">Specimens examined.</heading>
|
||||
</paragraph>
|
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<paragraph id="37F4CF87EE3D39B0C62880F231A989D5">
|
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<collectingCountry id="53E1948FB0D7F1F12A8762CEB828DAE5" name="Poland">Poland</collectingCountry>
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. Spores from single-species cultures established from spores extracted from trap pot cultures inoculated with rhizosphere soil and root fragments of
|
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<taxonomicName id="49EC443FD15D742B097FBAB88220ACA2" class="Magnoliopsida" family="Euphorbiaceae" genus="Euphorbia" kingdom="Plantae" order="Malpighiales" phylum="Tracheophyta" rank="species" species="heterophylla">
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<emphasis id="AB504300A790190636CE6A9EB7D229D0" italics="true">Euphorbia heterophylla</emphasis>
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</taxonomicName>
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<collectionCode id="D9BDF57870CFCF8CEE9DB2E46429C26E" country="Netherlands" lsid="urn:lsid:biocol.org:col:15678" name="Nationaal Herbarium Nederland, Leiden University branch" type="Herbarium">L</collectionCode>
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. from coastal sands of Alappuzha in
|
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<collectingRegion id="29AC937A34D2E0EC8A3297A85356A09F" country="India" name="Kerala">Kerala State</collectingRegion>
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of South
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<collectingCountry id="0B17044A7A54F1AEEAE6DE42FC577118" name="India">India</collectingCountry>
|
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(
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<named-content content-type="dwc:verbatimCoordinates" id="NCID0E65AG" specific-use="{"type":"Point","coordinates":[76.766667,90.916667]}">
|
||||
<geoCoordinate id="36B00D97E6A4D5ACB9DAFF55148FC3B9" degrees="90" direction="north" minutes="55" orientation="latitude" precision="925" value="90.916664">90 ° 55 ' N</geoCoordinate>
|
||||
, 76.0 ° 46 '
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<collectionCode id="074AFFD48B989A35F854864FAB197A00" country="United Kingdom" lsid="urn:lsid:biocol.org:col:15670" name="Royal Botanic Garden Edinburgh" type="Herbarium">E</collectionCode>
|
||||
</named-content>
|
||||
) and
|
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<taxonomicName id="6044C779B03F3CB4DF32367E7A9B85FF" class="Magnoliopsida" family="Asteraceae" genus="Lactuca" kingdom="Plantae" order="Asterales" phylum="Tracheophyta" rank="species" species="sativa">
|
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<emphasis id="93AB522FB0AF7EAE0A9D2913C9BAB6F0" italics="true">Lactuca sativa</emphasis>
|
||||
</taxonomicName>
|
||||
<collectionCode id="C0AEDAF3DACB3223CA2825A23D970DD7" country="Netherlands" lsid="urn:lsid:biocol.org:col:15678" name="Nationaal Herbarium Nederland, Leiden University branch" type="Herbarium">L</collectionCode>
|
||||
. cultivated in Asmara,
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<collectingCountry id="4D0CF3DD8A0F3FE60D69D8C21C306350" name="Eritrea">Eritrea</collectingCountry>
|
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, North East Africa (
|
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<named-content content-type="dwc:verbatimCoordinates" id="NCID0ES6AG" specific-use="{"type":"Point","coordinates":[38.916667,15.466667]}">
|
||||
<geoCoordinate id="11E74091C6D1946CCCB8BF136DDD763A" degrees="15" direction="north" minutes="28" orientation="latitude" precision="925" value="15.466666">15 ° 28 ' N</geoCoordinate>
|
||||
,
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<geoCoordinate id="A8948713478D2B4D90AB65830D0F2637" degrees="38" direction="east" minutes="55" orientation="longitude" precision="925" value="38.916668">38 ° 55 ' E</geoCoordinate>
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</named-content>
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),
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<date id="144F6AE71D86A86DEC6136757ADBD5EC" value="2009-04-10">10 Apr 2009</date>
|
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,
|
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<collectionCode id="6FEAFC88E304D2E300E1790CB1F740F7" country="South Africa" lsid="urn:lsid:biocol.org:col:14647" name="University of the Witwatersrand" type="Herbarium">J</collectionCode>
|
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. Błaszkowski (
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<typeStatus id="256E8073F8DB459CAB8516A8B7433721" type="holotype">holotype</typeStatus>
|
||||
: slide with spores no. LPPDSE 3113;
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<typeStatus id="9AA51F97FE0A400C56677F0E8BA688CD" type="isotype">isotypes</typeStatus>
|
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: slides with spores nos. LPPDSE 3108–3112 and 3114–3133), and two slides at
|
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<collectionCode id="13957454BCBF1DC39AEFB14A4148F385" country="USA" httpUri="http://biocol.org/urn:lsid:biocol.org:col:15613" lsid="urn:lsid:biocol.org:col:15613" name="Oregon State University" type="Herbarium">OSC</collectionCode>
|
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.
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</paragraph>
|
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</subSubSection>
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<subSubSection id="SECID0EX6AG" type="diagnosis">
|
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<paragraph id="5C8057F8EC1499CBE1C800C62839043A">
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<heading id="F03F15EA3164FFF4DB3786F311E63642" reason="title">Diagnosis.</heading>
|
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</paragraph>
|
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<paragraph id="6954C1AEE542D7A24674432F2FEA77D5">
|
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As that of
|
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<taxonomicName id="DB82FC9CA3C6510912569751592E0A2C" authorityName="Blaszk., Niezgoda & B. T. Goto" authorityYear="2025" class="Glomeromycetes" family="Entrophosporaceae" genus="Delicatispora" higherTaxonomySource="CoL,GBIF" kingdom="Fungi" order="Entrophosporales" phylum="Glomeromycota" rank="genus">
|
||||
<emphasis id="C6AAE95F2B476B1037D1891A8973A2E4" italics="true">Delicatispora</emphasis>
|
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</taxonomicName>
|
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(see above).
|
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</paragraph>
|
||||
</subSubSection>
|
||||
<subSubSection id="SECID0EEABG" type="description">
|
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<paragraph id="A4BF950C4B66954793CA5AAA95EB4444">
|
||||
<heading id="83F4D3ED51D7ECBBCFF378E1A224CA6F" reason="title">Description.</heading>
|
||||
</paragraph>
|
||||
<paragraph id="1C4F6B378C187F2DB55EA0E383AF90BA">
|
||||
As that in
|
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<bibRefCitation id="DDE93537424989B239877E137AE0A51C" DOI="10.1139/B09-104" author="Błaszkowski J & Wubet T & Harikumar VS & Ryszka P & Buscot F" issue="2" journalOrPublisher="Botany" pagination="132-143" refId="B9" refString="Błaszkowski J, Wubet T, Harikumar VS, Ryszka P, Buscot F (2010 b) Glomus indicum, a new arbuscular mycorrhizal fungus. Botany 88 (2): 132–143. https://doi.org/10.1139/B09-104" title="Glomus indicum, a new arbuscular mycorrhizal fungus." volume="88">Błaszkowski et al. (2010 b</bibRefCitation>
|
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).
|
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</paragraph>
|
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</subSubSection>
|
||||
<subSubSection id="SECID0EOABG" type="ecology">
|
||||
<paragraph id="8AE73BAE227C04E15933956BA6CEA6F0">
|
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<heading id="6DD0B175E9742683F47A367CEB1A4462" reason="title">Ecology and distribution.</heading>
|
||||
</paragraph>
|
||||
<paragraph id="13477EEF90058B5D2C664B6621DAF0DB">
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Originally found in two trap pot cultures inoculated with rhizosphere soils and root fragments of
|
||||
<taxonomicName id="FBB64882FA030F42369493A2E22D3611" class="Magnoliopsida" family="Euphorbiaceae" genus="Euphorbia" kingdom="Plantae" order="Malpighiales" phylum="Tracheophyta" rank="species" species="heterophylla">
|
||||
<emphasis id="0B8177E5E2ABF011EA70834E863EA5AD" italics="true">E. heterophylla</emphasis>
|
||||
</taxonomicName>
|
||||
from coastal sands of Alappuzha in
|
||||
<collectingRegion id="69605D1FA3CC163E7D63B49081BCB5E5" country="India" name="Kerala">Kerala State</collectingRegion>
|
||||
of South
|
||||
<collectingCountry id="CC1F21266A96EA11EA1E9E66820970E2" name="India">India</collectingCountry>
|
||||
and
|
||||
<taxonomicName id="F666FEE6A7A803C73DDA0C27FD07869A" class="Magnoliopsida" family="Asteraceae" genus="Lactuca" kingdom="Plantae" order="Asterales" phylum="Tracheophyta" rank="species" species="sativa">
|
||||
<emphasis id="78B0BAE7EA2359DA783D3CB6EE43DF28" italics="true">L. sativa</emphasis>
|
||||
</taxonomicName>
|
||||
cultivated in Asmara,
|
||||
<collectingCountry id="EA4F6E127C2F2349FEFA25E1CBD0717B" name="Eritrea">Eritrea</collectingCountry>
|
||||
, Northeast Africa. The geographic positions of the sampled sites, physicochemical properties of their soils, and features of mycorrhizal structures formed in single-species cultures of this fungus, are given in
|
||||
<bibRefCitation id="5F3A03B05E779DEF874A2F2580B7E4F3" DOI="10.1139/B09-104" author="Błaszkowski J & Wubet T & Harikumar VS & Ryszka P & Buscot F" issue="2" journalOrPublisher="Botany" pagination="132-143" refId="B9" refString="Błaszkowski J, Wubet T, Harikumar VS, Ryszka P, Buscot F (2010 b) Glomus indicum, a new arbuscular mycorrhizal fungus. Botany 88 (2): 132–143. https://doi.org/10.1139/B09-104" title="Glomus indicum, a new arbuscular mycorrhizal fungus." volume="88">Błaszkowski et al. (2010 b</bibRefCitation>
|
||||
). Based on ≥ 98 %
|
||||
<collectionCode id="948ED4ED9664906B3D5020BA196F407E" country="0" httpUri="http://grbio.org/cool/fye2-vfes" name="Saratov State University" type="">SSU</collectionCode>
|
||||
rDNA sequence identity to uncultured
|
||||
<abbrev id="ABBRID0EOBBG" xlink_title="arbuscular mycorrhizal fungi">AMF</abbrev>
|
||||
sequences available in public databases, suggested to have also been present in various states of the
|
||||
<collectingCountry id="25CDDDB8476C1527420690BE04055D77" name="United States of America">USA</collectingCountry>
|
||||
,
|
||||
<collectingCountry id="45862EA7855F43A64C9ED1177A9513C0" name="Estonia">Estonia</collectingCountry>
|
||||
, and
|
||||
<collectingCountry id="8F6B7A26186DFFFC73BF9C5D06FA0A2A" name="Australia">Australia</collectingCountry>
|
||||
(
|
||||
<bibRefCitation id="C9D5F29FA008F6FB7B61C1A5CAACF7D7" DOI="10.1139/B09-104" author="Błaszkowski J & Wubet T & Harikumar VS & Ryszka P & Buscot F" issue="2" journalOrPublisher="Botany" pagination="132-143" refId="B9" refString="Błaszkowski J, Wubet T, Harikumar VS, Ryszka P, Buscot F (2010 b) Glomus indicum, a new arbuscular mycorrhizal fungus. Botany 88 (2): 132–143. https://doi.org/10.1139/B09-104" title="Glomus indicum, a new arbuscular mycorrhizal fungus." volume="88">Błaszkowski et al. 2010 b</bibRefCitation>
|
||||
). In the
|
||||
<collectingCountry id="06ABD56503A2F3AA59DB5C8CB12362EE" name="United States of America">USA</collectingCountry>
|
||||
, also found associated with roots of
|
||||
<taxonomicName id="3F419D9D22E5476CF3AF11C59830CE3F" class="Liliopsida" family="Poaceae" genus="Panicum" kingdom="Plantae" order="Poales" phylum="Tracheophyta" rank="species" species="virgatum">
|
||||
<emphasis id="D2A6C60F626433A109ACC795DB1A1CB6" italics="true">Panicum virgatum</emphasis>
|
||||
</taxonomicName>
|
||||
<collectionCode id="5AB47D27202F4CC069A1E423A0922477" country="Netherlands" lsid="urn:lsid:biocol.org:col:15678" name="Nationaal Herbarium Nederland, Leiden University branch" type="Herbarium">L</collectionCode>
|
||||
. in
|
||||
<collectingRegion id="75A2A74374A61FDD70976FBB98CBC422" country="United States of America" name="Wisconsin">Wisconsin</collectingRegion>
|
||||
, as resulted from phylogenetic analyses of our 45
|
||||
<collectionCode id="5B88855B9102D7C5BCFA86572E3CAB84" country="Sweden" lsid="urn:lsid:biocol.org:col:15668" name="Department of Botany, Swedish Museum of Natural History" type="Herbarium">S</collectionCode>
|
||||
alignment with the
|
||||
<ext-link id="051B3206533E943EC398D2187C5F3BBF" ext-link-type="gen" xlink_href="MT765488" xlink_type="simple">
|
||||
<accessionNumber id="7DAA46A7134E0C43676B9E996678626F" httpUri="https://www.ebi.ac.uk/ena/browser/api/embl/MT765488">
|
||||
<collectionCode id="60F5287345084DBFC9CFE16FAB88E2C5" country="Russia" name="Mus. Tinro, Vladyvostok">MT</collectionCode>
|
||||
765488
|
||||
</accessionNumber>
|
||||
</ext-link>
|
||||
,
|
||||
<ext-link id="CD901B912C7BC1F26DC8AA55D5E49AEF" ext-link-type="gen" xlink_href="MT765651" xlink_type="simple">
|
||||
<accessionNumber id="7CA1AD409B47AC04E9691162DDF0557A" httpUri="https://www.ebi.ac.uk/ena/browser/api/embl/MT765651">
|
||||
<collectionCode id="2E718DDD9B456C152E8C75F88BCF0F57" country="Russia" name="Mus. Tinro, Vladyvostok">MT</collectionCode>
|
||||
765651
|
||||
</accessionNumber>
|
||||
</ext-link>
|
||||
, and
|
||||
<ext-link id="95697D409C116D53944B9DB84B79715E" ext-link-type="gen" xlink_href="MT765457" xlink_type="simple">
|
||||
<accessionNumber id="F9304C2961DA4A9527AD436B7FEF95B1" httpUri="https://www.ebi.ac.uk/ena/browser/api/embl/MT765457">
|
||||
<collectionCode id="B3DC7CB19EFE5FBD7512ED3795917769" country="Russia" name="Mus. Tinro, Vladyvostok">MT</collectionCode>
|
||||
765457
|
||||
</accessionNumber>
|
||||
</ext-link>
|
||||
environmental sequences with> 96 % identity to 45
|
||||
<collectionCode id="2E56242D7C40C11C603CEAAA18827BE8" country="Sweden" lsid="urn:lsid:biocol.org:col:15668" name="Department of Botany, Swedish Museum of Natural History" type="Herbarium">S</collectionCode>
|
||||
sequences of
|
||||
<taxonomicName id="E503E2EFDB5B00D2732B6F2EFB32099D" authorityName="Blaszk., Niezgoda & B. T. Goto" authorityYear="2025" baseAuthorityName="Błaszkowski & Zubek & Milczarski & Malinowski & Niezgoda & Goto" baseAuthorityYear="2025" class="Glomeromycetes" family="Entrophosporaceae" genus="Delicatispora" higherTaxonomySource="CoL,GBIF" kingdom="Fungi" order="Entrophosporales" phylum="Glomeromycota" rank="species" species="indica">
|
||||
<emphasis id="5DC7FFD0ED3AA44D3F8660A008CC46DE" italics="true">D. indica</emphasis>
|
||||
</taxonomicName>
|
||||
(data not shown).
