Literature DB >> 27482928

Functional traits dominate the diversity-related selection of bacterial communities in the rhizosphere.

Yan Yan1,2, Eiko E Kuramae1, Mattias de Hollander1, Peter G L Klinkhamer2, Johannes A van Veen1,2.   

Abstract

We studied the impact of community diversity on the selection of bacterial communities in the rhizosphere by comparing the composition and the functional traits of these communities in soil and rhizosphere. Differences in diversity were established by inoculating into sterilized soils diluted suspensions of the same soil. We used 16S ribosomal RNA amplicon sequencing to determine the taxonomical structure of the bacterial communities and a shotgun metagenomics approach to investigate the potential functional diversity of the communities. By comparing the bacterial communities in soil and rhizosphere, the selective power of the plant was observed both at the taxonomic and functional level, although the diversity indices of soil and rhizosphere samples showed a highly variable, irregular pattern. Lesser variation, that is, more homogenization, was found for both the taxonomic structure and the functional profile of the rhizosphere communities as compared to the communities of the bulk soil. Network analysis revealed stronger interactions among bacterial operational taxonomic units in the rhizosphere than in the soil. The enrichment processes in the rhizosphere selected microbes with particular functional genes related to transporters, the Embden-Meyerhof-Parnas pathway and hydrogen metabolism. This selection was not random across bacteria with these functional traits, but it was species specific. Overall, this suggests that functional traits are a key to the assembly of bacterial rhizosphere communities.

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Year:  2016        PMID: 27482928      PMCID: PMC5315473          DOI: 10.1038/ismej.2016.108

Source DB:  PubMed          Journal:  ISME J        ISSN: 1751-7362            Impact factor:   10.302


  44 in total

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  35 in total

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7.  Harnessing the microbiomes of Brassica vegetables for health issues.

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9.  The stage of soil development modulates rhizosphere effect along a High Arctic desert chronosequence.

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10.  Deciphering the archaeal communities in tree rhizosphere of the Qinghai-Tibetan plateau.

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