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Asynchrony among local communities stabilises ecosystem function of metacommunities

  • Kevin R. Wilcox
  • , Andrew T. Tredennick
  • , Sally E. Koerner
  • , Emily Grman
  • , Lauren M. Hallett
  • , Meghan L. Avolio
  • , Kimberly J. La Pierre
  • , Gregory R. Houseman
  • , Forest Isbell
  • , David Samuel Johnson
  • , Juha M. Alatalo
  • , Andrew H. Baldwin
  • , Edward W. Bork
  • , Elizabeth H. Boughton
  • , William D. Bowman
  • , Andrea J. Britton
  • , James F. Cahill
  • , Scott L. Collins
  • , Guozhen Du
  • , Anu Eskelinen
  • Laura Gough, Anke Jentsch, Christel Kern, Kari Klanderud, Alan K. Knapp, Juergen Kreyling, Yiqi Luo, Jennie R. McLaren, Patrick Megonigal, Vladimir Onipchenko, Janet Prevey, Jodi N. Price, Clare H. Robinson, Osvaldo E. Sala, Melinda D. Smith, Nadejda A. Soudzilovskaia, Lara Souza, David Tilman, Shannon R. White, Zhuwen Xu, Laura Yahdjian, Qiang Yu, Pengfei Zhang, Yunhai Zhang
  • University of Oklahoma
  • Utah State University
  • University of North Carolina
  • Eastern Michigan University
  • University of Oregon
  • Johns Hopkins University
  • Smithsonian Environmental Research Centre
  • Wichita State University
  • University of Minnesota
  • Virginia Institute of Marine Science
  • Qatar University
  • University of Maryland
  • University of Alberta
  • Archbold Biological Station
  • University of Colorado Boulder
  • University of New Mexico
  • Lanzhou University
  • Helmholtz Centre for Environmental Research
  • University of Oulu
  • Towson University
  • University of Bayreuth
  • USDA Forest Service
  • Norwegian University of Life Sciences
  • Colorado State University
  • University of Greifswald
  • University of Texas at El Paso
  • Lomonosov Moscow State University
  • USDA Forest Service - Pacific Northwest Research Station
  • Charles Sturt University
  • University of Manchester
  • Arizona State University
  • Leiden University
  • Government of Alberta
  • Chinese Academy of Sciences
  • Universidad de Buenos Aires
  • Chinese Academy of Agricultural Sciences
  • Aarhus University

Research output: Contribution to journalArticlepeer-review

Abstract

Temporal stability of ecosystem functioning increases the predictability and reliability of ecosystem services, and understanding the drivers of stability across spatial scales is important for land management and policy decisions. We used species-level abundance data from 62 plant communities across five continents to assess mechanisms of temporal stability across spatial scales. We assessed how asynchrony (i.e. different units responding dissimilarly through time) of species and local communities stabilised metacommunity ecosystem function. Asynchrony of species increased stability of local communities, and asynchrony among local communities enhanced metacommunity stability by a wide range of magnitudes (1–315%); this range was positively correlated with the size of the metacommunity. Additionally, asynchronous responses among local communities were linked with species’ populations fluctuating asynchronously across space, perhaps stemming from physical and/or competitive differences among local communities. Accordingly, we suggest spatial heterogeneity should be a major focus for maintaining the stability of ecosystem services at larger spatial scales.
Original languageEnglish
Pages (from-to)1534-1545
Number of pages12
JournalEcology Letters
Volume20
Issue number12
DOIs
Publication statusPublished - Dec 2017

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 15 - Life on Land
    SDG 15 Life on Land

Keywords

  • Alpha Diversity
  • Alpha variability
  • Beta Diversity
  • Biodiversity
  • CoRRE data base
  • Patchiness
  • Plant communities
  • Primary productivity
  • Species synchrony

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