|
||||
</paragraph>
|
||||
</subSubSection>
|
||||
</treatment>
|
||||
</document>
|
335
data/65/C2/AB/65C2AB47776550409DA8BCE5E0056791.xml
Normal file
335
data/65/C2/AB/65C2AB47776550409DA8BCE5E0056791.xml
Normal file
|
@ -0,0 +1,335 @@
|
|||
<document id="932D37770E8675191EF2ABE683D5687F" ID-DOI="10.3897/mycokeys.112.136158" ID-publisher-id="136158" URI-arpha="A6789751-2315-5696-825D-10FF9451A221" article-type="research-article" checkinTime="1737566998102" checkinUser="pensoft" docAuthor="Błaszkowski, Janusz, Zubek, Szymon, Milczarski, Paweł, Malinowski, Ryszard, Niezgoda, Piotr & Goto, Bruno Tomio" docDate="2025" docId="65C2AB47776550409DA8BCE5E0056791" docLanguage="en" docName="MycoKeys 112: 253-276" docOrigin="MycoKeys 112" docSource="https://mycokeys.pensoft.net/article/136158/download/xml/" docStyle="DocumentStyle:PensoftTaxPub.0000.journal_article.mycokeys" docStyleName="PensoftTaxPub.0000.journal_article.mycokeys" docTitle="Macrodominikia compressa Blaszk., Niezgoda & B. T. Goto" docType="treatment" docVersion="1" dtd-version="3.0" lastPageNumber="276" masterDocId="A678975123155696825D10FF9451A221" masterDocTitle="New taxa and a combination in Glomerales (Glomeromycota, Glomeromycetes)" masterLastPageNumber="276" masterPageNumber="253" pageNumber="253" updateTime="1737567085748" updateUser="pensoft">
|
||||
<mods:mods id="6E0EE4098A1F98F701766228CC342893" xmlns:mods="http://www.loc.gov/mods/v3">
|
||||
<mods:titleInfo id="6DEA6E1D2E2B3D5123C32EA14CD06FC5">
|
||||
<mods:title id="92943364098288793B35970EF0718BDB">New taxa and a combination in Glomerales (Glomeromycota, Glomeromycetes)</mods:title>
|
||||
</mods:titleInfo>
|
||||
<mods:name id="BEB17EDDE77FA108F88BDE76AFDA7997" type="personal">
|
||||
<mods:role id="223ECBE7B56550A69B0829E78555F2F5">
|
||||
<mods:roleTerm id="D2244FD603762E67D711E7D1E9783DBD">Author</mods:roleTerm>
|
||||
</mods:role>
|
||||
<mods:namePart id="9B7EF5B53F8F533C2103CE76B053EB68">Błaszkowski, Janusz</mods:namePart>
|
||||
<mods:nameIdentifier id="CAB557D8DCA7853D437CCDC00E9248A8" type="ORCID">0000-0003-3688-164X</mods:nameIdentifier>
|
||||
<mods:affiliation id="CEA94E37E4E9E3B91C7AD0013C55EC33">Department of Environmental Management, West Pomeranian University of Technology in Szczecin, Słowackiego 17, PL- 71434 Szczecin, Poland</mods:affiliation>
|
||||
</mods:name>
|
||||
<mods:name id="9898DBAAC629A35199134C6D61BD6DA8" type="personal">
|
||||
<mods:role id="597F9F7E82F856918BA67D533771CEAC">
|
||||
<mods:roleTerm id="C60E7405D49D94C4C4C783600BA28995">Author</mods:roleTerm>
|
||||
</mods:role>
|
||||
<mods:namePart id="5A818E1134AF8DFCEB4DDE76AA448A3D">Zubek, Szymon</mods:namePart>
|
||||
<mods:nameIdentifier id="2FF3447E37184088EC3A6BEAFD8B8ED9" type="ORCID">0000-0003-1338-9572</mods:nameIdentifier>
|
||||
<mods:affiliation id="D4F9A23917B491547F6D891D19EB8FF0">Institute of Botany, Faculty of Biology, Jagiellonian University, 30 - 387, Kraków, Poland</mods:affiliation>
|
||||
</mods:name>
|
||||
<mods:name id="4395086CE0F07DE82A4D10D4CF11D7C4" type="personal">
|
||||
<mods:role id="7ED971BB1AFAFC095DEAA8C6C5AC62D1">
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<mods:roleTerm id="9ACC5ABA8574E028CA323C33A7F3FC35">Author</mods:roleTerm>
|
||||
</mods:role>
|
||||
<mods:namePart id="F154EF07F7C9512AC4448F8DD1384A1E">Milczarski, Paweł</mods:namePart>
|
||||
<mods:nameIdentifier id="0F56DDB0267EE534A9FF907A870AA799" type="ORCID">0000-0003-2622-8938</mods:nameIdentifier>
|
||||
<mods:affiliation id="753922D8B62A8080814D64B8CC983A56">Department of Environmental Management, West Pomeranian University of Technology in Szczecin, Słowackiego 17, PL- 71434 Szczecin, Poland</mods:affiliation>
|
||||
</mods:name>
|
||||
<mods:name id="9E7A27B3B6F1746AADCF41B9776B2C43" type="personal">
|
||||
<mods:role id="E418D5545DAE2A3E7BE7C5EE4AB45212">
|
||||
<mods:roleTerm id="B5E999F39218DA706C54E41784A2D10A">Author</mods:roleTerm>
|
||||
</mods:role>
|
||||
<mods:namePart id="572AEB8EB3A46E459FBF7029779187B6">Malinowski, Ryszard</mods:namePart>
|
||||
<mods:nameIdentifier id="C2E78614C8E6AF217E04047B7F16164D" type="ORCID">0000-0003-3413-2653</mods:nameIdentifier>
|
||||
<mods:affiliation id="9CF87E8927AC53F9B916455FDF1A64F7">Department of Environmental Management, West Pomeranian University of Technology in Szczecin, Słowackiego 17, PL- 71434 Szczecin, Poland</mods:affiliation>
|
||||
</mods:name>
|
||||
<mods:name id="1CBB47C48622529617B88066E1956F3B" type="personal">
|
||||
<mods:role id="AECDF0AF4FB017B4088243D3D5A3ED35">
|
||||
<mods:roleTerm id="A35D37490A6DEE31D9D5D20E68FD2C79">Author</mods:roleTerm>
|
||||
</mods:role>
|
||||
<mods:namePart id="9EE786B29443EABD97C1442633060BA5">Niezgoda, Piotr</mods:namePart>
|
||||
<mods:nameIdentifier id="AB6A9A06013526D1FCFFC59D2F0D9518" type="ORCID">0000-0002-0560-6154</mods:nameIdentifier>
|
||||
<mods:affiliation id="B86C48E9EE5EF2E19883931651612652">Department of Environmental Management, West Pomeranian University of Technology in Szczecin, Słowackiego 17, PL- 71434 Szczecin, Poland</mods:affiliation>
|
||||
</mods:name>
|
||||
<mods:name id="105DF5EA2F87ED0845454CAC59596AE1" type="personal">
|
||||
<mods:role id="CA293225D788969C5640BBF3807EB2F4">
|
||||
<mods:roleTerm id="860E6CDEBDC3187364D964F7AD6256F1">Author</mods:roleTerm>
|
||||
</mods:role>
|
||||
<mods:namePart id="D50BF0EBCD6262CF841018C55EE0EA99">Goto, Bruno Tomio</mods:namePart>
|
||||
<mods:nameIdentifier id="826F05219D3EBB1CB74A47399AD2FBAE" type="ORCID">0000-0001-6157-4954</mods:nameIdentifier>
|
||||
<mods:affiliation id="9766C032098C1716EF84FD2CC96DF91D">Department of Genetic, Plant Breeding & Biotechnology, West Pomeranian University of Technology in Szczecin, Słowackiego 17, PL- 71434 Szczecin, Poland</mods:affiliation>
|
||||
</mods:name>
|
||||
<mods:typeOfResource id="58920399CAB859F47E4053448CDBA90F">text</mods:typeOfResource>
|
||||
<mods:relatedItem id="ADFA1C8E4EFEA5A9E18890EE52C14581" type="host">
|
||||
<mods:titleInfo id="5DF2BD196EC6776208C06E4F93BEF033">
|
||||
<mods:title id="43BC5ACAEDB933D2B645AF3A7326B00D">MycoKeys</mods:title>
|
||||
</mods:titleInfo>
|
||||
<mods:part id="3301839A1D181CE66DEFC86DB7719354">
|
||||
<mods:date id="896865035DE067FD750A5FA4E22DE347">2025</mods:date>
|
||||
<mods:detail id="87F39466B3A150CAC45C3E48846A8F05" type="pubDate">
|
||||
<mods:number id="6DD12329133692567138BDCDCAEA14C5">2025-01-22</mods:number>
|
||||
</mods:detail>
|
||||
<mods:detail id="F6DA2C3E9AA9A4F1FECFCBFFA39239CF" type="volume">
|
||||
<mods:number id="4FF653FC6A017CF93D2E64C9CBDBD2C7">112</mods:number>
|
||||
</mods:detail>
|
||||
<mods:extent id="CBFA266C66BF4BB5D799C6488E55B717" unit="page">
|
||||
<mods:start id="A3E1DB7ECE4AF0C27840B32DF367BBB1">253</mods:start>
|
||||
<mods:end id="D564CBCD1D8F5FD2736CCEB8AFDF3A5E">276</mods:end>
|
||||
</mods:extent>
|
||||
</mods:part>
|
||||
</mods:relatedItem>
|
||||
<mods:classification id="C344CBD47E8C3BA140AE7CDB2A0F3C52">journal article</mods:classification>
|
||||
<mods:identifier id="92DEB6CE9EA04C74A4B0B8488475D7D3" type="DOI">10.3897/mycokeys.112.136158</mods:identifier>
|
||||
</mods:mods>
|
||||
<treatment id="65C2AB47776550409DA8BCE5E0056791" ID-arpha="65C2AB47-7765-5040-9DA8-BCE5E0056791" LSID="urn:lsid:plazi:treatment:65C2AB47776550409DA8BCE5E0056791" httpUri="http://treatment.plazi.org/id/65C2AB47776550409DA8BCE5E0056791">
|
||||
<subSubSection id="3320B8631692D192E510872BDDED6FD9" type="nomenclature">
|
||||
<paragraph id="F5CB08B80018CBA6C58279C5A9A0FB2C">
|
||||
<taxonomicName id="0A49A65C98F747B3581363D77FDEA3EF" authority="(Sieverd., Oehl, Palenz., Sanchez-Castro & G. A. Silva) emend. Blaszk., Niezgoda & B. T. Goto" authorityName="Blaszk., Niezgoda & B. T. Goto" class="Glomeromycetes" family="Dominikiaceae" genus="Macrodominikia" higherTaxonomySource="CoL" kingdom="Fungi" order="Glomerales" phylum="Glomeromycota" rank="species" species="compressa">
|
||||
<emphasis id="5CACC8378397EF36D5991A0724980E88" italics="true">Macrodominikia compressa</emphasis>
|
||||
(Sieverd., Oehl, Palenz., Sánchez-Castro & G. A. Silva) emend. Błaszk., Niezgoda & B. T. Goto
|
||||
</taxonomicName>
|
||||
</paragraph>
|
||||
</subSubSection>
|
||||
<subSubSection id="463D021C7F7D261F2A9D3EB814D080BA" type="description">
|
||||
<paragraph id="DE1AF5AA4A1B357BCBB7D6C7C1FE1882">
|
||||
<figureCitation id="0A886536EB83FF0D51412122C7E9AF60" captionStart="Figure 3" captionStartId="F3" captionText="Figure 3. Macrodominikia compressa A cluster of spores (sp) with subtending hypha (sh) B spore wall layers (swl) 1–4 and subtending hyphal wall layers (shwl) 1–3; shwl 4 is not visible C spore wall layers (swl) 1–4 D – H spore wall layers (swl) 1–4 continuous with subtending hyphal wall layers (shwl) 1–4; septum (s) formed by shwl 4 is indicated A spores in PVLG B – H spores in PVLG + Melzer’s reagent A – H differential interference microscopy. Scale bars: 20 μm (A); 10 μm (B – H)." figureDoi="10.3897/mycokeys.112.136158.figure3" httpUri="https://binary.pensoft.net/fig/1229337">Figs 3 A – H</figureCitation>
|
||||
,
|
||||
<figureCitation id="2E384E6F5A03715639E8AF55EF51ED02" captionStart="Figure 4" captionStartId="F4" captionText="Figure 4. Macrodominikia compressa A remnants (r) of spore wall layer (swl) 1 and spore wall layers (swl) 2–4; spore subtending hypha (sh) is indicated in B Microkamienskia perpusilla C cluster of spores formed in the growth substrate of a single-species culture; swl 1 and 2 and spore subtending hypha (sh) are indicated D cluster of spores produced inside a spore of Racocetra species extracted from a trap culture; swl 1 and 2 are indicated A, B, C spores in PVLG D spores in PVLG + Melzer’s reagent A – D differential interference microscopy. Scale bars: 10 μm (A – D)." figureDoi="10.3897/mycokeys.112.136158.figure4" httpUri="https://binary.pensoft.net/fig/1229338">4 A, B</figureCitation>
|
||||
</paragraph>
|
||||
</subSubSection>
|
||||
<subSubSection id="SECID0EOOBG" type="material">
|
||||
<paragraph id="137113E233E196A0EA69FBCD9F9300B8">
|
||||
<heading id="C3F1CDE14E521ED00B9B6233829CFBC1" reason="title">Specimens examined.</heading>
|
||||
</paragraph>
|
||||
<paragraph id="D44CFC6B829758D9844A82908DA4D2C5">
|
||||
<collectingCountry id="05C4F16DCB1339FDCCD3E0A23F3B6DD2" name="Poland">Poland</collectingCountry>
|
||||
. Pomeranian Province, spores from a trap pot culture inoculated with rhizosphere soil and root fragments of
|
||||
<taxonomicName id="76AA07D2647A02D255B237E8366A7FCE" class="Liliopsida" family="Poaceae" genus="Ammophila" kingdom="Plantae" order="Poales" phylum="Tracheophyta" rank="species" species="arenaria">
|
||||
<emphasis id="36F7C6EC16E9880969E4A00F14E37CAD" italics="true">Ammophila arenaria</emphasis>
|
||||
</taxonomicName>
|
||||
from the Hel Peninsula maritime dunes (
|
||||
<named-content content-type="dwc:verbatimCoordinates" id="NCID0ECPBG" specific-use="{"type":"Point","coordinates":[18.808056,54.611667]}">
|
||||
<geoCoordinate id="209D2348C2B6A58090E2D2B0FDF70A12" degrees="54" direction="north" minutes="36" orientation="latitude" precision="15" seconds="42" value="54.611664">54 ° 36 ' 42 " N</geoCoordinate>
|
||||
,
|
||||
<geoCoordinate id="29B536F95FC6C44A450A974DFEF7AA9D" degrees="18" direction="east" minutes="48" orientation="longitude" precision="15" seconds="29" value="18.808054">18 ° 48 ' 29 " E</geoCoordinate>
|
||||
</named-content>
|
||||
),
|
||||
<date id="188718EE507F29876F3D70B4E6924FCE" value="2021-08-05">5 Aug 2021</date>
|
||||
,
|
||||
<collectionCode id="682075124837FB64E66101B7327F6A21" country="France" lsid="urn:lsid:biocol.org:col:15763" name="Museum National d' Histoire Naturelle, Paris (MNHN) - Vascular Plants" type="Herbarium">P</collectionCode>
|
||||
. Niezgoda (slides with spores nos. 3988–3990,
|
||||
<collectionCode id="3F775E9064995A6AB8B57E63DE3F7E07">LPPDSE</collectionCode>
|
||||
).
|
||||
<collectingCountry id="18293AA77E8133A46FF056C8C4C77643" name="Switzerland">Switzerland</collectingCountry>
|
||||
. Two slides with
|
||||
<typeStatus id="4D750591B4890ABC76141827F8E60064" type="holotype">holotype</typeStatus>
|
||||
sporocarps and spores deposited under the accession number
|
||||
<collectionCode id="077ADAA4198390B771197872E16B1A83" country="Switzerland" name="Universität Zürich" type="Herbarium">Z</collectionCode>
|
||||
+
|
||||
<collectionCode id="BE39F901260C0C08A0BF45E77A22FF2F" country="Switzerland" lsid="urn:lsid:biocol.org:col:15611" name="Eidgenössische Technische Hochschule Zürich" type="Herbarium">ZT</collectionCode>
|
||||
Myc 52538.
|
||||
<collectingCountry id="72C2D5420DAB20EB8C27627C135F086B" name="Brazil">Brazil</collectingCountry>
|
||||
. Thirty-three isotypic spores deposited under the
|
||||
<collectionCode id="E5BBF07BF1758E907C73A00BA53C3449" country="Japan" httpUri="http://grbio.org/cool/tt3t-t0t3" name="University of the Ryukyus" type="">URM</collectionCode>
|
||||
85721 accession number.
|
||||
</paragraph>
|
||||
</subSubSection>
|
||||
<subSubSection id="SECID0EHPBG" type="diagnosis">
|
||||
<paragraph id="4C8618A627CF9CDC39C4CB21A7705B5D">
|
||||
<heading id="EF6701D7849DBC6A839D8ADC424B7242" reason="title">Diagnosis.</heading>
|
||||
</paragraph>
|
||||
<paragraph id="81BBF9D85F0F18E03DAE72681D1E4E28">
|
||||
Differs from other genera of
|
||||
<taxonomicName id="29E20DCBC5763508AEFB552EBB251636" family="Dominikiaceae" rank="family">Dominikiaceae</taxonomicName>
|
||||
in (i) having subtending hyphae with a strong bend and locally very narrow lumen due to large thickening present on the inner surfaces of the subtending hyphal walls and (ii) nucleotide composition of sequences of the 45
|
||||
<collectionCode id="FED0C2EB0933C57E17D75D6EE7CFCD1F" country="Sweden" lsid="urn:lsid:biocol.org:col:15668" name="Department of Botany, Swedish Museum of Natural History" type="Herbarium">S</collectionCode>
|
||||
nuc rDNA region (see “ Discussion ” for details).
|
||||
</paragraph>
|
||||
</subSubSection>
|
||||
<subSubSection id="SECID0ESPBG" type="description">
|
||||
<paragraph id="DDD0D1ABBEBB7065A5F331EEDEB00ADC">
|
||||
<heading id="9BDFEBFD7A4E5DAFEB3957DA5DB93172" reason="title">Description.</heading>
|
||||
</paragraph>
|
||||
<paragraph id="59872BB9D37B4D8CBD337EB6CAE9230C">
|
||||
Forming loose to compact hypogeous clusters with 3–33 randomly distributed spores (Fig.
