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    Community-level consequences of mycorrhizae depend on phosphorus availability

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    Collins_Foster_community-level.pdf (341.8Kb)
    Issue Date
    2009-09-01
    Author
    Collins, Cathy Diane
    Foster, Bryan L.
    Publisher
    Ecological Society of America
    Type
    Article
    Article Version
    Scholarly/refereed, publisher version
    Rights
    Copyright by the Ecological Society of America.
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    Abstract
    In grasslands, arbuscular mycorrhizal fungi (AMF) mediate plant diversity; whether AMF increase or decrease diversity depends on the relative mycotrophy in dominant vs. subordinate plants. In this study we investigated whether soil nutrient levels also influence the ability of AMF to mediate plant species coexistence. First, we developed a conceptual model that predicts the influence of AMF on diversity along a soil nutrient gradient for plant communities dominated by mycotrophic and non-mycotrophic species. To test these predictions, we manipulated phosphorus to create a soil nutrient gradient for mesocosm communities composed of native prairie grasses and then compared community properties for mesocosms with and without AMF. We found that, where P was limiting, AMF increased plant diversity and productivity, and also altered community structure; however, at high P, AMF had little influence on aboveground communities. Compositional differences among treatments were due largely to a trade-off in the relative abundance of C3 vs. C4 species. Our study emphasizes how environmental constraints on mutualisms may govern community- and ecosystem-level properties.
    Description
    This is the publisher's version, also available electronically from http://www.esa.org/esa.
    URI
    http://hdl.handle.net/1808/13320
    DOI
    https://doi.org/10.1890/08-1560.1
    ISSN
    0012-9658
    Collections
    • Ecology & Evolutionary Biology Scholarly Works [1516]
    Citation
    Cathy D. Collins and Bryan L. Foster 2009. Community-level consequences of mycorrhizae depend on phosphorus availability. Ecology 90:2567–2576. http://dx.doi.org/10.1890/08-1560.1

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    Contact KU ScholarWorks
    785-864-8983
    KU Libraries
    1425 Jayhawk Blvd
    Lawrence, KS 66045
    785-864-8983

    KU Libraries
    1425 Jayhawk Blvd
    Lawrence, KS 66045
    Image Credits
     

     

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