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Asynchrony and functional diversity couple herbivore community dynamics to host plant diversity

  • Ming Qiang Wang
  • , Georg Albert
  • , Carlo L. Seifert
  • , Douglas Chesters
  • , Helge Bruelheide
  • , Yi Li
  • , Jing Ting Chen
  • , Andréa Davrinche
  • , Sylvia Haider
  • , Shan Li
  • , Goddert von Oheimb
  • , Tobias Proß
  • , Keping Ma
  • , Xiaojuan Liu
  • , Arong Luo
  • , Andreas Schuldt*
  • , Chao Dong Zhu*
  • *Corresponding author for this work

Research output: Journal contributionsJournal articlesResearchpeer-review

3 Citations (Scopus)

Abstract

Biodiversity loss can destabilize ecosystem functioning. How biodiversity–stability relationships are interlinked across trophic levels remains poorly investigated, however, limiting our ability to predict ecosystem-level consequences of declining biodiversity. Here, we analyze the drivers of multi-year herbivore community stability—as a key connector between primary producers and higher trophic levels—and its coupling with host tree diversity and growth stability along a subtropical tree diversity gradient. Phylogenetic diversity, abundance asynchrony and population stability of herbivores emerge as key intra-community regulators of herbivore temporal stability. These regulators, in turn, are strongly affected by changes in tree species richness through tree functional diversity, tree growth asynchrony, and tree growth population stability. Importantly, accounting for herbivore dietary specialization unveils clear stabilizing effects of tree species richness on the community stability of specialists but not of generalists. For the overall herbivore community, higher tree richness results in less stable abundance dynamics. Our findings suggest that biodiversity loss will propagate bottom-up to affect the stability of communities at higher trophic levels, and particularly destabilize communities of more vulnerable specialists. Global change and plantation management may thus also compromise biodiversity conservation by reducing abundance and species richness stability of higher trophic levels.

Original languageEnglish
Article number762
JournalNature Communications
Volume17
Issue number1
Number of pages11
ISSN2041-1723
DOIs
Publication statusPublished - 12.2026

Bibliographical note

Publisher Copyright:
© The Author(s) 2026.

UN SDGs

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

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

Research areas and keywords

  • Biology

ASJC Scopus Subject Areas

  • General Chemistry
  • General Biochemistry,Genetics and Molecular Biology
  • General
  • General Physics and Astronomy
  • Physics and Astronomy(all)
  • Chemistry(all)
  • Biochemistry, Genetics and Molecular Biology(all)

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