|
||||
<figureCitation id="9E83E995027B81D5B6542E094DF250E7" captionStart="Figure 3" captionStartId="F3" captionText="Figure 3. Macrodominikia compressa A cluster of spores (sp) with subtending hypha (sh) B spore wall layers (swl) 1–4 and subtending hyphal wall layers (shwl) 1–3; shwl 4 is not visible C spore wall layers (swl) 1–4 D – H spore wall layers (swl) 1–4 continuous with subtending hyphal wall layers (shwl) 1–4; septum (s) formed by shwl 4 is indicated A spores in PVLG B – H spores in PVLG + Melzer’s reagent A – H differential interference microscopy. Scale bars: 20 μm (A); 10 μm (B – H)." figureDoi="10.3897/mycokeys.112.136158.figure3" httpUri="https://binary.pensoft.net/fig/1229337">3 A</figureCitation>
|
||||
), and spores singly in the soil. Spores glomoid, arising blastically at tips of subtending hyphae (Figs
|
||||
<figureCitation id="1BA19FDEB93CDEBC4E08DDEEB1C9CC65" captionStart="Figure 3" captionStartId="F3" captionText="Figure 3. Macrodominikia compressa A cluster of spores (sp) with subtending hypha (sh) B spore wall layers (swl) 1–4 and subtending hyphal wall layers (shwl) 1–3; shwl 4 is not visible C spore wall layers (swl) 1–4 D – H spore wall layers (swl) 1–4 continuous with subtending hyphal wall layers (shwl) 1–4; septum (s) formed by shwl 4 is indicated A spores in PVLG B – H spores in PVLG + Melzer’s reagent A – H differential interference microscopy. Scale bars: 20 μm (A); 10 μm (B – H)." figureDoi="10.3897/mycokeys.112.136158.figure3" httpUri="https://binary.pensoft.net/fig/1229337">3 B, D – H</figureCitation>
|
||||
,
|
||||
<figureCitation id="F77C46527DAF6C14CB1B6C10F8B0B496" captionStart="Figure 4" captionStartId="F4" captionText="Figure 4. Macrodominikia compressa A remnants (r) of spore wall layer (swl) 1 and spore wall layers (swl) 2–4; spore subtending hypha (sh) is indicated in B Microkamienskia perpusilla C cluster of spores formed in the growth substrate of a single-species culture; swl 1 and 2 and spore subtending hypha (sh) are indicated D cluster of spores produced inside a spore of Racocetra species extracted from a trap culture; swl 1 and 2 are indicated A, B, C spores in PVLG D spores in PVLG + Melzer’s reagent A – D differential interference microscopy. Scale bars: 10 μm (A – D)." figureDoi="10.3897/mycokeys.112.136158.figure4" httpUri="https://binary.pensoft.net/fig/1229338">4 B</figureCitation>
|
||||
) either branched from a parent hypha continuous with a mycorrhizal extraradical hypha (spores in clusters), or directly continuous with a mycorrhizal extraradical hypha (single spores).
|
||||
<emphasis id="624C64FD84DDAAF76EE4518D287509DC" bold="true" italics="true">Spores</emphasis>
|
||||
pale yellow (4
|
||||
<collectionCode id="B5E954139B4C269FACEEC63DBE39C1FE" country="USA" lsid="urn:lsid:biocol.org:col:15406" name="Harvard University - Arnold Arboretum" type="Herbarium">A</collectionCode>
|
||||
3) to brownish yellow (5
|
||||
<collectionCode id="347B35BD76981907703B731D2F285A9B" country="Denmark" name="University of Copenhagen" type="Herbarium">C</collectionCode>
|
||||
8); globose to subglobose; (19 –) 62 (– 100) µm diam; rarely ovoid to oblong 22–81 × 66–134, to irregular; with one subtending hypha (Figs
|
||||
<figureCitation id="74CBD98F7A87026A02C72B23DD4ADA79" captionStart="Figure 3" captionStartId="F3" captionText="Figure 3. Macrodominikia compressa A cluster of spores (sp) with subtending hypha (sh) B spore wall layers (swl) 1–4 and subtending hyphal wall layers (shwl) 1–3; shwl 4 is not visible C spore wall layers (swl) 1–4 D – H spore wall layers (swl) 1–4 continuous with subtending hyphal wall layers (shwl) 1–4; septum (s) formed by shwl 4 is indicated A spores in PVLG B – H spores in PVLG + Melzer’s reagent A – H differential interference microscopy. Scale bars: 20 μm (A); 10 μm (B – H)." figureDoi="10.3897/mycokeys.112.136158.figure3" httpUri="https://binary.pensoft.net/fig/1229337">3 A – H</figureCitation>
|
||||
,
|
||||
<figureCitation id="E50DDCB004ECC8575C5A751AFBDA001C" captionStart="Figure 4" captionStartId="F4" captionText="Figure 4. Macrodominikia compressa A remnants (r) of spore wall layer (swl) 1 and spore wall layers (swl) 2–4; spore subtending hypha (sh) is indicated in B Microkamienskia perpusilla C cluster of spores formed in the growth substrate of a single-species culture; swl 1 and 2 and spore subtending hypha (sh) are indicated D cluster of spores produced inside a spore of Racocetra species extracted from a trap culture; swl 1 and 2 are indicated A, B, C spores in PVLG D spores in PVLG + Melzer’s reagent A – D differential interference microscopy. Scale bars: 10 μm (A – D)." figureDoi="10.3897/mycokeys.112.136158.figure4" httpUri="https://binary.pensoft.net/fig/1229338">4 A, B</figureCitation>
|
||||
).
|
||||
<emphasis id="EA92E0613DD76143EC7068676CD05197" bold="true" italics="true">Spore wall</emphasis>
|
||||
composed of four layers (layers 1–4; Figs
|
||||
<figureCitation id="1E330B93AB076DFA33CC4FCFF618C852" captionStart="Figure 3" captionStartId="F3" captionText="Figure 3. Macrodominikia compressa A cluster of spores (sp) with subtending hypha (sh) B spore wall layers (swl) 1–4 and subtending hyphal wall layers (shwl) 1–3; shwl 4 is not visible C spore wall layers (swl) 1–4 D – H spore wall layers (swl) 1–4 continuous with subtending hyphal wall layers (shwl) 1–4; septum (s) formed by shwl 4 is indicated A spores in PVLG B – H spores in PVLG + Melzer’s reagent A – H differential interference microscopy. Scale bars: 20 μm (A); 10 μm (B – H)." figureDoi="10.3897/mycokeys.112.136158.figure3" httpUri="https://binary.pensoft.net/fig/1229337">3 B – H</figureCitation>
|
||||
,
|
||||
<figureCitation id="5247554912D0783FC6F3BE01566CF356" captionStart="Figure 4" captionStartId="F4" captionText="Figure 4. Macrodominikia compressa A remnants (r) of spore wall layer (swl) 1 and spore wall layers (swl) 2–4; spore subtending hypha (sh) is indicated in B Microkamienskia perpusilla C cluster of spores formed in the growth substrate of a single-species culture; swl 1 and 2 and spore subtending hypha (sh) are indicated D cluster of spores produced inside a spore of Racocetra species extracted from a trap culture; swl 1 and 2 are indicated A, B, C spores in PVLG D spores in PVLG + Melzer’s reagent A – D differential interference microscopy. Scale bars: 10 μm (A – D)." figureDoi="10.3897/mycokeys.112.136158.figure4" httpUri="https://binary.pensoft.net/fig/1229338">4 A, B</figureCitation>
|
||||
). Layer 1, forming the spore surface, evanescent, flexible, hyaline, (0.6 –) 0.9 (– 1.4) µm thick, usually slightly swelling in
|
||||
<abbrev id="ABBRID0E1QBG" xlink_title="polyvinyl alcohol/lactic acid/glycerol">
|
||||
<collectionCode id="CC32F2F055B04AE22D410B11BB35BE2D">PVLG</collectionCode>
|
||||
</abbrev>
|
||||
and then easier to detect (Fig.
|
||||
<figureCitation id="BA551BDF15B8A30522ACD025D9D4D616" captionStart="Figure 3" captionStartId="F3" captionText="Figure 3. Macrodominikia compressa A cluster of spores (sp) with subtending hypha (sh) B spore wall layers (swl) 1–4 and subtending hyphal wall layers (shwl) 1–3; shwl 4 is not visible C spore wall layers (swl) 1–4 D – H spore wall layers (swl) 1–4 continuous with subtending hyphal wall layers (shwl) 1–4; septum (s) formed by shwl 4 is indicated A spores in PVLG B – H spores in PVLG + Melzer’s reagent A – H differential interference microscopy. Scale bars: 20 μm (A); 10 μm (B – H)." figureDoi="10.3897/mycokeys.112.136158.figure3" httpUri="https://binary.pensoft.net/fig/1229337">3 B – H</figureCitation>
|
||||
), occasionally strongly or completely sloughed off in aged spores (Fig.
|
||||
<figureCitation id="ECF5497D4A59C9249A7AED79309629AD" captionStart="Figure 4" captionStartId="F4" captionText="Figure 4. Macrodominikia compressa A remnants (r) of spore wall layer (swl) 1 and spore wall layers (swl) 2–4; spore subtending hypha (sh) is indicated in B Microkamienskia perpusilla C cluster of spores formed in the growth substrate of a single-species culture; swl 1 and 2 and spore subtending hypha (sh) are indicated D cluster of spores produced inside a spore of Racocetra species extracted from a trap culture; swl 1 and 2 are indicated A, B, C spores in PVLG D spores in PVLG + Melzer’s reagent A – D differential interference microscopy. Scale bars: 10 μm (A – D)." figureDoi="10.3897/mycokeys.112.136158.figure4" httpUri="https://binary.pensoft.net/fig/1229338">4 A, B</figureCitation>
|
||||
). Layer 2 uniform (without visible sublayers), permanent, flexible to semi-flexible, smooth, hyaline, (0.8 –) 1.2 (– 1.5) µm thick, tightly adherent to layer 3 (Figs
|
||||
<figureCitation id="6FBEB7786E26403A6DE26015DF2C7463" captionStart="Figure 3" captionStartId="F3" captionText="Figure 3. Macrodominikia compressa A cluster of spores (sp) with subtending hypha (sh) B spore wall layers (swl) 1–4 and subtending hyphal wall layers (shwl) 1–3; shwl 4 is not visible C spore wall layers (swl) 1–4 D – H spore wall layers (swl) 1–4 continuous with subtending hyphal wall layers (shwl) 1–4; septum (s) formed by shwl 4 is indicated A spores in PVLG B – H spores in PVLG + Melzer’s reagent A – H differential interference microscopy. Scale bars: 20 μm (A); 10 μm (B – H)." figureDoi="10.3897/mycokeys.112.136158.figure3" httpUri="https://binary.pensoft.net/fig/1229337">3 B – H</figureCitation>
|
||||
,
|
||||
<figureCitation id="A6B7424A951875729D6DF571E4505763" captionStart="Figure 4" captionStartId="F4" captionText="Figure 4. Macrodominikia compressa A remnants (r) of spore wall layer (swl) 1 and spore wall layers (swl) 2–4; spore subtending hypha (sh) is indicated in B Microkamienskia perpusilla C cluster of spores formed in the growth substrate of a single-species culture; swl 1 and 2 and spore subtending hypha (sh) are indicated D cluster of spores produced inside a spore of Racocetra species extracted from a trap culture; swl 1 and 2 are indicated A, B, C spores in PVLG D spores in PVLG + Melzer’s reagent A – D differential interference microscopy. Scale bars: 10 μm (A – D)." figureDoi="10.3897/mycokeys.112.136158.figure4" httpUri="https://binary.pensoft.net/fig/1229338">4 A, B</figureCitation>
|
||||
). Layer 3 laminate, semi-rigid, smooth, pale yellow (4
|
||||
<collectionCode id="87BF05DD8C12C40FB72FB9E98A64F6C7" country="USA" lsid="urn:lsid:biocol.org:col:15406" name="Harvard University - Arnold Arboretum" type="Herbarium">A</collectionCode>
|
||||
3) to brownish yellow (5
|
||||
<collectionCode id="042D49BD096FA4B99805DE2D40FBA5AA" country="Denmark" name="University of Copenhagen" type="Herbarium">C</collectionCode>
|
||||
8), (2.8 –) 3.8 (– 6.3) µm thick, consisting of very thin, <0.5 µm thick, sublayers tightly adherent to and not separating from each other even in vigorously crushed spores (Figs
|
||||
<figureCitation id="9971363C9A8F78F1EBEA405711AD4441" captionStart="Figure 3" captionStartId="F3" captionText="Figure 3. Macrodominikia compressa A cluster of spores (sp) with subtending hypha (sh) B spore wall layers (swl) 1–4 and subtending hyphal wall layers (shwl) 1–3; shwl 4 is not visible C spore wall layers (swl) 1–4 D – H spore wall layers (swl) 1–4 continuous with subtending hyphal wall layers (shwl) 1–4; septum (s) formed by shwl 4 is indicated A spores in PVLG B – H spores in PVLG + Melzer’s reagent A – H differential interference microscopy. Scale bars: 20 μm (A); 10 μm (B – H)." figureDoi="10.3897/mycokeys.112.136158.figure3" httpUri="https://binary.pensoft.net/fig/1229337">3 B – H</figureCitation>
|
||||
,
|
||||
<figureCitation id="60D0C75298028C2EE64930368A50F6F1" captionStart="Figure 4" captionStartId="F4" captionText="Figure 4. Macrodominikia compressa A remnants (r) of spore wall layer (swl) 1 and spore wall layers (swl) 2–4; spore subtending hypha (sh) is indicated in B Microkamienskia perpusilla C cluster of spores formed in the growth substrate of a single-species culture; swl 1 and 2 and spore subtending hypha (sh) are indicated D cluster of spores produced inside a spore of Racocetra species extracted from a trap culture; swl 1 and 2 are indicated A, B, C spores in PVLG D spores in PVLG + Melzer’s reagent A – D differential interference microscopy. Scale bars: 10 μm (A – D)." figureDoi="10.3897/mycokeys.112.136158.figure4" httpUri="https://binary.pensoft.net/fig/1229338">4 A, B</figureCitation>
|
||||
). Layer 4 uniform, flexible to semi-flexible, smooth, concolorous with or slightly lighter than layer 3, (0.8 –) 1.0 (– 1.3) µm thick, usually only slightly separating from the lower surface of layer 3 even in vigorously crushed spores (Figs
|
||||
<figureCitation id="4887A11756B6775AD6591F06264BD8A3" captionStart="Figure 3" captionStartId="F3" captionText="Figure 3. Macrodominikia compressa A cluster of spores (sp) with subtending hypha (sh) B spore wall layers (swl) 1–4 and subtending hyphal wall layers (shwl) 1–3; shwl 4 is not visible C spore wall layers (swl) 1–4 D – H spore wall layers (swl) 1–4 continuous with subtending hyphal wall layers (shwl) 1–4; septum (s) formed by shwl 4 is indicated A spores in PVLG B – H spores in PVLG + Melzer’s reagent A – H differential interference microscopy. Scale bars: 20 μm (A); 10 μm (B – H)." figureDoi="10.3897/mycokeys.112.136158.figure3" httpUri="https://binary.pensoft.net/fig/1229337">3 B – H</figureCitation>
|
||||
,
|
||||
<figureCitation id="B77DF7B9A49B9BD8DA1A91482C8FF991" captionStart="Figure 4" captionStartId="F4" captionText="Figure 4. Macrodominikia compressa A remnants (r) of spore wall layer (swl) 1 and spore wall layers (swl) 2–4; spore subtending hypha (sh) is indicated in B Microkamienskia perpusilla C cluster of spores formed in the growth substrate of a single-species culture; swl 1 and 2 and spore subtending hypha (sh) are indicated D cluster of spores produced inside a spore of Racocetra species extracted from a trap culture; swl 1 and 2 are indicated A, B, C spores in PVLG D spores in PVLG + Melzer’s reagent A – D differential interference microscopy. Scale bars: 10 μm (A – D)." figureDoi="10.3897/mycokeys.112.136158.figure4" httpUri="https://binary.pensoft.net/fig/1229338">4 A, B</figureCitation>
|
||||
). Layers 1–4 do not stain in Melzer’s reagent (Fig.
|
||||
<figureCitation id="CAAADB62B6B4EAAF9C52E374A9AB9ECB" captionStart="Figure 3" captionStartId="F3" captionText="Figure 3. Macrodominikia compressa A cluster of spores (sp) with subtending hypha (sh) B spore wall layers (swl) 1–4 and subtending hyphal wall layers (shwl) 1–3; shwl 4 is not visible C spore wall layers (swl) 1–4 D – H spore wall layers (swl) 1–4 continuous with subtending hyphal wall layers (shwl) 1–4; septum (s) formed by shwl 4 is indicated A spores in PVLG B – H spores in PVLG + Melzer’s reagent A – H differential interference microscopy. Scale bars: 20 μm (A); 10 μm (B – H)." figureDoi="10.3897/mycokeys.112.136158.figure3" httpUri="https://binary.pensoft.net/fig/1229337">3 B – H</figureCitation>
|
||||
).
