Biodiversity promotes ecosystem functioning despite environmental change

Pubin Hong, Bernhard Schmid, Frederik De Laender, Nico Eisenhauer, Xingwen Zhang, Haozhen Chen, Dylan Craven, Hans J. De Boeck, Yann Hautier, Owen L. Petchey, Peter B. Reich, Bastian Steudel, Maren Striebel, Madhav P. Thakur, Shaopeng Wang*

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

83 Citations (Scopus)

Abstract

Three decades of research have demonstrated that biodiversity can promote the functioning of ecosystems. Yet, it is unclear whether the positive effects of biodiversity on ecosystem functioning will persist under various types of global environmental change drivers. We conducted a meta-analysis of 46 factorial experiments manipulating both species richness and the environment to test how global change drivers (i.e. warming, drought, nutrient addition or CO2 enrichment) modulated the effect of biodiversity on multiple ecosystem functions across three taxonomic groups (microbes, phytoplankton and plants). We found that biodiversity increased ecosystem functioning in both ambient and manipulated environments, but often not to the same degree. In particular, biodiversity effects on ecosystem functioning were larger in stressful environments induced by global change drivers, indicating that high-diversity communities were more resistant to environmental change. Using a subset of studies, we also found that the positive effects of biodiversity were mainly driven by interspecific complementarity and that these effects increased over time in both ambient and manipulated environments. Our findings support biodiversity conservation as a key strategy for sustainable ecosystem management in the face of global environmental change.

Original languageEnglish
Pages (from-to)555-569
Number of pages15
JournalEcology Letters
Volume25
Issue number2
DOIs
Publication statusPublished - Feb 2022

Keywords

  • biodiversity
  • ecosystem function
  • environmental change
  • meta-analysis
  • stress gradient hypothesis

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