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Host plant phylogeny and geographic distance strongly structure Betulaceae-associated ectomycorrhizal fungal communities in Chinese secondary forest ecosystems.

Identifieur interne : 000521 ( Main/Exploration ); précédent : 000520; suivant : 000522

Host plant phylogeny and geographic distance strongly structure Betulaceae-associated ectomycorrhizal fungal communities in Chinese secondary forest ecosystems.

Auteurs : Yong-Long Wang [République populaire de Chine] ; Cheng Gao [République populaire de Chine] ; Liang Chen [République populaire de Chine] ; Niu-Niu Ji [République populaire de Chine] ; Bin-Wei Wu [République populaire de Chine] ; Xing-Chun Li [République populaire de Chine] ; Peng-Peng Lü [République populaire de Chine] ; Yong Zheng [République populaire de Chine] ; Liang-Dong Guo [République populaire de Chine]

Source :

RBID : pubmed:30889238

Descripteurs français

English descriptors

Abstract

Environmental filtering and dispersal limitation are two of the primary drivers of community assembly in ecosystems, but their effects on ectomycorrhizal (EM) fungal communities associated with wide ranges of Betulaceae taxa at a large scale are poorly documented. In this study, we examined EM fungal communities associated with 23 species from four genera (Alnus, Betula, Carpinus and Corylus) of Betulaceae in Chinese secondary forest ecosystems, using Illumina MiSeq sequencing of the ITS2 region. Effects of host plant phylogeny, soil, climate and geographic distance on EM fungal community were explored. In total, we distinguished 1738 EM fungal operational taxonomic units (OTUs) at a 97% sequence similarity level. The EM fungal communities of Alnus had significantly lower OTU richness than those associated with the other three plant genera. The EM fungal OTU richness was significantly affected by geographic distance, host plant phylogeny, soil and climate. The EM fungal community composition was significantly influenced by host plant phylogeny (12.1% of variation explained in EM fungal community), geographic distance (7.7%), soil (4.6%) and climate (1.1%). This finding highlights that environmental filtering linked to host plant phylogeny and dispersal limitation strongly influence EM fungal communities associated with Betulaceae plants in Chinese secondary forest ecosystems.