|
||||
<emphasis id="E55C6D27FED7AAA41EE767548AC63E4F" bold="true" italics="true">Subtending hypha</emphasis>
|
||||
concolorous with or slightly lighter than the spores; straight or recurved, usually cylindrical to funnel-shaped, rarely slightly constricted at the spore base, (9.6 –) 14.2 (– 20.4) µm wide at the spore base (Figs
|
||||
<figureCitation id="471BF76CED8B8F077383CE00C0FBC4DD" captionStart="Figure 3" captionStartId="F3" captionText="Figure 3. Macrodominikia compressa A cluster of spores (sp) with subtending hypha (sh) B spore wall layers (swl) 1–4 and subtending hyphal wall layers (shwl) 1–3; shwl 4 is not visible C spore wall layers (swl) 1–4 D – H spore wall layers (swl) 1–4 continuous with subtending hyphal wall layers (shwl) 1–4; septum (s) formed by shwl 4 is indicated A spores in PVLG B – H spores in PVLG + Melzer’s reagent A – H differential interference microscopy. Scale bars: 20 μm (A); 10 μm (B – H)." figureDoi="10.3897/mycokeys.112.136158.figure3" httpUri="https://binary.pensoft.net/fig/1229337">3 A, B, D – H</figureCitation>
|
||||
,
|
||||
<figureCitation id="DF0ED983FEC33EC1C6D0AC4D4D014348" captionStart="Figure 4" captionStartId="F4" captionText="Figure 4. Macrodominikia compressa A remnants (r) of spore wall layer (swl) 1 and spore wall layers (swl) 2–4; spore subtending hypha (sh) is indicated in B Microkamienskia perpusilla C cluster of spores formed in the growth substrate of a single-species culture; swl 1 and 2 and spore subtending hypha (sh) are indicated D cluster of spores produced inside a spore of Racocetra species extracted from a trap culture; swl 1 and 2 are indicated A, B, C spores in PVLG D spores in PVLG + Melzer’s reagent A – D differential interference microscopy. Scale bars: 10 μm (A – D)." figureDoi="10.3897/mycokeys.112.136158.figure4" httpUri="https://binary.pensoft.net/fig/1229338">4 B</figureCitation>
|
||||
).
|
||||
<emphasis id="53D63EDF1E53D7B163448761396AF721" bold="true" italics="true">Walls of subtending hypha</emphasis>
|
||||
concolorous with or slightly lighter than the spores; usually with thickenings of unequal size, (5.8 –) 7.2 (– 11.0) µm vs. (4.0 –) 5.1 (– 6.0) µm thick, present on the inner, opposite surfaces of the walls, making the subtending hyphal lumen more or less curved and narrow when seen in a plan view (Fig.
|
||||
<figureCitation id="846DE24691C321E9837EF678810CADB7" captionStart="Figure 3" captionStartId="F3" captionText="Figure 3. Macrodominikia compressa A cluster of spores (sp) with subtending hypha (sh) B spore wall layers (swl) 1–4 and subtending hyphal wall layers (shwl) 1–3; shwl 4 is not visible C spore wall layers (swl) 1–4 D – H spore wall layers (swl) 1–4 continuous with subtending hyphal wall layers (shwl) 1–4; septum (s) formed by shwl 4 is indicated A spores in PVLG B – H spores in PVLG + Melzer’s reagent A – H differential interference microscopy. Scale bars: 20 μm (A); 10 μm (B – H)." figureDoi="10.3897/mycokeys.112.136158.figure3" httpUri="https://binary.pensoft.net/fig/1229337">3 A, D, E, H</figureCitation>
|
||||
); less often, both walls have the same or similar thickness, (4.0 –) 6.3 (– 8.1) µm (Fig.
|
||||
<figureCitation id="83A0F4EF5F607E6BDAC26819921986D0" captionStart="Figure 3" captionStartId="F3" captionText="Figure 3. Macrodominikia compressa A cluster of spores (sp) with subtending hypha (sh) B spore wall layers (swl) 1–4 and subtending hyphal wall layers (shwl) 1–3; shwl 4 is not visible C spore wall layers (swl) 1–4 D – H spore wall layers (swl) 1–4 continuous with subtending hyphal wall layers (shwl) 1–4; septum (s) formed by shwl 4 is indicated A spores in PVLG B – H spores in PVLG + Melzer’s reagent A – H differential interference microscopy. Scale bars: 20 μm (A); 10 μm (B – H)." figureDoi="10.3897/mycokeys.112.136158.figure3" httpUri="https://binary.pensoft.net/fig/1229337">3 G</figureCitation>
|
||||
); subtending hyphal walls composed of four layers continuous with spore wall layers 1–4 (Fig.
|
||||
<figureCitation id="8F64D9EAD0E6E984B3C2908AF6B2DEF6" captionStart="Figure 3" captionStartId="F3" captionText="Figure 3. Macrodominikia compressa A cluster of spores (sp) with subtending hypha (sh) B spore wall layers (swl) 1–4 and subtending hyphal wall layers (shwl) 1–3; shwl 4 is not visible C spore wall layers (swl) 1–4 D – H spore wall layers (swl) 1–4 continuous with subtending hyphal wall layers (shwl) 1–4; septum (s) formed by shwl 4 is indicated A spores in PVLG B – H spores in PVLG + Melzer’s reagent A – H differential interference microscopy. Scale bars: 20 μm (A); 10 μm (B – H)." figureDoi="10.3897/mycokeys.112.136158.figure3" httpUri="https://binary.pensoft.net/fig/1229337">3 B, D, E – H</figureCitation>
|
||||
).
|
||||
<emphasis id="93FD057B1C406BD97872FBBAD4D15C6A" bold="true" italics="true">Pore</emphasis>
|
||||
(1.0 –) 2.4 (– 7.0) µm diam, open (Fig.
|
||||
<figureCitation id="01170DE8348BA2EFBB9FE7743697E216" captionStart="Figure 3" captionStartId="F3" captionText="Figure 3. Macrodominikia compressa A cluster of spores (sp) with subtending hypha (sh) B spore wall layers (swl) 1–4 and subtending hyphal wall layers (shwl) 1–3; shwl 4 is not visible C spore wall layers (swl) 1–4 D – H spore wall layers (swl) 1–4 continuous with subtending hyphal wall layers (shwl) 1–4; septum (s) formed by shwl 4 is indicated A spores in PVLG B – H spores in PVLG + Melzer’s reagent A – H differential interference microscopy. Scale bars: 20 μm (A); 10 μm (B – H)." figureDoi="10.3897/mycokeys.112.136158.figure3" httpUri="https://binary.pensoft.net/fig/1229337">3 D, E</figureCitation>
|
||||
) or occluded by a curved septum continuous with spore wall layer 4; septum 0.6–1.0 µm thick, located at or up to 8.2 µm below the spore base (Fig.
|
||||
<figureCitation id="0F4A6FEA64E30F4E269BCFCEE5C84FD5" captionStart="Figure 3" captionStartId="F3" captionText="Figure 3. Macrodominikia compressa A cluster of spores (sp) with subtending hypha (sh) B spore wall layers (swl) 1–4 and subtending hyphal wall layers (shwl) 1–3; shwl 4 is not visible C spore wall layers (swl) 1–4 D – H spore wall layers (swl) 1–4 continuous with subtending hyphal wall layers (shwl) 1–4; septum (s) formed by shwl 4 is indicated A spores in PVLG B – H spores in PVLG + Melzer’s reagent A – H differential interference microscopy. Scale bars: 20 μm (A); 10 μm (B – H)." figureDoi="10.3897/mycokeys.112.136158.figure3" httpUri="https://binary.pensoft.net/fig/1229337">3 G, H</figureCitation>
|
||||
); subtending hyphal lumen rarely occluded by an additional septum located up to 22 µm below the spore base.
|
||||
<emphasis id="1AD6FD54E5C07DA0F3B973E8AA3D8F0D" bold="true" italics="true">Sterile hyphae</emphasis>
|
||||
hyaline, (1.8 –) 4.2 (– 5.6) µm wide.
|
||||
<emphasis id="BEE020EAE2B60098825C77E79356577E" bold="true" italics="true">Germination</emphasis>
|
||||
unknown.
|
||||
</paragraph>
|
||||
<caption id="508B40B41F1EE4295D9008C6321C555D" ID-DOI="10.3897/mycokeys.112.136158.figure3" ID-arpha="F56FD394-4063-5A86-AB06-6650D165D9CC" httpUri="https://binary.pensoft.net/fig/1229337" startId="F3">
|
||||
<paragraph id="E66A2CFF29D0F727F117CF12E45F7EC3">
|
||||
<label id="E913B11FE5593235AF843674362AC7E8">Figure 3.</label>
|
||||
</paragraph>
|
||||
<paragraph id="90E240EF7771745E78D8F40142EDC8BA">
|
||||
<taxonomicName id="DC335B0D1F654E84FED25BFFA0387883" genus="Macrodominikia" rank="species" species="compressa">
|
||||
<emphasis id="728C88DC316A468F3361288BB44B23F8" italics="true">Macrodominikia compressa</emphasis>
|
||||
</taxonomicName>
|
||||
<emphasis id="1629C6BA1045F8202FF65D008072F41E" bold="true">A</emphasis>
|
||||
cluster of spores (sp) with subtending hypha (sh)
|
||||
<emphasis id="99B7F9EC4C1EA2E49155F80F87CED10D" bold="true">B</emphasis>
|
||||
spore wall layers (swl) 1–4 and subtending hyphal wall layers (shwl) 1–3; shwl 4 is not visible
|
||||
<emphasis id="6CF4441ECCF61405F41EAEF3386BE6DC" bold="true">C</emphasis>
|
||||
spore wall layers (swl) 1–4
|
||||
<emphasis id="06A813F087257E496B230A2DD9D0531D" bold="true">D – H</emphasis>
|
||||
spore wall layers (swl) 1–4 continuous with subtending hyphal wall layers (shwl) 1–4; septum (s) formed by shwl 4 is indicated
|
||||
<emphasis id="532AA08A1BDFCCF2DF9220387AEFBF3C" bold="true">A</emphasis>
|
||||
spores in
|
||||
<abbrev id="ABBRID0EKUBG" xlink_title="polyvinyl alcohol/lactic acid/glycerol">PVLG</abbrev>
|
||||
<emphasis id="0BB5C13358BF7218867144E75803379C" bold="true">B – H</emphasis>
|
||||
spores in
|
||||
<abbrev id="ABBRID0EQUBG" xlink_title="polyvinyl alcohol/lactic acid/glycerol">PVLG</abbrev>
|
||||
+ Melzer’s reagent
|
||||
<emphasis id="5F520FA3F00BD6AADE05C4EC9CBBDA47" bold="true">A – H</emphasis>
|
||||
differential interference microscopy. Scale bars: 20 μm (
|
||||
<emphasis id="339C69180C483B0AC32335B6197B5B50" bold="true">A</emphasis>
|
||||
); 10 μm (
|
||||
<emphasis id="56E9FA7717B928F65242A69B4D2BD80A" bold="true">B – H</emphasis>
|
||||
).
|
||||
</paragraph>
|
||||
</caption>
|
||||
<caption id="99E36DA30053B9EAE8024D4E8847F72D" ID-DOI="10.3897/mycokeys.112.136158.figure4" ID-arpha="A4759AD4-FDCC-5C2E-8A2E-1B53DC14BCEA" httpUri="https://binary.pensoft.net/fig/1229338" startId="F4">
|
||||
<paragraph id="63468F77E5F32349DE8B14EB1D01F9EC">
|
||||
<label id="E0CB1F7806F9FE8534C7BA13EE07A989">Figure 4.</label>
|
||||
</paragraph>
|
||||
<paragraph id="716B398B38D2D9C993E1AE6DDDD148C9">
|
||||
<taxonomicName id="5914FC95C16D0177D61366A85111DEC0" genus="Macrodominikia" rank="species" species="compressa">
|
||||
<emphasis id="278AD3F9535CF8AB7854258B1D21A48E" italics="true">Macrodominikia compressa</emphasis>
|
||||
</taxonomicName>
|
||||
<emphasis id="346648DD497F553DA0CEDB9F9A2FE5C3" bold="true">A</emphasis>
|
||||
remnants (r) of spore wall layer (swl) 1 and spore wall layers (swl) 2–4; spore subtending hypha (sh) is indicated in
|
||||
<emphasis id="2D40BE7940713E1BA18B0ED730BAFD84" bold="true">B</emphasis>
|
||||
<taxonomicName id="C6C314937C7237E824A90D8CD6A00CB5" authorityName="Błaszkowski & Zubek & Milczarski & Malinowski & Niezgoda & Goto" authorityYear="2025" class="Glomeromycetes" family="Glomeraceae" genus="Microkamienskia" kingdom="Fungi" order="Glomerales" phylum="Glomeromycota" rank="species" species="perpusilla">
|
||||
<emphasis id="190BE1178A51BF00A3FF49F451469E99" italics="true">Microkamienskia perpusilla</emphasis>
|
||||
</taxonomicName>
|
||||
<emphasis id="CDD28C10052EF00FF3F86E74E0E9CCF2" bold="true">C</emphasis>
|
||||
cluster of spores formed in the growth substrate of a single-species culture; swl 1 and 2 and spore subtending hypha (sh) are indicated
|
||||
<emphasis id="D11436173470D3CB0D4AAC2FA439DA91" bold="true">D</emphasis>
|
||||
cluster of spores produced inside a spore of
|
||||
<taxonomicName id="9F695F816A1DB580108193DAF0D2F05F">
|
||||
<emphasis id="002AD4D2A4A42616E669D290EEDBFE44" italics="true">Racocetra</emphasis>
|
||||
species
|
||||
</taxonomicName>
|
||||
extracted from a trap culture; swl 1 and 2 are indicated
|
||||
<emphasis id="CD0426B00BCB520F277BD198712EFF40" bold="true">A, B, C</emphasis>
|
||||
spores in
|
||||
<abbrev id="ABBRID0EOWBG" xlink_title="polyvinyl alcohol/lactic acid/glycerol">PVLG</abbrev>
|
||||
<emphasis id="B9955331AF726ACC6D73EFFEDBBC3AB2" bold="true">D</emphasis>
|
||||
spores in
|
||||
<abbrev id="ABBRID0EUWBG" xlink_title="polyvinyl alcohol/lactic acid/glycerol">PVLG</abbrev>
|
||||
+ Melzer’s reagent
|
||||
<emphasis id="BEAA11EC1995ABA014470221C86592F1" bold="true">A – D</emphasis>
|
||||
differential interference microscopy. Scale bars: 10 μm (
|
||||
<emphasis id="A1E044C23E0C01B9C0DFD64AC8787AE2" bold="true">A – D</emphasis>
|
||||
).
|
||||
</paragraph>
|
||||
</caption>
|
||||
</subSubSection>
|
||||
<subSubSection id="SECID0EBXBG" type="ecology">
|
||||
<paragraph id="88A7A130FB485CCD3D3DD67B72689876">
|
||||
<heading id="F15C5DA5325A166CB863501B101BEF16" reason="title">Ecology and distribution.</heading>
|
||||
</paragraph>
|
||||
<paragraph id="9D2B56793B41983DD8B6017001A78208">
|
||||
Results from our studies conclude that in the field
|
||||
<taxonomicName id="E00D72D9989E01DF52F9CAD493612C6F" genus="Macrodominikia" rank="species" species="compressa">
|
||||
<emphasis id="5C37785AD93384BF5E59EDCA20E625B5" italics="true">M. compressa</emphasis>
|
||||
</taxonomicName>
|
||||
probably lived in arbuscular mycorrhizal symbiosis with roots of
|
||||
<taxonomicName id="79790A1A8C71BA383AD8757E445337C3" class="Liliopsida" family="Poaceae" genus="Ammophila" kingdom="Plantae" order="Poales" phylum="Tracheophyta" rank="species" species="arenaria">
|
||||
<emphasis id="B9C647EBB16344A61BDAD6F8C64BB277" italics="true">A. arenaria</emphasis>
|
||||
</taxonomicName>
|
||||
that colonized maritime dunes near Hel on the Hel Peninsula in northern
|
||||
<collectingCountry id="EC76E7CF14969D2F1F6769442661111E" name="Poland">Poland</collectingCountry>
|
||||
. However, no molecular analyses were performed to confirm this assumption. In a trap pot culture,
|
||||
<taxonomicName id="0D1C2933D8AEC7EF4E8244FB5574AEC0" genus="Macrodominikia" rank="species" species="compressa">
|
||||
<emphasis id="76A11ADB2CAA3E9C8B788CBBF3193992" italics="true">M. compressa</emphasis>
|
||||
</taxonomicName>
|
||||
produced abundant spore communities.
