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The importance of species addition ‘versus’ replacement varies over succession in plant communities after glacier retreat

  • Isabel Cantera,
  • Alexis Carteron,
  • Alessia Guerrieri,
  • Silvio Marta,
  • Aurélie Bonin,
  • Roberto Ambrosini,
  • Fabien Anthelme,
  • Roberto Sergio Azzoni,
  • Peter Almond,
  • Pablo Alviz Gazitúa,
  • Sophie Cauvy-Fraunié,
  • Jorge Luis Ceballos Lievano,
  • Pritam Chand,
  • Milap Chand Sharma,
  • John Clague,
  • Justiniano Alejo Cochachín Rapre,
  • Chiara Compostella,
  • Rolando Cruz Encarnación,
  • Olivier Dangles,
  • Andre Eger,
  • Sergey Erokhin,
  • Andrea Franzetti,
  • Ludovic Gielly,
  • Fabrizio Gili,
  • Mauro Gobbi,
  • Sigmund Hågvar,
  • Norine Khedim,
  • Rosa Isela Meneses,
  • Gwendolyn Peyre,
  • Francesca Pittino,
  • Antoine Rabatel,
  • Nurai Urseitova,
  • Yan Yang,
  • Vitalii Zaginaev,
  • Andrea Zerboni,
  • Anaïs Zimmer,
  • Pierre Taberlet,
  • Guglielmina Adele Diolaiuti,
  • Jerome Poulenard,
  • Wilfried Thuiller,
  • Marco Caccianiga,
  • Gentile Francesco Ficetola

摘要

The mechanisms underlying plant succession remain highly debated. Due to the local scope of most studies, we lack a global quantification of the relative importance of species addition ‘versus’ replacement. We assessed the role of these processes in the variation (β-diversity) of plant communities colonizing the forelands of 46 retreating glaciers worldwide, using both environmental DNA and traditional surveys. Our findings indicate that addition and replacement concur in determining community changes in deglaciated sites, but their relative importance varied over time. Taxa addition dominated immediately after glacier retreat, as expected in harsh environments, while replacement became more important for late-successional communities. These changes were aligned with total β-diversity changes, which were more pronounced between early-successional communities than between late-successional communities (>50 yr since glacier retreat). Despite the complexity of community assembly during plant succession, the observed global pattern suggests a generalized shift from the dominance of facilitation and/or stochastic processes in early-successional communities to a predominance of competition later on.