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Drivers of temporal changes in temperate forest plant diversity vary across spatial scales

  • Markus Bernhardt-Roemermann
  • , Lander Baeten
  • , Dylan Craven
  • , Pieter De Frenne
  • , Radim Hedl
  • , Jonathan Lenoir
  • , Didier Bert
  • , Jorg Brunet
  • , Marketa Chudomelova
  • , Guillaume Decocq
  • , Hartmut Dierschke
  • , Thomas Dirnboeck
  • , Inken Doerfler
  • , Thilo Heinken
  • , Martin Hermy
  • , Patrick Hommel
  • , Bogdan Jaroszewicz
  • , Andrzej Keczynski
  • , Daniel L. Kelly
  • , Keith J. Kirby
  • Martin Kopecky, Martin Macek, Frantisek Malis, Michael Mirtl, Fraser J. G. Mitchell, Tobias Naaf, Miles Newman, George Peterken, Petr Petrik, Wolfgang Schmidt, Tibor Standovar, Zoltan Toth, Hans Van Calster, Gorik Verstraeten, Jozef Vladovic, Ondrej Vild, Monika Wulf, Kris Verheyen

Publikation: Bidrag till tidskriftArtikel i vetenskaplig tidskriftPeer review

Sammanfattning

Global biodiversity is affected by numerous environmental drivers. Yet, the extent to which global environmental changes contribute to changes in local diversity is poorly understood. We investigated biodiversity changes in a meta-analysis of 39 resurvey studies in European temperate forests (3988 vegetation records in total, 17-75years between the two surveys) by assessing the importance of (i) coarse-resolution (i.e., among sites) vs. fine-resolution (i.e., within sites) environmental differences and (ii) changing environmental conditions between surveys. Our results clarify the mechanisms underlying the direction and magnitude of local-scale biodiversity changes. While not detecting any net local diversity loss, we observed considerable among-site variation, partly explained by temporal changes in light availability (a local driver) and density of large herbivores (a regional driver). Furthermore, strong evidence was found that presurvey levels of nitrogen deposition determined subsequent diversity changes. We conclude that models forecasting future biodiversity changes should consider coarse-resolution environmental changes, account for differences in baseline environmental conditions and for local changes in fine-resolution environmental conditions.
OriginalspråkEngelska
Sidor (från-till)3726-3737
Antal sidor12
TidskriftGlobal Change Biology
Volym21
Nummer10
DOI
StatusPublicerad - 2015

FN:s SDG:er

Detta resultat bidrar till följande hållbara utvecklingsmål:

  1. SDG 13 – Bekämpa klimatförändringarna
    SDG 13 – Bekämpa klimatförändringarna
  2. SDG 15 – Ekosystem och biologisk mångfald
    SDG 15 – Ekosystem och biologisk mångfald

Nyckelord

  • atmospheric nitrogen deposition
  • evenness
  • forestREplot
  • forest management
  • game browsing
  • Shannon diversity
  • spatiotemporal resurvey data
  • species richness

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