|
||||
<bibRefCitation id="BC2CFA03DF63EBC1666D41D48A98DE8D" DOI="10.1127/0029-5035/2014/0200" author="Oehl F & Sánchez-Castro I & Palenzuela J & Silva G & Sieverding E" etAl="et al." firstAuthor="Oehl" issue="3-4" journalOrPublisher="Nova Hedwigia" pagination="429-439" refId="B40" refString="Oehl F, Sánchez-Castro I, Palenzuela J, Silva G, Sieverding E (2014) Glomus compressum, a new arbuscular mycorrhizal fungus from different agro-ecosystems in Central Europe. Nova Hedwigia 99 (3–4): 429–439. https://doi.org/10.1127/0029-5035/2014/0200" title="Glomus compressum, a new arbuscular mycorrhizal fungus from different agro-ecosystems in Central Europe." volume="99" year="2014">Oehl et al. (2014)</bibRefCitation>
|
||||
found this species, as
|
||||
<taxonomicName id="1DE1FFB0D77F80AE37D43F115320FA3E" class="Glomeromycetes" family="Glomeraceae" genus="Glomus" kingdom="Fungi" order="Glomerales" phylum="Glomeromycota" rank="species" species="compressum">
|
||||
<emphasis id="1CAF2E71F8BA517F58D411D4A955F68D" italics="true">G. compressum</emphasis>
|
||||
</taxonomicName>
|
||||
, in ten locations in
|
||||
<collectingCountry id="2F7A45C6736D286D58A0B9E555DAAE4A" name="Switzerland">Switzerland</collectingCountry>
|
||||
, southwestern
|
||||
<collectingCountry id="973AA7774BDA99141A210B57BFEB7DB6" name="Germany">Germany</collectingCountry>
|
||||
, and northeastern
|
||||
<collectingCountry id="4145EEFCFF8C8934258CD84A37AE5964" name="France">France</collectingCountry>
|
||||
. It occurred in grasslands and crop rotation systems located at altitudes between
|
||||
<quantity id="FF876DAE0D17A4948321EB21358C4CAF" metricMagnitude="2" metricUnit="m" metricValue="8.675" metricValueMax="15.05" metricValueMin="2.3" unit="m" value="867.5" valueMax="1505.0" valueMin="230.0">230–1505 m</quantity>
|
||||
asl., with soils with a wide range of pH (5.7–8.0), organic carbon (
|
||||
<quantity id="173C6E182B597E70382DE99DD34D6912" metricMagnitude="-2" metricUnit="kg" metricValue="2.78" metricValueMax="4.58" metricValueMin="0.98" unit="g" value="27.799999999999997" valueMax="45.8" valueMin="9.8">9.8–45.8 g</quantity>
|
||||
kg
|
||||
<superScript id="3B0BF9E2755244B28D4EAD7777AF348E">- 1</superScript>
|
||||
), and different levels of plant available phosphate. There is no sequence in GenBank with> 96 % identity to the 45
|
||||
<collectionCode id="BA535BD4A11D89B33C56ECE316A4ECF7" country="Sweden" lsid="urn:lsid:biocol.org:col:15668" name="Department of Botany, Swedish Museum of Natural History" type="Herbarium">S</collectionCode>
|
||||
sequence
|
||||
<taxonomicName id="1CB77777444DC47FA5309F06A7AFC80F" genus="Macrodominikia" rank="species" species="compressa">
|
||||
<emphasis id="520611024EEFC750D013032A715D013C" italics="true">M. compressa</emphasis>
|
||||
</taxonomicName>
|
||||
, which would suggest the presence of this species in other regions of the world.
|
||||
</paragraph>
|
||||
</subSubSection>
|
||||
</treatment>
|
||||
</document>
|
184
data/93/56/9C/93569CDEC68350689D8C34906ADFADF8.xml
Normal file
184
data/93/56/9C/93569CDEC68350689D8C34906ADFADF8.xml
Normal file
|
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|
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<mods:affiliation id="4FEF3B7CC195833A0E498D3271309C2F">Department of Environmental Management, West Pomeranian University of Technology in Szczecin, Słowackiego 17, PL- 71434 Szczecin, Poland</mods:affiliation>
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<mods:namePart id="87D95B19C65B73D53C135F03DA3574DD">Zubek, Szymon</mods:namePart>
|
||||
<mods:nameIdentifier id="341AEA633C137D1FBF63CF6CDE09665F" type="ORCID">0000-0003-1338-9572</mods:nameIdentifier>
|
||||
<mods:affiliation id="9BC264AC81144CBA866B0E59DEAAD1A3">Institute of Botany, Faculty of Biology, Jagiellonian University, 30 - 387, Kraków, Poland</mods:affiliation>
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|
||||
<mods:nameIdentifier id="C11FA2BCF08EDFB31D5877A407C84243" type="ORCID">0000-0003-2622-8938</mods:nameIdentifier>
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<mods:affiliation id="5A9B8C68839494579C566DE4CEB40AE8">Department of Environmental Management, West Pomeranian University of Technology in Szczecin, Słowackiego 17, PL- 71434 Szczecin, Poland</mods:affiliation>
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||||
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|
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<mods:namePart id="CA3FD859DE4ABDF93C0F211669C90BBE">Malinowski, Ryszard</mods:namePart>
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<mods:nameIdentifier id="3594D10B51FC614012366EAA3712D7A9" type="ORCID">0000-0003-3413-2653</mods:nameIdentifier>
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<mods:affiliation id="F1A7A294C5024600EC28A54A769C405F">Department of Environmental Management, West Pomeranian University of Technology in Szczecin, Słowackiego 17, PL- 71434 Szczecin, Poland</mods:affiliation>
|
||||
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|
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|
||||
<mods:namePart id="A1F1E09EC88129595B0263AFD585752F">Niezgoda, Piotr</mods:namePart>
|
||||
<mods:nameIdentifier id="0F31B37D75E9EDE3CB522D442A29A3F8" type="ORCID">0000-0002-0560-6154</mods:nameIdentifier>
|
||||
<mods:affiliation id="80692BBFB1B0CCFBA0F5BE483DD9126A">Department of Environmental Management, West Pomeranian University of Technology in Szczecin, Słowackiego 17, PL- 71434 Szczecin, Poland</mods:affiliation>
|
||||
</mods:name>
|
||||
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||||
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|
||||
<mods:namePart id="25F699BFC367D187B025F842B6962265">Goto, Bruno Tomio</mods:namePart>
|
||||
<mods:nameIdentifier id="D63B1F19DE449A720A198F38543DFC98" type="ORCID">0000-0001-6157-4954</mods:nameIdentifier>
|
||||
<mods:affiliation id="94995C3F8AC115AA8BB6627BD67B894B">Department of Genetic, Plant Breeding & Biotechnology, West Pomeranian University of Technology in Szczecin, Słowackiego 17, PL- 71434 Szczecin, Poland</mods:affiliation>
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||||
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<mods:part id="555D01FFECEF70D840E4566A09F3ECCB">
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<mods:date id="A0A26B1A07CCBD4D032ECC04A32C6E35">2025</mods:date>
|
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<mods:number id="B761E15733E8417DDD0DDE7BC95DA831">2025-01-22</mods:number>
|
||||
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|
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<mods:detail id="E81B5514CB5839CF0411050264412A22" type="volume">
|
||||
<mods:number id="ADC702C1C0A8A9BA64D3544FFF9530AE">112</mods:number>
|
||||
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||||
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|
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<mods:classification id="ABA56F9A0EABE6035E870437B045BE5C">journal article</mods:classification>
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<mods:identifier id="4BE9EF6CEB9D4CC1D20275EEA6C3AC41" type="DOI">10.3897/mycokeys.112.136158</mods:identifier>
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|
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|
||||
<taxonomicName id="C0D0B023D5149B4A07E7405AD53A0685" authority="(Blaszk. & Kovacs) Corazon-Guivin, G. A. Silva & Oehl" authorityName="Corazon-Guivin, G. A. Silva & Oehl" baseAuthorityName="Blaszk. & Kovacs" class="Glomeromycetes" family="Kamienskiaceae" genus="Microkamienskia" kingdom="Fungi" order="Glomerales" phylum="Glomeromycota" rank="species" species="perpusilla">
|
||||
<emphasis id="868C7934F9115C3E0F39C29FB37B4D77" italics="true">Microkamienskia perpusilla</emphasis>
|
||||
(Błaszk. & Kovács) Corazon-Guivin, G. A. Silva & Oehl
|
||||
</taxonomicName>
|
||||
</paragraph>
|
||||
</subSubSection>
|
||||
<subSubSection id="1199850D5B17E029790472CADAE5C236" type="description">
|
||||
<paragraph id="97BFD9EAE4D32CCB02BB90F264FDEA53">
|
||||
<figureCitation id="04DD90B4E73E1F47522CA7E846B7401C" captionStart="Figure 4" captionStartId="F4" captionText="Figure 4. Macrodominikia compressa A remnants (r) of spore wall layer (swl) 1 and spore wall layers (swl) 2–4; spore subtending hypha (sh) is indicated in B Microkamienskia perpusilla C cluster of spores formed in the growth substrate of a single-species culture; swl 1 and 2 and spore subtending hypha (sh) are indicated D cluster of spores produced inside a spore of Racocetra species extracted from a trap culture; swl 1 and 2 are indicated A, B, C spores in PVLG D spores in PVLG + Melzer’s reagent A – D differential interference microscopy. Scale bars: 10 μm (A – D)." figureDoi="10.3897/mycokeys.112.136158.figure4" httpUri="https://binary.pensoft.net/fig/1229338">Fig. 4 C, D</figureCitation>
|
||||
</paragraph>
|
||||
</subSubSection>
|
||||
<subSubSection id="SECID0E31BG" type="Basionym">
|
||||
<paragraph id="F6699E579D68298C54C4FDB3DB9664B9">
|
||||
<heading id="B1CA06670BF8498637338F069AD1FF2E" reason="title">Basionym.</heading>
|
||||
</paragraph>
|
||||
<paragraph id="3F453798125E5D31AA797C9C813D7A6D">
|
||||
<taxonomicName id="20349D53DB55077A12E50FFD80270625" authority="Blaszk. & Kovacs." authorityName="Blaszk. & Kovacs." class="Glomeromycetes" family="Glomeraceae" genus="Glomus" kingdom="Fungi" order="Glomerales" phylum="Glomeromycota" rank="species" species="perpusillum">
|
||||
<emphasis id="A61398422F61AEDAC5C401AF73E96FD0" italics="true">Glomus perpusillum</emphasis>
|
||||
Błaszk. & Kovács.
|
||||
</taxonomicName>
|
||||
</paragraph>
|
||||
</subSubSection>
|
||||
<subSubSection id="SECID0EN2BG" type="Synonym">
|
||||
<paragraph id="4CA1E20AA61B7597BAAEFEE0B00D4627">
|
||||
<heading id="21F0BDD1BF26061CEFCC300B4E22AEB0" reason="title">Synonym.</heading>
|
||||
</paragraph>
|
||||
<paragraph id="2BEF9683F30736E9AD8D99A9A841E0C0">
|
||||
<taxonomicName id="77283DD42F52803BEDE7A430F0CA5FF4" authority="(Blaszk. & Kovacs) Blaszk., Chwat & Kovacs." authorityName="Blaszk., Chwat & Kovacs." baseAuthorityName="Blaszk. & Kovacs" class="Glomeromycetes" family="Glomeraceae" genus="Kamienskia" kingdom="Fungi" order="Glomerales" phylum="Glomeromycota" rank="species" species="perpusilla">
|
||||
<emphasis id="B9D5273E854ECE33EE926D12F6A2E389" italics="true">Kamienskia perpusilla</emphasis>
|
||||
(Błaszk. & Kovács) Błaszk., Chwat & Kovács.
|
||||
</taxonomicName>
|
||||
</paragraph>
|
||||
</subSubSection>
|
||||
<subSubSection id="SECID0E52BG" type="material">
|
||||
<paragraph id="84BB1CBF3028B101EFDB3C3AA76F1F29">
|
||||
<heading id="79925E95A055E7B210D0A8AE3B3057B7" reason="title">Specimens examined.</heading>
|
||||
</paragraph>
|
||||
<paragraph id="C2313F162E9F6ABFC4CFAEC3B247C170">
|
||||
<collectingCountry id="CCF7C2633FC29C841C406987A3FC1581" name="Poland">Poland</collectingCountry>
|
||||
. Pomeranian Province, spores from single-species cultures established from spores extracted from a trap pot culture inoculated with rhizosphere soil and root fragments of
|
||||
<taxonomicName id="3511C7E670F346BCD3E16DA43A7575B8" class="Liliopsida" family="Poaceae" genus="Ammophila" kingdom="Plantae" order="Poales" phylum="Tracheophyta" rank="species" species="arenaria">
|
||||
<emphasis id="B6DEC314F3BF6825473449D3D593A53E" italics="true">Ammophila arenaria</emphasis>
|
||||
</taxonomicName>
|
||||
from the Hel Peninsula maritime dunes (
|
||||
<named-content content-type="dwc:verbatimCoordinates" id="NCID0ES3BG" specific-use="{"type":"Point","coordinates":[18.419167,54.793056]}">
|
||||
<geoCoordinate id="A9246BE3D8C86CAD188998A551EC4ECA" degrees="54" direction="north" minutes="47" orientation="latitude" precision="15" seconds="35" value="54.793056">54 ° 47 ' 35 " N</geoCoordinate>
|
||||
, 18 ° 24 ' 69 " E
|
||||
</named-content>
|
||||
),
|
||||
<date id="39814198A3444EB3C7F697AFEE6435D8" value="2021-08-07">7 Aug 2021</date>
|
||||
,
|
||||
<collectionCode id="4FD7573D116ED7F4336FB1B0807D91AD" country="France" lsid="urn:lsid:biocol.org:col:15763" name="Museum National d' Histoire Naturelle, Paris (MNHN) - Vascular Plants" type="Herbarium">P</collectionCode>
|
||||
. Niezgoda (slides with spores nos. 3991–3996,
|
||||
<collectionCode id="FBC842D6B10AD9E2C96713196E2A9F46">LPPDSE</collectionCode>
|
||||
).
|
||||
</paragraph>
|
||||
</subSubSection>
|
||||
<subSubSection id="SECID0EX3BG" type="diagnosis">
|
||||
<paragraph id="71CA4D9CC2DBCB8285B3E6733B91923C">
|
||||
<heading id="933FD947976BE9783B744E0F4F7BD904" reason="title">Diagnosis.</heading>
|
||||
</paragraph>
|
||||
<paragraph id="98649B285CEBF083742453D512660536">
|
||||
Differs from
|
||||
<taxonomicName id="6E418A27FAFA282A8F659EDCD6467612" class="Glomeromycetes" family="Glomeraceae" genus="Microkamienskia" kingdom="Fungi" order="Glomerales" phylum="Glomeromycota" rank="species" species="peruviana">
|
||||
<emphasis id="8F237793D41C9C72E0B10850B1845F38" italics="true">Mk. peruviana</emphasis>
|
||||
</taxonomicName>
|
||||
, the phylogenetic sister (Fig.
|
||||
<figureCitation id="70DF2CB508AE559453FA1547AA9352B5" captionStart="Figure 1" captionStartId="F1" captionText="Figure 1. 50 % majority-rule consensus tree from the Bayesian analysis of sequences of 45 S nuc rDNA concatenated with rpb 1 sequences of Macrodominikia compressa (= Isolate 517), Delicatispora indica, Dominikia paraminuta, 33 other species of Glomerales, as well as Entrophospora claroidea serving as outgroup. The new genera and species are in bold font. The Bayesian posterior probabilities ≥ 0.90 and ML bootstrap values ≥ 50 % are shown near the branches, respectively. Bar indicates 0.1 expected change per site per branch." figureDoi="10.3897/mycokeys.112.136158.figure1" httpUri="https://binary.pensoft.net/fig/1229335">1</figureCitation>
|
||||
), in (i) morphometric features of the spore wall, the spore subtending hypha, and the pore connecting the subtending hyphal lumen with the spore interior, (ii) phenotypic properties of spore wall layer 1 and subtending hyphal wall layer 1, and (iii) nucleotide composition of sequences of the 45
|
||||
<collectionCode id="3689C00DE8AB7C12F1C4784962085D5A" country="Sweden" lsid="urn:lsid:biocol.org:col:15668" name="Department of Botany, Swedish Museum of Natural History" type="Herbarium">S</collectionCode>
|
||||
nuc rDNA region (
|
||||
<bibRefCitation id="A4802DC719A27BF24C3BB5977EFB3B4C" DOI="10.3852/08-087" author="Błaszkowski J & Kovács GM & Balázs T" issue="2" journalOrPublisher="Mycologia" pagination="245-253" refId="B6" refString="Błaszkowski J, Kovács GM, Balázs T (2009 a) Glomus perpusillum, a new arbuscular mycorrhizal fungus. Mycologia 101 (2): 245–253. https://doi.org/10.3852/08-087" title="Glomus perpusillum, a new arbuscular mycorrhizal fungus." volume="101">Błaszkowski et al. 2009 a</bibRefCitation>
|
||||
;
|
||||
<bibRefCitation id="3F7F62FB279B3E36C4A59A245530CD7A" DOI="10.1127/nova_hedwigia/2019/0551" author="Corazon-Guivin MA & Cerna-Mendoza A & Guerrero-Abad JC & Vallejos-Tapullima A & Carballar-Hernández S & da Silva GA & Oehl F" issue="3-4" journalOrPublisher="Nova Hedwigia" pagination="355-368" refId="B26" refString="Corazon-Guivin MA, Cerna-Mendoza A, Guerrero-Abad JC, Vallejos-Tapullima A, Carballar-Hernández S, da Silva GA, Oehl F (2019 b) Microkamienskia gen. nov. and Microkamienskia peruviana, a new arbuscular mycorrhizal fungus from Western Amazonia. Nova Hedwigia 109 (3–4): 355–368. https://doi.org/10.1127/nova_hedwigia/2019/0551" title="Microkamienskia gen. nov. and Microkamienskia peruviana, a new arbuscular mycorrhizal fungus from Western Amazonia." volume="109">Corazon-Guivin et al. 2019 b</bibRefCitation>
|
||||
; see “ Discussion ” for details).
