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Determinants of plant community compositional change are equally affected by global change.

  • M. Avolio
  • , K. Komatsu
  • , S. Collins
  • , E. Grman
  • , S. Koerner
  • , A. Tredennick
  • , K. Wilcox
  • , S. Baer
  • , E. Boughton
  • , A. Britton
  • , B. Foster
  • , L. Gough
  • , M. Hovenden
  • , F. Isbell
  • , A. Jentsch
  • , D. Johnson
  • , A. Knapp
  • , J. Kreyling
  • , A. Langley
  • , C. Lortie
  • R. McCulley, J. McLaren, P. Reich, E. Seabloom, M. Smit, K. Suding, B. Suttle, P. Tognetti
  • Johns Hopkins University
  • Smithsonian Institute (USA)
  • University of New Mexico
  • Eastern Michigan University
  • University of North Carolina
  • Western Ecosystems Technology
  • University of Wyoming
  • University of Kansas
  • MacArthur Agro-ecology Research Center
  • Towson University
  • University of Tasmania
  • University of Minnesota
  • University of Bayreuth
  • Virginia Institute of Marine Science
  • Colorado State University
  • Ernst Moritz Arndt University
  • Villanova University
  • University of York (Canada)
  • University of Kentucky
  • University of Texas
  • University of Colorado
  • Angelo Coast Range Reserve
  • Universidad de Buenos Aires

Research output: Contribution to journalArticlepeer-review

Abstract

Global change is impacting plant community composition, but the mechanisms underlying these changes are unclear. Using a dataset of 58 global change experiments, we tested the five fundamental mechanisms of community change: changes in evenness and richness, reordering, species gains and losses. We found 71% of communities were impacted by global change treatments, and 88% of communities that were exposed to two or more global change drivers were impacted. Further, all mechanisms of change were equally likely to be affected by global change treatments—species losses and changes in richness were just as common as species gains and reordering. We also found no evidence of a progression of community changes, for example, reordering and changes in evenness did not precede species gains and losses. We demonstrate that all processes underlying plant community composition changes are equally affected by treatments and often occur simultaneously, necessitating a wholistic approach to quantifying community changes.
Original languageEnglish
Pages (from-to)1892-1904
JournalEcology Letters
Volume24
DOIs
Publication statusPublished - 28 Apr 2021

Keywords

  • Data synthesis
  • Evenness
  • Global change experiments
  • Herbaceous plants
  • Re-ordering
  • Richness
  • Species gains
  • Species losses

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