DOI: 10.1093/femsec/fiz037
PubMed: 30889238


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<div type="abstract" xml:lang="en">Environmental filtering and dispersal limitation are two of the primary drivers of community assembly in ecosystems, but their effects on ectomycorrhizal (EM) fungal communities associated with wide ranges of Betulaceae taxa at a large scale are poorly documented. In this study, we examined EM fungal communities associated with 23 species from four genera (Alnus, Betula, Carpinus and Corylus) of Betulaceae in Chinese secondary forest ecosystems, using Illumina MiSeq sequencing of the ITS2 region. Effects of host plant phylogeny, soil, climate and geographic distance on EM fungal community were explored. In total, we distinguished 1738 EM fungal operational taxonomic units (OTUs) at a 97% sequence similarity level. The EM fungal communities of Alnus had significantly lower OTU richness than those associated with the other three plant genera. The EM fungal OTU richness was significantly affected by geographic distance, host plant phylogeny, soil and climate. The EM fungal community composition was significantly influenced by host plant phylogeny (12.1% of variation explained in EM fungal community), geographic distance (7.7%), soil (4.6%) and climate (1.1%). This finding highlights that environmental filtering linked to host plant phylogeny and dispersal limitation strongly influence EM fungal communities associated with Betulaceae plants in Chinese secondary forest ecosystems.</div>
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<ELocationID EIdType="doi" ValidYN="Y">10.1093/femsec/fiz037</ELocationID>
<Abstract>
<AbstractText>Environmental filtering and dispersal limitation are two of the primary drivers of community assembly in ecosystems, but their effects on ectomycorrhizal (EM) fungal communities associated with wide ranges of Betulaceae taxa at a large scale are poorly documented. In this study, we examined EM fungal communities associated with 23 species from four genera (Alnus, Betula, Carpinus and Corylus) of Betulaceae in Chinese secondary forest ecosystems, using Illumina MiSeq sequencing of the ITS2 region. Effects of host plant phylogeny, soil, climate and geographic distance on EM fungal community were explored. In total, we distinguished 1738 EM fungal operational taxonomic units (OTUs) at a 97% sequence similarity level. The EM fungal communities of Alnus had significantly lower OTU richness than those associated with the other three plant genera. The EM fungal OTU richness was significantly affected by geographic distance, host plant phylogeny, soil and climate. The EM fungal community composition was significantly influenced by host plant phylogeny (12.1% of variation explained in EM fungal community), geographic distance (7.7%), soil (4.6%) and climate (1.1%). This finding highlights that environmental filtering linked to host plant phylogeny and dispersal limitation strongly influence EM fungal communities associated with Betulaceae plants in Chinese secondary forest ecosystems.</AbstractText>
<CopyrightInformation>© FEMS 2019.</CopyrightInformation>
</Abstract>
<AuthorList CompleteYN="Y">
<Author ValidYN="Y">
<LastName>Wang</LastName>
<ForeName>Yong-Long</ForeName>
<Initials>YL</Initials>
<AffiliationInfo>
<Affiliation>State Key Laboratory of Mycology, Institute of Microbiology, Chinese Academy of Sciences, Beijing 100101, China.</Affiliation>
</AffiliationInfo>
<AffiliationInfo>
<Affiliation>College of Life Sciences, University of Chinese Academy of Sciences, Beijing 100049, China.</Affiliation>
</AffiliationInfo>
</Author>
<Author ValidYN="Y">
<LastName>Gao</LastName>
<ForeName>Cheng</ForeName>
<Initials>C</Initials>
<AffiliationInfo>
<Affiliation>State Key Laboratory of Mycology, Institute of Microbiology, Chinese Academy of Sciences, Beijing 100101, China.</Affiliation>
</AffiliationInfo>
</Author>
<Author ValidYN="Y">
<LastName>Chen</LastName>
<ForeName>Liang</ForeName>