|
||||
</paragraph>
|
||||
</subSubSection>
|
||||
<subSubSection id="SECID0EU4BG" type="notes">
|
||||
<paragraph id="957BE0ECCE99F7D3AB35367476739CD6">
|
||||
<heading id="83F0CF0D704AD53ED0A3DC678CE07D92" reason="title">Notes.</heading>
|
||||
</paragraph>
|
||||
<paragraph id="E468E31CDB4C7540C3744416E07D94AA">
|
||||
The morphological features of Isolate 524 (Fig.
|
||||
<figureCitation id="09747059FE8E26FA63C42B78DEF793AB" captionStart="Figure 4" captionStartId="F4" captionText="Figure 4. Macrodominikia compressa A remnants (r) of spore wall layer (swl) 1 and spore wall layers (swl) 2–4; spore subtending hypha (sh) is indicated in B Microkamienskia perpusilla C cluster of spores formed in the growth substrate of a single-species culture; swl 1 and 2 and spore subtending hypha (sh) are indicated D cluster of spores produced inside a spore of Racocetra species extracted from a trap culture; swl 1 and 2 are indicated A, B, C spores in PVLG D spores in PVLG + Melzer’s reagent A – D differential interference microscopy. Scale bars: 10 μm (A – D)." figureDoi="10.3897/mycokeys.112.136158.figure4" httpUri="https://binary.pensoft.net/fig/1229338">4 C, D</figureCitation>
|
||||
), here recognized to be conspecific with
|
||||
<taxonomicName id="7DE06ECD917175483FB61E2D07C8C6C4" class="Glomeromycetes" family="Glomeraceae" genus="Kamienskia" kingdom="Fungi" order="Glomerales" phylum="Glomeromycota" rank="species" species="perpusilla">
|
||||
<emphasis id="B1558F03235AB116CDE2FC0DF5BAAA6B" italics="true">Mk. perpusilla</emphasis>
|
||||
</taxonomicName>
|
||||
, were nearly identical to those originally defined for
|
||||
<taxonomicName id="FFBC94341966C80D624DEB6028EAC7CA" authority="(Blaszkowski et al. 2009 a)" baseAuthorityName="Blaszkowski" baseAuthorityYear="2009" class="Glomeromycetes" family="Glomeraceae" genus="Glomus" kingdom="Fungi" order="Glomerales" phylum="Glomeromycota" rank="species" species="perpusillum">
|
||||
<emphasis id="A8FFF3329D6E72AD6D8CB3E25D1768B5" italics="true">G. perpusillum</emphasis>
|
||||
(
|
||||
<bibRefCitation id="C423204A201FFBB432E257CFF443B4A0" DOI="10.3852/08-087" author="Błaszkowski J & Kovács GM & Balázs T" issue="2" journalOrPublisher="Mycologia" pagination="245-253" refId="B6" refString="Błaszkowski J, Kovács GM, Balázs T (2009 a) Glomus perpusillum, a new arbuscular mycorrhizal fungus. Mycologia 101 (2): 245–253. https://doi.org/10.3852/08-087" title="Glomus perpusillum, a new arbuscular mycorrhizal fungus." volume="101">Błaszkowski et al. 2009 a</bibRefCitation>
|
||||
)
|
||||
</taxonomicName>
|
||||
. The only discrepancy was the lack of plasticity and contractibility of spore wall layer
|
||||
<quantity id="FDE922C44B1ADB67EBAAB034FA690430" metricMagnitude="-2" metricUnit="m" metricValue="5.08" unit="in" value="2.0">2 in</quantity>
|
||||
Isolate 524, which were considered unique features of
|
||||
<taxonomicName id="32227557007B9DD448552B5AB0E86AF3" class="Glomeromycetes" family="Glomeraceae" genus="Glomus" kingdom="Fungi" order="Glomerales" phylum="Glomeromycota" rank="species" species="perpusillum">
|
||||
<emphasis id="B6B557FE1CB913B286CF4753DDE5BFBB" italics="true">G. perpusillum</emphasis>
|
||||
</taxonomicName>
|
||||
.
|
||||
</paragraph>
|
||||
</subSubSection>
|
||||
</treatment>
|
||||
</document>
|
167
data/DB/57/86/DB578615C5705B27BA46D29A15810478.xml
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167
data/DB/57/86/DB578615C5705B27BA46D29A15810478.xml
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<mods:end id="D37DE7C39B29F94CB433DE8DE21CC010">276</mods:end>
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</mods:part>
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<mods:classification id="2C56AD619BD486BF10A6AB9931634FCF">journal article</mods:classification>
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<mods:identifier id="7159A9EB8340F2F2F34055BFE3574D55" type="DOI">10.3897/mycokeys.112.136158</mods:identifier>
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</mods:mods>
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<treatment id="DB578615C5705B27BA46D29A15810478" ID-arpha="DB578615-C570-5B27-BA46-D29A15810478" ID-mycobank="856187" LSID="urn:lsid:plazi:treatment:DB578615C5705B27BA46D29A15810478" httpUri="http://treatment.plazi.org/id/DB578615C5705B27BA46D29A15810478">
|
||||
<subSubSection id="88B436100A340D18B7B8DC6FB982B84E" type="nomenclature">
|
||||
<paragraph id="E939063EAEBB95DEFF82774C8C62BEBA">
|
||||
<taxonomicName id="3AAF7AB74413543D0B962B72DD56FADA" authority="Blaszk., Niezgoda & B. T. Goto" authorityName="Blaszk., Niezgoda & B. T. Goto" authorityYear="2025" class="Glomeromycetes" family="Dominikiaceae" genus="Delicatispora" higherTaxonomySource="CoL,GBIF" kingdom="Fungi" order="Glomerales" phylum="Glomeromycota" rank="genus" status="gen. nov.">
|
||||
<emphasis id="E3AA7285A9033D3C983BDBD49B33B23E" italics="true">Delicatispora</emphasis>
|
||||
Błaszk., Niezgoda & B. T. Goto
|
||||
</taxonomicName>
|
||||
<taxonomicNameLabel id="47D8478DAFDD1424FA7D2E9196B53328" rank="genus">gen. nov.</taxonomicNameLabel>
|
||||
</paragraph>
|
||||
</subSubSection>
|
||||
<subSubSection id="645C2582A93D74686EB2D472DDCC8A2D" type="description">
|
||||
<paragraph id="52379C67ABFA977A19BA2C6173548F6D">
|
||||
<figureCitation id="52F7F90DEF0AC233595DE25B1878253C" captionStart="Figure 1" captionStartId="F1" captionText="Figure 1. 50 % majority-rule consensus tree from the Bayesian analysis of sequences of 45 S nuc rDNA concatenated with rpb 1 sequences of Macrodominikia compressa (= Isolate 517), Delicatispora indica, Dominikia paraminuta, 33 other species of Glomerales, as well as Entrophospora claroidea serving as outgroup. The new genera and species are in bold font. The Bayesian posterior probabilities ≥ 0.90 and ML bootstrap values ≥ 50 % are shown near the branches, respectively. Bar indicates 0.1 expected change per site per branch." figureDoi="10.3897/mycokeys.112.136158.figure1" httpUri="https://binary.pensoft.net/fig/1229335">Fig. 1</figureCitation>
|
||||
<xref id="9A6D8DC791701D37638CCF624A2EAE7A" ref-type="supplementary-material" rid="S1">, Suppl. material 1</xref>
|
||||
</paragraph>
|
||||
</subSubSection>
|
||||
<subSubSection id="SECID0EC1AG" type="etymology">
|
||||
<paragraph id="8ED3FF8A9DB4EE840CF03DE44B88F99E">
|
||||
<heading id="65E21EB9E26A70242641FE443D8EE582" reason="title">Etymology.</heading>
|
||||
</paragraph>
|
||||
<paragraph id="D21E4A0D35A41A310343C298BE49AEF2">
|
||||
Latin,
|
||||
<emphasis id="ECE9FEBF850D14AAEFFE00DC31094973" italics="true">Delicati</emphasis>
|
||||
and
|
||||
<emphasis id="104BBCCE808D66C62DF51B3CFDA904AD" italics="true">spora</emphasis>
|
||||
, referring to the delicate spores produced by the
|
||||
<typeStatus id="D0D17068A5004FC428803DBD7E3D95A5">type</typeStatus>
|
||||
species of the genus.
|
||||
</paragraph>
|
||||
</subSubSection>
|
||||
<subSubSection id="SECID0EM1AG" type="type genus">
|
||||
<paragraph id="CE317182CF862097B0CABDACF5F454EF">
|
||||
<heading id="E4AE05F1618E6BC6C00DCE2A7C2A740A" reason="title">
|
||||
<typeStatus id="CA5CC22350DCF41190768BA99E72BABC">Type</typeStatus>
|
||||
genus.
|
||||
</heading>
|
||||
</paragraph>
|
||||
<paragraph id="69ED3EF422200BA3F9E43DFB4B911E78">
|
||||
<taxonomicName id="519777FE12918D447E17B0391C56E788" authority="(Blaszk., Wubet & Harikumar)" authorityName="Blaszk., Niezgoda & B. T. Goto" authorityYear="2025" baseAuthorityName="Błaszkowski & Zubek & Milczarski & Malinowski & Niezgoda & Goto" baseAuthorityYear="2025" class="Glomeromycetes" family="Entrophosporaceae" genus="Delicatispora" higherTaxonomySource="CoL,GBIF" kingdom="Fungi" order="Entrophosporales" phylum="Glomeromycota" rank="species" species="indica">
|
||||
<emphasis id="7BF86A51E906688BC3CCDB09C9CCDBA9" italics="true">Delicatispora indica</emphasis>
|
||||
(Błaszk., Wubet & Harikumar)
|
||||
</taxonomicName>
|
||||
, Błaszk., Niezgoda & B.
|
||||
<collectionCode id="81D884BDDF47580CCE55DA590EA2486C" name="Tavera, Department of Geology and Geophysics">T</collectionCode>
|
||||
. Goto,
|
||||
<taxonomicNameLabel id="4FDEFD6463A7C742EB6F1ECE10551040" rank="species">comb. nov.</taxonomicNameLabel>
|
||||
</paragraph>
|
||||
</subSubSection>
|
||||
<subSubSection id="SECID0E41AG" type="Basionym">
|
||||
<paragraph id="655969ADCCD911E3E6077ABFEBA152C4">
|
||||
<heading id="52E11F4FE55AC61CCFEE8E1289BD8B73" reason="title">Basionym.</heading>
|
||||
</paragraph>
|
||||
<paragraph id="E03C852E5A406F38F11FC04CFEDA457C">
|
||||
<taxonomicName id="8F51A764DB196EF1C9F4E5DE6A88370B" authority="Blaszk., Wubet & Harikumar." authorityName="Blaszk., Wubet & Harikumar." class="Glomeromycetes" family="Glomeraceae" genus="Glomus" kingdom="Fungi" order="Glomerales" phylum="Glomeromycota" rank="species" species="indicum">
|
||||
<emphasis id="151914D81CA426FC8861B5E358885458" italics="true">Glomus indicum</emphasis>
|
||||
Błaszk., Wubet & Harikumar.
|
||||
</taxonomicName>
|
||||
</paragraph>
|
||||
</subSubSection>
|
||||
<subSubSection id="SECID0EO2AG" type="Synonym">
|
||||
<paragraph id="21AE373C72E60248F95603BCC40F0620">
|
||||
<heading id="14489249F1134B573376C0823C55B7A3" reason="title">Synonym.</heading>
|
||||
</paragraph>
|
||||
<paragraph id="9380E574383CF4AF58CAE4FCFBB81E8A">
|
||||
<taxonomicName id="D301A890D20277CD8B99452F5EF2969F" authority="(Blaszk., Wubet & Harikumar) Blaszk., Chwat & Kovacs." authorityName="Blaszk., Chwat & Kovacs." baseAuthorityName="Blaszk., Wubet & Harikumar" class="Glomeromycetes" family="Glomeraceae" genus="Dominikia" kingdom="Fungi" order="Glomerales" phylum="Glomeromycota" rank="species" species="indica">
|
||||
<emphasis id="A2B17C001B88707BE3C6807351E49437" italics="true">Dominikia indica</emphasis>
|
||||
(Błaszk., Wubet & Harikumar) Błaszk., Chwat & Kovács.
|
||||
</taxonomicName>
|
||||
</paragraph>
|
||||
</subSubSection>
|
||||
<subSubSection id="SECID0E62AG" type="diagnosis">
|
||||
<paragraph id="D28DC167D761D7B5F2912754C00F667C">
|
||||
<heading id="2175D52A5D2D6690F40D65F4998F5B07" reason="title">Diagnosis.</heading>
|
||||
</paragraph>
|
||||
<paragraph id="8C7B833F6224E9F88453D24827EF9621">
|
||||
Differs from other genera of
|
||||
<taxonomicName id="8DD607EF43EA7A399F7FB208B782883C" class="Glomeromycetes" kingdom="Fungi" order="Glomerales" phylum="Glomeromycota" rank="order">Glomerales</taxonomicName>
|
||||
in nucleotide composition of sequences of the 45 S nuc rDNA region (see “ Discussion ” for details).
|
||||
</paragraph>
|
||||
</subSubSection>
|
||||
<subSubSection id="SECID0EK3AG" type="description">
|
||||
<paragraph id="05CA7EB067500E978FF798CB72125638">
|
||||
<heading id="8AD1D3F55BCDE4F96DAA44477AEDB080" reason="title">Genus description.</heading>
|
||||
</paragraph>
|
||||
<paragraph id="FC178B8571B5001956570AEC3EE327CC">
|
||||
As that in
|
||||
<bibRefCitation id="39476083953EA354C0E9904F1A713D93" DOI="10.1139/B09-104" author="Błaszkowski J & Wubet T & Harikumar VS & Ryszka P & Buscot F" issue="2" journalOrPublisher="Botany" pagination="132-143" refId="B9" refString="Błaszkowski J, Wubet T, Harikumar VS, Ryszka P, Buscot F (2010 b) Glomus indicum, a new arbuscular mycorrhizal fungus. Botany 88 (2): 132–143. https://doi.org/10.1139/B09-104" title="Glomus indicum, a new arbuscular mycorrhizal fungus." volume="88">Błaszkowski et al. (2010 b</bibRefCitation>
|
||||
).
