Literature DB >> 25430889

Plant diversity predicts beta but not alpha diversity of soil microbes across grasslands worldwide.

Suzanne M Prober1, Jonathan W Leff, Scott T Bates, Elizabeth T Borer, Jennifer Firn, W Stanley Harpole, Eric M Lind, Eric W Seabloom, Peter B Adler, Jonathan D Bakker, Elsa E Cleland, Nicole M DeCrappeo, Elizabeth DeLorenze, Nicole Hagenah, Yann Hautier, Kirsten S Hofmockel, Kevin P Kirkman, Johannes M H Knops, Kimberly J La Pierre, Andrew S MacDougall, Rebecca L McCulley, Charles E Mitchell, Anita C Risch, Martin Schuetz, Carly J Stevens, Ryan J Williams, Noah Fierer.   

Abstract

Aboveground-belowground interactions exert critical controls on the composition and function of terrestrial ecosystems, yet the fundamental relationships between plant diversity and soil microbial diversity remain elusive. Theory predicts predominantly positive associations but tests within single sites have shown variable relationships, and associations between plant and microbial diversity across broad spatial scales remain largely unexplored. We compared the diversity of plant, bacterial, archaeal and fungal communities in one hundred and forty-five 1 m(2) plots across 25 temperate grassland sites from four continents. Across sites, the plant alpha diversity patterns were poorly related to those observed for any soil microbial group. However, plant beta diversity (compositional dissimilarity between sites) was significantly correlated with the beta diversity of bacterial and fungal communities, even after controlling for environmental factors. Thus, across a global range of temperate grasslands, plant diversity can predict patterns in the composition of soil microbial communities, but not patterns in alpha diversity.
© 2014 John Wiley & Sons Ltd/CNRS.

Keywords:  Aboveground-belowground interactions; archaea; bacteria; fungi; grasslands; microbial biogeography; soil biodiversity

Mesh:

Year:  2014        PMID: 25430889     DOI: 10.1111/ele.12381

Source DB:  PubMed          Journal:  Ecol Lett        ISSN: 1461-023X            Impact factor:   9.492


  95 in total

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10.  Consistent responses of soil microbial communities to elevated nutrient inputs in grasslands across the globe.

Authors:  Jonathan W Leff; Stuart E Jones; Suzanne M Prober; Albert Barberán; Elizabeth T Borer; Jennifer L Firn; W Stanley Harpole; Sarah E Hobbie; Kirsten S Hofmockel; Johannes M H Knops; Rebecca L McCulley; Kimberly La Pierre; Anita C Risch; Eric W Seabloom; Martin Schütz; Christopher Steenbock; Carly J Stevens; Noah Fierer
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