<Initials>L</Initials>
<AffiliationInfo>
<Affiliation>State Key Laboratory of Mycology, Institute of Microbiology, Chinese Academy of Sciences, Beijing 100101, China.</Affiliation>
</AffiliationInfo>
</Author>
<Author ValidYN="Y">
<LastName>Ji</LastName>
<ForeName>Niu-Niu</ForeName>
<Initials>NN</Initials>
<AffiliationInfo>
<Affiliation>State Key Laboratory of Mycology, Institute of Microbiology, Chinese Academy of Sciences, Beijing 100101, China.</Affiliation>
</AffiliationInfo>
<AffiliationInfo>
<Affiliation>College of Life Sciences, University of Chinese Academy of Sciences, Beijing 100049, China.</Affiliation>
</AffiliationInfo>
</Author>
<Author ValidYN="Y">
<LastName>Wu</LastName>
<ForeName>Bin-Wei</ForeName>
<Initials>BW</Initials>
<AffiliationInfo>
<Affiliation>State Key Laboratory of Mycology, Institute of Microbiology, Chinese Academy of Sciences, Beijing 100101, China.</Affiliation>
</AffiliationInfo>
<AffiliationInfo>
<Affiliation>College of Life Sciences, University of Chinese Academy of Sciences, Beijing 100049, China.</Affiliation>
</AffiliationInfo>
</Author>
<Author ValidYN="Y">
<LastName>Li</LastName>
<ForeName>Xing-Chun</ForeName>
<Initials>XC</Initials>
<AffiliationInfo>
<Affiliation>State Key Laboratory of Mycology, Institute of Microbiology, Chinese Academy of Sciences, Beijing 100101, China.</Affiliation>
</AffiliationInfo>
</Author>
<Author ValidYN="Y">
<LastName></LastName>
<ForeName>Peng-Peng</ForeName>
<Initials>PP</Initials>
<AffiliationInfo>
<Affiliation>State Key Laboratory of Mycology, Institute of Microbiology, Chinese Academy of Sciences, Beijing 100101, China.</Affiliation>
</AffiliationInfo>
<AffiliationInfo>
<Affiliation>College of Life Sciences, University of Chinese Academy of Sciences, Beijing 100049, China.</Affiliation>
</AffiliationInfo>
</Author>
<Author ValidYN="Y">
<LastName>Zheng</LastName>
<ForeName>Yong</ForeName>
<Initials>Y</Initials>
<AffiliationInfo>
<Affiliation>State Key Laboratory of Mycology, Institute of Microbiology, Chinese Academy of Sciences, Beijing 100101, China.</Affiliation>
</AffiliationInfo>
</Author>
<Author ValidYN="Y">
<LastName>Guo</LastName>
<ForeName>Liang-Dong</ForeName>
<Initials>LD</Initials>
<AffiliationInfo>
<Affiliation>State Key Laboratory of Mycology, Institute of Microbiology, Chinese Academy of Sciences, Beijing 100101, China.</Affiliation>
</AffiliationInfo>
<AffiliationInfo>
<Affiliation>College of Life Sciences, University of Chinese Academy of Sciences, Beijing 100049, China.</Affiliation>
</AffiliationInfo>
</Author>
</AuthorList>
<Language>eng</Language>
<PublicationTypeList>
<PublicationType UI="D016428">Journal Article</PublicationType>
</PublicationTypeList>
</Article>
<MedlineJournalInfo>
<Country>England</Country>
<MedlineTA>FEMS Microbiol Ecol</MedlineTA>
<NlmUniqueID>8901229</NlmUniqueID>
<ISSNLinking>0168-6496</ISSNLinking>
</MedlineJournalInfo>
<ChemicalList>
<Chemical>
<RegistryNumber>0</RegistryNumber>
<NameOfSubstance UI="D012987">Soil</NameOfSubstance>
</Chemical>
</ChemicalList>
<CitationSubset>IM</CitationSubset>
<MeshHeadingList>
<MeshHeading>
<DescriptorName UI="D029401" MajorTopicYN="N">Betulaceae</DescriptorName>
<QualifierName UI="Q000145" MajorTopicYN="N">classification</QualifierName>
<QualifierName UI="Q000235" MajorTopicYN="N">genetics</QualifierName>
<QualifierName UI="Q000382" MajorTopicYN="Y">microbiology</QualifierName>
<QualifierName UI="Q000502" MajorTopicYN="N">physiology</QualifierName>
</MeshHeading>
<MeshHeading>
<DescriptorName UI="D002980" MajorTopicYN="N">Climate</DescriptorName>
</MeshHeading>
<MeshHeading>
<DescriptorName UI="D065928" MajorTopicYN="Y">Forests</DescriptorName>
</MeshHeading>
<MeshHeading>
<DescriptorName UI="D058507" MajorTopicYN="N">Host Specificity</DescriptorName>
</MeshHeading>
<MeshHeading>
<DescriptorName UI="D000072761" MajorTopicYN="N">Mycobiome</DescriptorName>
<QualifierName UI="Q000235" MajorTopicYN="Y">genetics</QualifierName>
</MeshHeading>
<MeshHeading>