|
||||
</paragraph>
|
||||
</subSubSection>
|
||||
</treatment>
|
||||
</document>
|
290
data/DE/6C/09/DE6C09F5C5D658FCB1906F6B7F7D5A93.xml
Normal file
290
data/DE/6C/09/DE6C09F5C5D658FCB1906F6B7F7D5A93.xml
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<mods:affiliation id="ED2730DED55FBD050D74BF19B96A1128">Department of Environmental Management, West Pomeranian University of Technology in Szczecin, Słowackiego 17, PL- 71434 Szczecin, Poland</mods:affiliation>
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<mods:affiliation id="FCB7F45749023757CB5A7B07E44CAC8F">Department of Environmental Management, West Pomeranian University of Technology in Szczecin, Słowackiego 17, PL- 71434 Szczecin, Poland</mods:affiliation>
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<mods:namePart id="351E53C9EF89A6C415BD5431303E6781">Niezgoda, Piotr</mods:namePart>
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<mods:affiliation id="FAA59142A53683888C6BF9395BE0D7BB">Department of Environmental Management, West Pomeranian University of Technology in Szczecin, Słowackiego 17, PL- 71434 Szczecin, Poland</mods:affiliation>
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<mods:number id="7D4850107CE641D467592215AFDA0A44">112</mods:number>
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<mods:identifier id="58BFD88136FCB51876ADC18143054ECE" type="DOI">10.3897/mycokeys.112.136158</mods:identifier>
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<treatment id="DE6C09F5C5D658FCB1906F6B7F7D5A93" ID-arpha="DE6C09F5-C5D6-58FC-B190-6F6B7F7D5A93" ID-mycobank="856191" LSID="urn:lsid:plazi:treatment:DE6C09F5C5D658FCB1906F6B7F7D5A93" httpUri="http://treatment.plazi.org/id/DE6C09F5C5D658FCB1906F6B7F7D5A93">
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<subSubSection id="1CC48AD64F29ADBC68EB123C7E19CD81" type="nomenclature">
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<paragraph id="CC6D89381FA8E748EE6DF4D970518ADD">
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||||
<taxonomicName id="D2DBD70FC4321C5CAFB578DC360655DE" authority="Blaszk., Niezgoda & B. T. Goto" authorityName="Blaszk., Niezgoda & B. T. Goto" authorityYear="2025" class="Glomeromycetes" family="Dominikiaceae" genus="Dominikia" kingdom="Fungi" order="Glomerales" phylum="Glomeromycota" rank="species" species="paraminuta" status="sp. nov.">
|
||||
<emphasis id="D20FC7CDD0B9E9D77EDAA678FD5C5DFB" italics="true">Dominikia paraminuta</emphasis>
|
||||
Błaszk., Niezgoda & B. T. Goto
|
||||
</taxonomicName>
|
||||
<taxonomicNameLabel id="D91555EDC8089B0BC4DD55874187CF5A" rank="species">sp. nov.</taxonomicNameLabel>
|
||||
</paragraph>
|
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</subSubSection>
|
||||
<subSubSection id="B2954F0915F02A3B8BAE0E9940CE8819" type="description">
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<paragraph id="FAF7578F5D3EC47EB4EF325F4FFED6A8">
|
||||
<figureCitation id="DA1F214822616A599E9D935993697596" captionStart="Figure 2" captionStartId="F2" captionText="Figure 2. Dominikia paraminuta A – C cluster of spores (sp) with subtending hypha (sh), and sterile hyphae (sth) D – G spore wall layers (swl) 1–3 continuous with subtending hyphal wall layers (shwl) 1–3; septum (s) connecting the inner surfaces of shwl 2 is indicated in G, H arbuscule (a), vesicle (v), and coiled hyphae (c) in mycorrhizal root of Plantago lanceolata stained in 0.1 % Trypan blue C, D, H spores and mycorrhizal structures in PVLG E, F, G spores in PVLG + Melzer’s reagent A, B scanning electron microscopy C – H differential interference microscopy. Scale bars: 20 μm (A); 20 μm (B); 10 μm (C – H)." figureDoi="10.3897/mycokeys.112.136158.figure2" httpUri="https://binary.pensoft.net/fig/1229336">Fig. 2 A – H</figureCitation>
|
||||
</paragraph>
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||||
</subSubSection>
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<subSubSection id="SECID0EJEBG" type="material">
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||||
<paragraph id="81A3AAF58774EB01F6736CF18E5C4882">
|
||||
<heading id="D78EE29469DE087DE598FC7F53987BBB" reason="title">Specimens examined.</heading>
|
||||
</paragraph>
|
||||
<paragraph id="9E4A7F93E35878C6FC7A5029A5C93BC3">
|
||||
<collectingCountry id="1A89E8C4A87C88465DF3F57A2F37B06E" name="Poland">Poland</collectingCountry>
|
||||
. Pomeranian Province, spores from single-species cultures established from spores extracted from trap pot cultures inoculated with rhizosphere soil and root fragments of
|
||||
<taxonomicName id="CD4FE886F6E8CD4AE2386AFFF9145500" class="Liliopsida" family="Poaceae" genus="Ammophila" kingdom="Plantae" order="Poales" phylum="Tracheophyta" rank="species" species="arenaria">
|
||||
<emphasis id="462A5F7D4898D8A7607C5119D5EA8C6A" italics="true">Ammophila arenaria</emphasis>
|
||||
</taxonomicName>
|
||||
from the Hel Peninsula maritime dunes (
|
||||
<named-content content-type="dwc:verbatimCoordinates" id="NCID0E4EBG" specific-use="{"type":"Point","coordinates":[18.510556,54.758611]}">
|
||||
<geoCoordinate id="1B2422F9214C8AF5D029735F17B88EA1" degrees="54" direction="north" minutes="45" orientation="latitude" precision="15" seconds="31" value="54.75861">54 ° 45 ' 31 " N</geoCoordinate>
|
||||
,
|
||||
<geoCoordinate id="FB738EDCAB0F029A68BE083438985AF7" degrees="18" direction="east" minutes="30" orientation="longitude" precision="15" seconds="38" value="18.510555">18 ° 30 ' 38 " E</geoCoordinate>
|
||||
</named-content>
|
||||
and
|
||||
<named-content content-type="dwc:verbatimCoordinates" id="NCID0EFFBG" specific-use="{"type":"Point","coordinates":[18.676667,54.699444]}">
|
||||
<geoCoordinate id="6264836B38BEF7032701D82AF28045C4" degrees="54" direction="north" minutes="41" orientation="latitude" precision="15" seconds="58" value="54.699444">54 ° 41 ' 58 " N</geoCoordinate>
|
||||
,
|
||||
<geoCoordinate id="B3E739BED97ACD897C12AE6037D54FE1" degrees="18" direction="east" minutes="40" orientation="longitude" precision="15" seconds="36" value="18.676666">18 ° 40 ' 36 " E</geoCoordinate>
|
||||
</named-content>
|
||||
),
|
||||
<date id="5FD033C9C7666D890C5FAF05EA0EA97E" value="2012-08-14">14 Aug 2012</date>
|
||||
,
|
||||
<collectionCode id="B9C398F54F6AC4F7ADFEE8F171582869" country="South Africa" lsid="urn:lsid:biocol.org:col:14647" name="University of the Witwatersrand" type="Herbarium">J</collectionCode>
|
||||
. Błaszkowski (
|
||||
<emphasis id="97E85B298B843A5EC4DB282B5C35B4CD" bold="true" italics="true">
|
||||
<typeStatus id="50BD3EB42E8688781E8DFAFE4D172AD2" type="holotype">holotype</typeStatus>
|
||||
</emphasis>
|
||||
: slide with spores
|
||||
<collectionCode id="0C1F8F428B043EECA8F56AB80374BB53" country="Switzerland" name="Universität Zürich" type="Herbarium">Z</collectionCode>
|
||||
+
|
||||
<collectionCode id="3C4FEB503109C4F7EC53DBEDC28EF66D" country="Switzerland" lsid="urn:lsid:biocol.org:col:15611" name="Eidgenössische Technische Hochschule Zürich" type="Herbarium">ZT</collectionCode>
|
||||
Myc 0067480;
|
||||
<emphasis id="2C17197D7F9C6937D6A005376DCA8CEB" bold="true" italics="true">
|
||||
<typeStatus id="9F7E8C94D4761A984FF57FEDC519E2F5" type="isotype">isotypes</typeStatus>
|
||||
</emphasis>
|
||||
: slides with spores nos. 3979–3987,
|
||||
<collectionCode id="A8189BB59F7A4FFB74CC677E2698B699">LPPDSE</collectionCode>
|
||||
).
|
||||
</paragraph>
|
||||
</subSubSection>
|
||||
<subSubSection id="SECID0EQFBG" type="etymology">
|
||||
<paragraph id="E6CCC0995FA434E0127F920032761A54">
|
||||
<heading id="07EA28707FF20D67A689963AFAAE8F7E" reason="title">Etymology.</heading>
|
||||
</paragraph>
|
||||
<paragraph id="53AED3EF6A65A27A0E656ECD39B91F4E">
|
||||
Latin,
|
||||
<emphasis id="9F53AB51FF0BD641685F59B59EE792D2" italics="true">paraminuta</emphasis>
|
||||
, referring to
|
||||
<emphasis id="98A9A430B43D1BCDF649235FA2C407E7" italics="true">D. minuta</emphasis>
|
||||
, the phylogenetic sister of this new species.
|
||||
</paragraph>
|
||||
</subSubSection>
|
||||
<subSubSection id="SECID0E1FBG" type="diagnosis">
|
||||
<paragraph id="284864E59933FD3B362F99311F10DE93">
|
||||
<heading id="D022A57B574971295D592EF9DC490C40" reason="title">Diagnosis.</heading>
|
||||
</paragraph>
|
||||
<paragraph id="20F25A23DB7E42E05D7AD8B8AE6B094B">
|
||||
Differs from
|
||||
<taxonomicName id="B19D6A97B9BCA4C37B4CD3E239039CFF" class="Glomeromycetes" family="Glomeraceae" genus="Dominikia" kingdom="Fungi" order="Glomerales" phylum="Glomeromycota" rank="species" species="minuta">
|
||||
<emphasis id="942881981B946C5E66C1E1985D5E674C" italics="true">D. minuta</emphasis>
|
||||
</taxonomicName>
|
||||
, the phylogenetic sister, in (i) morphometric features of spores and their spore wall, (ii) the spore wall structure, (iii) phenotypic properties of spore wall layer 1, and (iv) nucleotide composition of sequences of the 45
|
||||
<collectionCode id="CED4762E9E467286BF34A9BDB8AD66B8" country="Sweden" lsid="urn:lsid:biocol.org:col:15668" name="Department of Botany, Swedish Museum of Natural History" type="Herbarium">S</collectionCode>
|
||||
nuc rDNA region (see “ Discussion ” for details).
|
||||
</paragraph>
|
||||
</subSubSection>
|
||||
<subSubSection id="SECID0ELGBG" type="description">
|
||||
<paragraph id="C713F2173DD56A9742D4EBA8DC900B2C">
|
||||
<heading id="D37070DB67A22425AAB48BC8DCBFFD8F" reason="title">Description.</heading>
|
||||
</paragraph>
|
||||
<paragraph id="584B014A89011E82F92DB550B9064E9C">
|
||||
Forming loose to compact hypogeous clusters with five to ca. 25 randomly distributed spores and sterile hyphae (Fig.
|
||||
<figureCitation id="48719230D352001598D76EC12A69DD1C" captionStart="Figure 2" captionStartId="F2" captionText="Figure 2. Dominikia paraminuta A – C cluster of spores (sp) with subtending hypha (sh), and sterile hyphae (sth) D – G spore wall layers (swl) 1–3 continuous with subtending hyphal wall layers (shwl) 1–3; septum (s) connecting the inner surfaces of shwl 2 is indicated in G, H arbuscule (a), vesicle (v), and coiled hyphae (c) in mycorrhizal root of Plantago lanceolata stained in 0.1 % Trypan blue C, D, H spores and mycorrhizal structures in PVLG E, F, G spores in PVLG + Melzer’s reagent A, B scanning electron microscopy C – H differential interference microscopy. Scale bars: 20 μm (A); 20 μm (B); 10 μm (C – H)." figureDoi="10.3897/mycokeys.112.136158.figure2" httpUri="https://binary.pensoft.net/fig/1229336">2 A – D</figureCitation>
|
||||
). Spores glomoid, arising blastically at tips of subtending hyphae (Fig.
|
||||
<figureCitation id="9CD327378D1DD904DF1264B198BE4E3E" captionStart="Figure 2" captionStartId="F2" captionText="Figure 2. Dominikia paraminuta A – C cluster of spores (sp) with subtending hypha (sh), and sterile hyphae (sth) D – G spore wall layers (swl) 1–3 continuous with subtending hyphal wall layers (shwl) 1–3; septum (s) connecting the inner surfaces of shwl 2 is indicated in G, H arbuscule (a), vesicle (v), and coiled hyphae (c) in mycorrhizal root of Plantago lanceolata stained in 0.1 % Trypan blue C, D, H spores and mycorrhizal structures in PVLG E, F, G spores in PVLG + Melzer’s reagent A, B scanning electron microscopy C – H differential interference microscopy. Scale bars: 20 μm (A); 20 μm (B); 10 μm (C – H)." figureDoi="10.3897/mycokeys.112.136158.figure2" httpUri="https://binary.pensoft.net/fig/1229336">2 A, B, F, G</figureCitation>
|
||||
) branched from a parent hypha continuous with a mycorrhizal extraradical hypha.
|
||||
<emphasis id="A7C2B5468F4960E0FA76EBB576D1FF0B" bold="true" italics="true">Spores</emphasis>
|
||||
hyaline; globose to subglobose; (23 –) 31 (– 39) µm diam; rarely ovoid to oblong, 14–33 × 26–71 µm; with one subtending hypha (Fig.
|
||||
<figureCitation id="842A4C28BBBAD6B78FB3ABC842AB5C08" captionStart="Figure 2" captionStartId="F2" captionText="Figure 2. Dominikia paraminuta A – C cluster of spores (sp) with subtending hypha (sh), and sterile hyphae (sth) D – G spore wall layers (swl) 1–3 continuous with subtending hyphal wall layers (shwl) 1–3; septum (s) connecting the inner surfaces of shwl 2 is indicated in G, H arbuscule (a), vesicle (v), and coiled hyphae (c) in mycorrhizal root of Plantago lanceolata stained in 0.1 % Trypan blue C, D, H spores and mycorrhizal structures in PVLG E, F, G spores in PVLG + Melzer’s reagent A, B scanning electron microscopy C – H differential interference microscopy. Scale bars: 20 μm (A); 20 μm (B); 10 μm (C – H)." figureDoi="10.3897/mycokeys.112.136158.figure2" httpUri="https://binary.pensoft.net/fig/1229336">2 A – G</figureCitation>
|
||||
).
|
||||
<emphasis id="DEA4B86ADE7065B823CE81E648A100BF" bold="true" italics="true">Spore wall</emphasis>
|
||||
composed of three hyaline layers (layers 1–3; Fig.
|
||||
<figureCitation id="14DAA38A720BF76478EDB5C0054E426A" captionStart="Figure 2" captionStartId="F2" captionText="Figure 2. Dominikia paraminuta A – C cluster of spores (sp) with subtending hypha (sh), and sterile hyphae (sth) D – G spore wall layers (swl) 1–3 continuous with subtending hyphal wall layers (shwl) 1–3; septum (s) connecting the inner surfaces of shwl 2 is indicated in G, H arbuscule (a), vesicle (v), and coiled hyphae (c) in mycorrhizal root of Plantago lanceolata stained in 0.1 % Trypan blue C, D, H spores and mycorrhizal structures in PVLG E, F, G spores in PVLG + Melzer’s reagent A, B scanning electron microscopy C – H differential interference microscopy. Scale bars: 20 μm (A); 20 μm (B); 10 μm (C – H)." figureDoi="10.3897/mycokeys.112.136158.figure2" httpUri="https://binary.pensoft.net/fig/1229336">2 D – G</figureCitation>
|
||||
). Layer 1, forming the spore surface, uniform (without visible sublayers), semi-permanent, (0.8 –) 1.3 (– 2.0) µm thick when smooth, often with local thickenings, (1.2 –) 2.1 (– 3.8) µm thick, randomly distributed on the spore surface, rarely strongly or completely sloughed off in aged spores (Fig.
|
||||
<figureCitation id="964CC319D6C247389885744C25EF8F73" captionStart="Figure 2" captionStartId="F2" captionText="Figure 2. Dominikia paraminuta A – C cluster of spores (sp) with subtending hypha (sh), and sterile hyphae (sth) D – G spore wall layers (swl) 1–3 continuous with subtending hyphal wall layers (shwl) 1–3; septum (s) connecting the inner surfaces of shwl 2 is indicated in G, H arbuscule (a), vesicle (v), and coiled hyphae (c) in mycorrhizal root of Plantago lanceolata stained in 0.1 % Trypan blue C, D, H spores and mycorrhizal structures in PVLG E, F, G spores in PVLG + Melzer’s reagent A, B scanning electron microscopy C – H differential interference microscopy. Scale bars: 20 μm (A); 20 μm (B); 10 μm (C – H)." figureDoi="10.3897/mycokeys.112.136158.figure2" httpUri="https://binary.pensoft.net/fig/1229336">2 D – G</figureCitation>
|
||||
). Layer 2 laminate, permanent, smooth, (1.0 –) 1.4 (– 2.0) µm thick, consisting of very thin, <0.5 µm, sublayers tightly adherent to and not separating from each other even in vigorously crushed spores (Fig.
|
||||
<figureCitation id="2846EC5D0D08C50799929B9B41DD0E78" captionStart="Figure 2" captionStartId="F2" captionText="Figure 2. Dominikia paraminuta A – C cluster of spores (sp) with subtending hypha (sh), and sterile hyphae (sth) D – G spore wall layers (swl) 1–3 continuous with subtending hyphal wall layers (shwl) 1–3; septum (s) connecting the inner surfaces of shwl 2 is indicated in G, H arbuscule (a), vesicle (v), and coiled hyphae (c) in mycorrhizal root of Plantago lanceolata stained in 0.1 % Trypan blue C, D, H spores and mycorrhizal structures in PVLG E, F, G spores in PVLG + Melzer’s reagent A, B scanning electron microscopy C – H differential interference microscopy. Scale bars: 20 μm (A); 20 μm (B); 10 μm (C – H)." figureDoi="10.3897/mycokeys.112.136158.figure2" httpUri="https://binary.pensoft.net/fig/1229336">2 D – G</figureCitation>
|
||||
). Layer 3 uniform, permanent, smooth, ca. 0.6–0.8 µm thick, usually tightly adherent to the inner surface of layer 2 and, therefore, difficult to detect. Layers 1–3 do not stain in Melzer’s reagent (Fig.
|
||||
<figureCitation id="0B42207090F156A6DA2B7A73A0345E94" captionStart="Figure 2" captionStartId="F2" captionText="Figure 2. Dominikia paraminuta A – C cluster of spores (sp) with subtending hypha (sh), and sterile hyphae (sth) D – G spore wall layers (swl) 1–3 continuous with subtending hyphal wall layers (shwl) 1–3; septum (s) connecting the inner surfaces of shwl 2 is indicated in G, H arbuscule (a), vesicle (v), and coiled hyphae (c) in mycorrhizal root of Plantago lanceolata stained in 0.1 % Trypan blue C, D, H spores and mycorrhizal structures in PVLG E, F, G spores in PVLG + Melzer’s reagent A, B scanning electron microscopy C – H differential interference microscopy. Scale bars: 20 μm (A); 20 μm (B); 10 μm (C – H)." figureDoi="10.3897/mycokeys.112.136158.figure2" httpUri="https://binary.pensoft.net/fig/1229336">2 E – G</figureCitation>
|
||||
).
