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    Disturbance is more important than seeding or grazing in determining soil microbial communities in a semiarid grassland

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    Name:
    Farrell_et_al-2020-Restoration ...
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    Description:
    Final Accepted Manuscript
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    Author
    Farrell, Hannah L.
    Barberán, Albert
    Danielson, Rachel E.
    Fehmi, Jeffrey S.
    Gornish, Elise S.
    Affiliation
    Univ Arizona, Sch Nat Resources & Environm
    Univ Arizona, Dept Environm Sci
    Issue Date
    2020-04-15
    Keywords
    bacteria
    fungi
    plant species
    reclamation
    restoration
    soil nutrients
    soil properties
    topsoil
    vegetation community
    
    Metadata
    Show full item record
    Publisher
    WILEY
    Citation
    Farrell, H.L., Barberán, A., Danielson, R.E., Fehmi, J.S. and Gornish, E.S. (2020), Disturbance is more important than seeding or grazing in determining soil microbial communities in a semiarid grassland. Restor Ecol. doi:10.1111/rec.13156
    Journal
    RESTORATION ECOLOGY
    Rights
    © 2020 Society for Ecological Restoration.
    Collection Information
    This item from the UA Faculty Publications collection is made available by the University of Arizona with support from the University of Arizona Libraries. If you have questions, please contact us at repository@u.library.arizona.edu.
    Abstract
    A primary goal of ecological restoration is often to return processes and functions to degraded ecosystems. Soil, while often ignored in restoration, supports diverse communities of organisms and is a fundamental actor in providing ecosystem processes and services. We investigated the impact of seeding and livestock grazing on plant communities, soil microorganisms, and soil fertility 3 years after the restoration of a disturbed pipeline corridor in southeastern Arizona. The initial soil disturbance and topsoil treatment, regardless of seeding or grazing, was the most influential factor in determining differences in both plant and microbial communities. Compared with the control, the disturbed and restored sites had greater plant species richness, greater total herbaceous plant cover, greater soil organic matter, higher pH, and differed in soil nutrients. Bacteria and fungi appeared to generally correlate with micro-environment and soil physiochemical properties rather than specific plant species. The undisturbed control had a smaller proportion of bacterial functional groups associated with the breakdown of plant biomass (polysaccharide decomposition) and a smaller proportion of arbuscular mycorrhizal fungi (AMF) compared with disturbed and restored sites. The ability of the unseeded disturbed site to recover robust vegetation may be due in part to the high presence of AMF. These differences show selection for soil microorganisms that thrive in disturbed and restored sites and may contribute to increased plant productivity. Restoration of specific plant species or ecological processes and services would both benefit from better understanding of the impacts of disturbance on soil microorganisms and soil fertility.
    Note
    12 month embargo; published online: 5 March 2020
    ISSN
    1061-2971
    EISSN
    1526-100X
    DOI
    10.1111/rec.13156
    Version
    Final accepted manuscript
    ae974a485f413a2113503eed53cd6c53
    10.1111/rec.13156
    Scopus Count
    Collections
    UA Faculty Publications

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