<DescriptorName UI="D038821" MajorTopicYN="N">Mycorrhizae</DescriptorName>
<QualifierName UI="Q000145" MajorTopicYN="N">classification</QualifierName>
<QualifierName UI="Q000235" MajorTopicYN="N">genetics</QualifierName>
<QualifierName UI="Q000502" MajorTopicYN="Y">physiology</QualifierName>
</MeshHeading>
<MeshHeading>
<DescriptorName UI="D010802" MajorTopicYN="N">Phylogeny</DescriptorName>
</MeshHeading>
<MeshHeading>
<DescriptorName UI="D063148" MajorTopicYN="N">Plant Dispersal</DescriptorName>
</MeshHeading>
<MeshHeading>
<DescriptorName UI="D012987" MajorTopicYN="N">Soil</DescriptorName>
<QualifierName UI="Q000737" MajorTopicYN="N">chemistry</QualifierName>
</MeshHeading>
<MeshHeading>
<DescriptorName UI="D012988" MajorTopicYN="N">Soil Microbiology</DescriptorName>
</MeshHeading>
</MeshHeadingList>
<KeywordList Owner="NOTNLM">
<Keyword MajorTopicYN="Y">Betulaceae</Keyword>
<Keyword MajorTopicYN="Y">ITS2</Keyword>
<Keyword MajorTopicYN="Y">Illumina MiSeq</Keyword>
<Keyword MajorTopicYN="Y">dispersal limitation</Keyword>
<Keyword MajorTopicYN="Y">ectomycorrhizal fungal community</Keyword>
<Keyword MajorTopicYN="Y">environmental filtering</Keyword>
</KeywordList>
</MedlineCitation>
<PubmedData>
<History>
<PubMedPubDate PubStatus="received">
<Year>2019</Year>
<Month>01</Month>
<Day>15</Day>
</PubMedPubDate>
<PubMedPubDate PubStatus="accepted">
<Year>2019</Year>
<Month>03</Month>
<Day>17</Day>
</PubMedPubDate>
<PubMedPubDate PubStatus="pubmed">
<Year>2019</Year>
<Month>3</Month>
<Day>20</Day>
<Hour>6</Hour>
<Minute>0</Minute>
</PubMedPubDate>
<PubMedPubDate PubStatus="medline">
<Year>2020</Year>
<Month>5</Month>
<Day>19</Day>
<Hour>6</Hour>
<Minute>0</Minute>
</PubMedPubDate>
<PubMedPubDate PubStatus="entrez">
<Year>2019</Year>
<Month>3</Month>
<Day>20</Day>
<Hour>6</Hour>
<Minute>0</Minute>
</PubMedPubDate>
</History>
<PublicationStatus>ppublish</PublicationStatus>
<ArticleIdList>
<ArticleId IdType="pubmed">30889238</ArticleId>
<ArticleId IdType="pii">5393368</ArticleId>
<ArticleId IdType="doi">10.1093/femsec/fiz037</ArticleId>
</ArticleIdList>
</PubmedData>
</pubmed>
<affiliations>
<list>
<country>
<li>République populaire de Chine</li>
</country>
<settlement>
<li>Pékin</li>
</settlement>
</list>
<tree>
<country name="République populaire de Chine">
<noRegion>
<name sortKey="Wang, Yong Long" sort="Wang, Yong Long" uniqKey="Wang Y" first="Yong-Long" last="Wang">Yong-Long Wang</name>
</noRegion>
<name sortKey="Chen, Liang" sort="Chen, Liang" uniqKey="Chen L" first="Liang" last="Chen">Liang Chen</name>
<name sortKey="Gao, Cheng" sort="Gao, Cheng" uniqKey="Gao C" first="Cheng" last="Gao">Cheng Gao</name>
<name sortKey="Guo, Liang Dong" sort="Guo, Liang Dong" uniqKey="Guo L" first="Liang-Dong" last="Guo">Liang-Dong Guo</name>
<name sortKey="Guo, Liang Dong" sort="Guo, Liang Dong" uniqKey="Guo L" first="Liang-Dong" last="Guo">Liang-Dong Guo</name>
<name sortKey="Ji, Niu Niu" sort="Ji, Niu Niu" uniqKey="Ji N" first="Niu-Niu" last="Ji">Niu-Niu Ji</name>
<name sortKey="Ji, Niu Niu" sort="Ji, Niu Niu" uniqKey="Ji N" first="Niu-Niu" last="Ji">Niu-Niu Ji</name>
<name sortKey="Li, Xing Chun" sort="Li, Xing Chun" uniqKey="Li X" first="Xing-Chun" last="Li">Xing-Chun Li</name>
<name sortKey="Lu, Peng Peng" sort="Lu, Peng Peng" uniqKey="Lu P" first="Peng-Peng" last="Lü">Peng-Peng Lü</name>
<name sortKey="Lu, Peng Peng" sort="Lu, Peng Peng" uniqKey="Lu P" first="Peng-Peng" last="Lü">Peng-Peng Lü</name>
<name sortKey="Wang, Yong Long" sort="Wang, Yong Long" uniqKey="Wang Y" first="Yong-Long" last="Wang">Yong-Long Wang</name>
<name sortKey="Wu, Bin Wei" sort="Wu, Bin Wei" uniqKey="Wu B" first="Bin-Wei" last="Wu">Bin-Wei Wu</name>
<name sortKey="Wu, Bin Wei" sort="Wu, Bin Wei" uniqKey="Wu B" first="Bin-Wei" last="Wu">Bin-Wei Wu</name>
<name sortKey="Zheng, Yong" sort="Zheng, Yong" uniqKey="Zheng Y" first="Yong" last="Zheng">Yong Zheng</name>
</country>
</tree>
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</record>

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