|
||||
<emphasis id="141E654440711E5EB23161D6256519E9" bold="true" italics="true">Subtending hypha</emphasis>
|
||||
hyaline; straight or recurved, usually cylindrical to funnel-shaped, rarely slightly constricted at the spore base, (3.8 –) 5.7 (– 9.5) µm wide at the spore base (Fig.
|
||||
<figureCitation id="550BAED2447F8227FB1B54DA5F656504" captionStart="Figure 2" captionStartId="F2" captionText="Figure 2. Dominikia paraminuta A – C cluster of spores (sp) with subtending hypha (sh), and sterile hyphae (sth) D – G spore wall layers (swl) 1–3 continuous with subtending hyphal wall layers (shwl) 1–3; septum (s) connecting the inner surfaces of shwl 2 is indicated in G, H arbuscule (a), vesicle (v), and coiled hyphae (c) in mycorrhizal root of Plantago lanceolata stained in 0.1 % Trypan blue C, D, H spores and mycorrhizal structures in PVLG E, F, G spores in PVLG + Melzer’s reagent A, B scanning electron microscopy C – H differential interference microscopy. Scale bars: 20 μm (A); 20 μm (B); 10 μm (C – H)." figureDoi="10.3897/mycokeys.112.136158.figure2" httpUri="https://binary.pensoft.net/fig/1229336">2 A, B, F, G</figureCitation>
|
||||
).
|
||||
<emphasis id="BA3FA73870D8029808BC6D6705177ED9" bold="true" italics="true">Wall of subtending hypha</emphasis>
|
||||
hyaline; (1.6 –) 2.2 (– 2.9) µm thick at the spore base; composed of three layers continuous with spore wall layers 1–3 (Fig.
|
||||
<figureCitation id="9C0EC1DC5325ABD3EE2D09C173E389DE" captionStart="Figure 2" captionStartId="F2" captionText="Figure 2. Dominikia paraminuta A – C cluster of spores (sp) with subtending hypha (sh), and sterile hyphae (sth) D – G spore wall layers (swl) 1–3 continuous with subtending hyphal wall layers (shwl) 1–3; septum (s) connecting the inner surfaces of shwl 2 is indicated in G, H arbuscule (a), vesicle (v), and coiled hyphae (c) in mycorrhizal root of Plantago lanceolata stained in 0.1 % Trypan blue C, D, H spores and mycorrhizal structures in PVLG E, F, G spores in PVLG + Melzer’s reagent A, B scanning electron microscopy C – H differential interference microscopy. Scale bars: 20 μm (A); 20 μm (B); 10 μm (C – H)." figureDoi="10.3897/mycokeys.112.136158.figure2" httpUri="https://binary.pensoft.net/fig/1229336">2 F, G</figureCitation>
|
||||
).
|
||||
<emphasis id="852171B8B5B94CD628893758DF31564C" bold="true" italics="true">Pore</emphasis>
|
||||
(1.0 –) 1.9 (– 5.8) µm diam, usually open (Fig.
|
||||
<figureCitation id="F5AC79A4AC4A3D74B4FAAC1BA6599D4C" captionStart="Figure 2" captionStartId="F2" captionText="Figure 2. Dominikia paraminuta A – C cluster of spores (sp) with subtending hypha (sh), and sterile hyphae (sth) D – G spore wall layers (swl) 1–3 continuous with subtending hyphal wall layers (shwl) 1–3; septum (s) connecting the inner surfaces of shwl 2 is indicated in G, H arbuscule (a), vesicle (v), and coiled hyphae (c) in mycorrhizal root of Plantago lanceolata stained in 0.1 % Trypan blue C, D, H spores and mycorrhizal structures in PVLG E, F, G spores in PVLG + Melzer’s reagent A, B scanning electron microscopy C – H differential interference microscopy. Scale bars: 20 μm (A); 20 μm (B); 10 μm (C – H)." figureDoi="10.3897/mycokeys.112.136158.figure2" httpUri="https://binary.pensoft.net/fig/1229336">2 F</figureCitation>
|
||||
), very rarely occluded by a curved septum connecting the inner surfaces of subtending hyphal wall layer 3; septum 0.4–0.6 µm thick, located ca. 2.0 µm below the spore base (Fig.
|
||||
<figureCitation id="7AC8D4D240ECA831881143C8C4F4A0FF" captionStart="Figure 2" captionStartId="F2" captionText="Figure 2. Dominikia paraminuta A – C cluster of spores (sp) with subtending hypha (sh), and sterile hyphae (sth) D – G spore wall layers (swl) 1–3 continuous with subtending hyphal wall layers (shwl) 1–3; septum (s) connecting the inner surfaces of shwl 2 is indicated in G, H arbuscule (a), vesicle (v), and coiled hyphae (c) in mycorrhizal root of Plantago lanceolata stained in 0.1 % Trypan blue C, D, H spores and mycorrhizal structures in PVLG E, F, G spores in PVLG + Melzer’s reagent A, B scanning electron microscopy C – H differential interference microscopy. Scale bars: 20 μm (A); 20 μm (B); 10 μm (C – H)." figureDoi="10.3897/mycokeys.112.136158.figure2" httpUri="https://binary.pensoft.net/fig/1229336">2 G</figureCitation>
|
||||
).
|
||||
<emphasis id="1FD1BD63B2FCB3E5A9E63AF55FEF4A50" bold="true" italics="true">Sterile hyphae</emphasis>
|
||||
hyaline, (2.8 –) 4.4 (– 5.2) µm wide (Fig.
|
||||
<figureCitation id="FAE82764FA58E101977B8044A28B78BC" captionStart="Figure 2" captionStartId="F2" captionText="Figure 2. Dominikia paraminuta A – C cluster of spores (sp) with subtending hypha (sh), and sterile hyphae (sth) D – G spore wall layers (swl) 1–3 continuous with subtending hyphal wall layers (shwl) 1–3; septum (s) connecting the inner surfaces of shwl 2 is indicated in G, H arbuscule (a), vesicle (v), and coiled hyphae (c) in mycorrhizal root of Plantago lanceolata stained in 0.1 % Trypan blue C, D, H spores and mycorrhizal structures in PVLG E, F, G spores in PVLG + Melzer’s reagent A, B scanning electron microscopy C – H differential interference microscopy. Scale bars: 20 μm (A); 20 μm (B); 10 μm (C – H)." figureDoi="10.3897/mycokeys.112.136158.figure2" httpUri="https://binary.pensoft.net/fig/1229336">2 B, C</figureCitation>
|
||||
).
|
||||
<emphasis id="24CFDD5631AB418D8C52AF2BA681D129" bold="true" italics="true">Germination</emphasis>
|
||||
unknown.
|
||||
</paragraph>
|
||||
<caption id="0ECE8A0A36B4A07A7DD45AFF5E1031A5" ID-DOI="10.3897/mycokeys.112.136158.figure2" ID-arpha="EC55A0CA-9E05-527D-A495-6760A1EB6046" httpUri="https://binary.pensoft.net/fig/1229336" startId="F2">
|
||||
<paragraph id="CA08B34710C0C7CB6E612BF6F4E91808">
|
||||
<label id="5E8D477131DA1416194D6D53519850D6">Figure 2.</label>
|
||||
</paragraph>
|
||||
<paragraph id="F1EC86940E3975521EEA796BD164E2D5">
|
||||
<taxonomicName id="B635A41D818E46D8C6A0720E4E08184A" authorityName="Blaszk., Niezgoda & B. T. Goto" authorityYear="2025" class="Glomeromycetes" family="Glomeraceae" genus="Dominikia" kingdom="Fungi" order="Glomerales" phylum="Glomeromycota" rank="species" species="paraminuta">
|
||||
<emphasis id="2C8BD7ED98949017342E4217A55374A0" italics="true">Dominikia paraminuta</emphasis>
|
||||
</taxonomicName>
|
||||
<emphasis id="FBCFF94D9E1B827AB654E25514EDBD8E" bold="true">A – C</emphasis>
|
||||
cluster of spores (sp) with subtending hypha (sh), and sterile hyphae (sth)
|
||||
<emphasis id="05ECA306F6F743AE11A909A60E35CD47" bold="true">D – G</emphasis>
|
||||
spore wall layers (swl) 1–3 continuous with subtending hyphal wall layers (shwl) 1–3; septum (s) connecting the inner surfaces of shwl 2 is indicated in
|
||||
<emphasis id="669D7D39E7832D3F58F89243AA9DA661" bold="true">G, H</emphasis>
|
||||
arbuscule (a), vesicle (v), and coiled hyphae (c) in mycorrhizal root of
|
||||
<taxonomicName id="345B430034D3EE4757F835479505691E" class="Magnoliopsida" family="Plantaginaceae" genus="Plantago" kingdom="Plantae" order="Lamiales" phylum="Tracheophyta" rank="species" species="lanceolata">
|
||||
<emphasis id="E9D33B06097742D842D54AC77AEBAE70" italics="true">Plantago lanceolata</emphasis>
|
||||
</taxonomicName>
|
||||
stained in 0.1 % Trypan blue
|
||||
<emphasis id="4AB44ED2E70C4634FFF2B4AD78C2EE85" bold="true">C, D, H</emphasis>
|
||||
spores and mycorrhizal structures in
|
||||
<abbrev id="ABBRID0E3JBG" xlink_title="polyvinyl alcohol/lactic acid/glycerol">PVLG</abbrev>
|
||||
<emphasis id="C1FA7E3568838D2C39201CB08F7F222F" bold="true">E, F, G</emphasis>
|
||||
spores in
|
||||
<abbrev id="ABBRID0ECKBG" xlink_title="polyvinyl alcohol/lactic acid/glycerol">PVLG</abbrev>
|
||||
+ Melzer’s reagent
|
||||
<emphasis id="5DD2D4CBE84C82809A056E398EAB6F1A" bold="true">A, B</emphasis>
|
||||
scanning electron microscopy
|
||||
<emphasis id="E80F1EEE1204AF84F241715CE1EC88E8" bold="true">C – H</emphasis>
|
||||
differential interference microscopy. Scale bars: 20 μm (
|
||||
<emphasis id="0A01E8628D93502B8F60196B4E446A46" bold="true">A</emphasis>
|
||||
); 20 μm (
|
||||
<emphasis id="F70F7549354BB606937F582F6B67C5F4" bold="true">B</emphasis>
|
||||
); 10 μm (
|
||||
<emphasis id="C7E439355D6FC209A715D5BA62040104" bold="true">C – H</emphasis>
|
||||
).
|
||||
</paragraph>
|
||||
</caption>
|
||||
</subSubSection>
|
||||
<subSubSection id="SECID0EVKBG" type="ecology">
|
||||
<paragraph id="8444B0A061D124EA794314CC8F832804">
|
||||
<heading id="20550F448389C6172B481BE8DF131CF1" reason="title">Ecology and distribution.</heading>
|
||||
</paragraph>
|
||||
<paragraph id="44AB49EBAD43FA68B1876147AB5FB3E1">
|
||||
In the field,
|
||||
<taxonomicName id="DA654144D52B503D889C5037DEFA376E" authorityName="Blaszk., Niezgoda & B. T. Goto" authorityYear="2025" class="Glomeromycetes" family="Glomeraceae" genus="Dominikia" kingdom="Fungi" order="Glomerales" phylum="Glomeromycota" rank="species" species="paraminuta">
|
||||
<emphasis id="2F92AD257D9B950A76C87218FA819A34" italics="true">D. paraminuta</emphasis>
|
||||
</taxonomicName>
|
||||
probably lived in arbuscular mycorrhizal symbiosis with roots of
|
||||
<taxonomicName id="00443594B2FC07070773C9A596F00F94" class="Liliopsida" family="Poaceae" genus="Ammophila" kingdom="Plantae" order="Poales" phylum="Tracheophyta" rank="species" species="arenaria">
|
||||
<emphasis id="07FC009A8956A58EDE1E0BD1DF87F391" italics="true">A. arenaria</emphasis>
|
||||
</taxonomicName>
|
||||
that colonized maritime sand dunes near Chałupy and Jastarnia on the Hel Peninsula, northern
|
||||
<collectingCountry id="FE4075FC806EB5D74C2A16DC4942654A" name="Poland">Poland</collectingCountry>
|
||||
. However, no molecular analyses were performed to confirm this assumption. In single-species cultures with
|
||||
<taxonomicName id="3F2BA7CB74D1463704CDD6FF93BF3313" class="Magnoliopsida" family="Plantaginaceae" genus="Plantago" kingdom="Plantae" order="Lamiales" phylum="Tracheophyta" rank="species" species="lanceolata">
|
||||
<emphasis id="889A1EDF9BC2687991211210BA9F5B31" italics="true">P. lanceolata</emphasis>
|
||||
</taxonomicName>
|
||||
as host plant,
|
||||
<taxonomicName id="5E561A7C0DBEC6298A9F81AA39C0C34D" authorityName="Blaszk., Niezgoda & B. T. Goto" authorityYear="2025" class="Glomeromycetes" family="Glomeraceae" genus="Dominikia" kingdom="Fungi" order="Glomerales" phylum="Glomeromycota" rank="species" species="paraminuta">
|
||||
<emphasis id="9108CF359ED411EA453B2345890D3AC0" italics="true">D. paraminuta</emphasis>
|
||||
</taxonomicName>
|
||||
formed mycorrhiza with arbuscules, vesicles, and intra- and extraradical hyphae (Fig.
|
||||
<figureCitation id="029FE3574EF26DB7714DCAADDAE92940" captionStart="Figure 2" captionStartId="F2" captionText="Figure 2. Dominikia paraminuta A – C cluster of spores (sp) with subtending hypha (sh), and sterile hyphae (sth) D – G spore wall layers (swl) 1–3 continuous with subtending hyphal wall layers (shwl) 1–3; septum (s) connecting the inner surfaces of shwl 2 is indicated in G, H arbuscule (a), vesicle (v), and coiled hyphae (c) in mycorrhizal root of Plantago lanceolata stained in 0.1 % Trypan blue C, D, H spores and mycorrhizal structures in PVLG E, F, G spores in PVLG + Melzer’s reagent A, B scanning electron microscopy C – H differential interference microscopy. Scale bars: 20 μm (A); 20 μm (B); 10 μm (C – H)." figureDoi="10.3897/mycokeys.112.136158.figure2" httpUri="https://binary.pensoft.net/fig/1229336">2 H</figureCitation>
|
||||
). These structures stained clearly [pale violet (16
|
||||
<collectionCode id="51A4DC623664D99E34A79B1123836284" country="USA" lsid="urn:lsid:biocol.org:col:15406" name="Harvard University - Arnold Arboretum" type="Herbarium">A</collectionCode>
|
||||
3) to deep violet (16
|
||||
<collectionCode id="D4C6F9E4B3873DC0228E8D70FF78EEA7" country="United Kingdom" lsid="urn:lsid:biocol.org:col:15670" name="Royal Botanic Garden Edinburgh" type="Herbarium">E</collectionCode>
|
||||
8)] in 0.1 % Trypan blue. Phylogenetic analyses with the 45
|
||||
<collectionCode id="D625DE377F321D0A5277A2FBD6BCB123" country="Sweden" lsid="urn:lsid:biocol.org:col:15668" name="Department of Botany, Swedish Museum of Natural History" type="Herbarium">S</collectionCode>
|
||||
alignment used in this study and environmental sequences with> 96 % identity to 45
|
||||
<collectionCode id="C96B753B00B5BDDB71EE06614992B15D" country="Sweden" lsid="urn:lsid:biocol.org:col:15668" name="Department of Botany, Swedish Museum of Natural History" type="Herbarium">S</collectionCode>
|
||||
sequences of
|
||||
<taxonomicName id="C83D896F4A438772AE5F77F09E6CCC78" authorityName="Blaszk., Niezgoda & B. T. Goto" authorityYear="2025" class="Glomeromycetes" family="Glomeraceae" genus="Dominikia" kingdom="Fungi" order="Glomerales" phylum="Glomeromycota" rank="species" species="paraminuta">
|
||||
<emphasis id="FAD69CDDEA09F45D5ADE85284360D2D0" italics="true">D. paraminuta</emphasis>
|
||||
</taxonomicName>
|
||||
, revealed by BLASTn, indicated that
|
||||
<taxonomicName id="8F42128E9149703FDD30479B842F7382" authorityName="Blaszk., Niezgoda & B. T. Goto" authorityYear="2025" class="Glomeromycetes" family="Glomeraceae" genus="Dominikia" kingdom="Fungi" order="Glomerales" phylum="Glomeromycota" rank="species" species="paraminuta">
|
||||
<emphasis id="5A86295C87CEC333A54A6EA3A49E8B4E" italics="true">D. paraminuta</emphasis>
|
||||
</taxonomicName>
|
||||
was previously recognized in grasslands and unspecified sites in
|
||||
<collectingCountry id="2A4E359841D42D965991A5E60425D137" name="China">China</collectingCountry>
|
||||
(data not shown).
|
||||
</paragraph>
|
||||
</subSubSection>
|
||||
</treatment>
|
||||
</document>
|
Loading…
Reference in a new issue