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Biotic homogenization can decrease landscape-scale forest multifunctionality

  • Fons van der Plas
  • , Pete Manning
  • , Santiago Soliveres
  • , Eric Allan
  • , Michael Scherer-Lorenzen
  • , Kris Verheyen
  • , Christian Wirth
  • , Miguel A. Zavala
  • , Evy Ampoorter
  • , Lander Baeten
  • , Luc Barbaro
  • , Juergen Bauhus
  • , Raquel Benavides
  • , Adam Benneter
  • , Damien Bonal
  • , Olivier Bouriaud
  • , Helge Bruelheide
  • , Filippo Bussotti
  • , Monique Carnol
  • , Bastien Castagneyroli
  • Yohan Charbonnier, David Anthony Coomes, Andrea Coppi, Cristina C. Bestias, Seid Muhie Dawud, Hans De Wandeler, Timo Domisch, Leena Finer, Arthur Gessler, Andre Granier, Charlotte Grossiord, Virginie Guyot, Stephan Haettenschwiler, Herve Jactel, Bogdan Jaroszewicz, Franois-Xavier Joly, Tommaso Jucker, Julia Koricheva, Harriet Milligan, Sandra Mueller, Bart Muys, Diem Nguyen, Martina Pollastrini, Sophia Ratcliffe, Karsten Raulund-Rasmussen, Federico Selvi, Jan Stenlid, Fernando Valladares, Lars Vesterdal, Dawid Zielinski, Markus Fischer

Publication: Contribution to journalJournal articlepeer-review

Abstract

Many experiments have shown that local biodiversity loss impairs the ability of ecosystems to maintain multiple ecosystem functions at high levels (multifunctionality). In contrast, the role of biodiversity in driving ecosystem multifunctionality at landscape scales remains unresolved. We used a comprehensive pan-European dataset, including 16 ecosystem functions measured in 209 forest plots across six European countries, and performed simulations to investigate how local plot-scale richness of tree species (alpha-diversity) and their turnover between plots (beta-diversity) are related to landscape-scale multifunctionality. After accounting for variation in environmental conditions, we found that relationships between alpha-diversity and landscape-scale multifunctionality varied from positive to negative depending on the multifunctionality metric used. In contrast, when significant, relationships between beta-diversity and landscape-scale multifunctionality were always positive, because a high spatial turnover in species composition was closely related to a high spatial turnover in functions that were supported at high levels. Our findings have major implications for forest management and indicate that biotic homogenization can have previously unrecognized and negative consequences for large-scale ecosystem multifunctionality.
Original languageEnglish
Pages (from-to)3557-3562
Number of pages6
JournalProceedings of the National Academy of Sciences
Volume113
Issue number13
DOIs
Publication statusPublished - 2016

UN SDGs

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

  1. SDG 12 - Responsible Consumption and Production
    SDG 12 Responsible Consumption and Production
  2. SDG 15 - Life on Land
    SDG 15 Life on Land

Keywords

  • beta-diversity
  • biodiversity
  • ecosystem functioning
  • FunDivEUROPE
  • spatial scale

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