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Reconciling links between diversity and population stability across global plant communities

  • Xiaobin Pan
  • , Yann Hautier
  • , Jan Leps
  • , Shaopeng Wang
  • , Kathryn E. Barry
  • , Manuele Bazzichetto
  • , Stefano Chelli
  • , Jiri Dolezal
  • , Nico Eisenhauer
  • , Franz Essl
  • , Felicia M. Fischer
  • , Oscar Godoy
  • , Daniel Gomez-garcia
  • , Lars Gotzenberger
  • , Clara Gracia
  • , Anaclara Guido
  • , Lauren M. Hallett
  • , Susan Harrison
  • , Miao He
  • , Andrew Hector
  • Pubin Hong, Forest Isbell, George A. Kowalchuk, Victor Lecegui, Xiaofei Li, Maowei Liang, Frederique Louault, Maria Majekova, Rob Marrs, Neha Mohanbabu, Akira S. Mori, Robin J. Pakeman, Alain Paquette, Begona Peco, Josep Penuelas, Valerio D. Pillar, Marta Rueda, Wolfgang Schmidt, Jules Segrestin, Marta Gaia Sperandii, Enrique Valencia, Vigdis Vandvik, Shengnan Wang, David Ward, Susan Wiser, Ben A. Woodcock, Chong Xu, Truman Young, Fei-hai Yu, Liting Zheng, Zhiwei Zhong, Francesco De Bello

Research output: Contribution to journalArticlepeer-review

Abstract

Maintaining ecological stability is essential for sustaining ecosystem functions and the benefits they provide to society. Ecological theory predicts that plant diversity destabilizes local populations, yet empirical studies report variable effects. We hypothesize that this discrepancy arises at least in part from differences captured by different diversity (average vs cumulative richness, i.e. the mean annual richness vs the cumulative richness across years) and stability metrics (abundance‐unweighted vs weighted mean population stability). To test this, we analyzed data from > 8000 permanent vegetation plots across biomes on five continents. We found a negative (i.e. destabilizing) diversity–stability relationship when using abundance‐weighted rather than unweighted measures of population stability, which are more influenced by dominant species. Similarly, cumulative richness – capturing total species occurrence over time and long‐term turnover – reveals a stronger destabilizing effect compared to average annual richness. Our findings reveal that, when specific metrics of diversity and stability are considered, more species and potentially the associated increase in interspecific competition tend to destabilize populations across natural ecosystems world‐wide – particularly those of dominant species.
Original languageEnglish
Article numberPMID 9882884
Number of pages12
JournalNew Phytologist
DOIs
Publication statusPublished - 16 Jan 2026

Keywords

  • Average richness
  • Biodiversity
  • Cumulative richness
  • Dominance
  • Populations
  • Rare species
  • Unweighted and weighted population stability

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