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A comparison of the strength of biodiversity effects across multiple functions

Authors :
Allan, Eric
Weisser, Wolfgang
Fischer, Markus
Schulze, Ernst-Detlef
Weigelt, Alexandra
Roscher, Christiane
Baade, Jussi
Barnard, Romain
Beßler, Holger
Buchmann, Nina
Ebeling, Anne
Eisenhauer, Nico
Engels, Christof
Fergus, Alexander
Gleixner, Gerd
Gubsch, Marlén
Halle, Stefan
Klein, Alexandra
Kertscher, Ilona
Kuu, Annely
Lange, Markus
Le Roux, Xavier
Meyer, Sebastian
Migunova, Varvara
Milcu, Alexandru
Niklaus, Pascal
Oelmann, Yvonne
Pašalić, Esther
Petermann, Jana
Poly, Franck
Rottstock, Tanja
Sabais, Alexander
Scherber, Christoph
Scherer-Lorenzen, Michael
Scheu, Stefan
Steinbeiss, Sibylle
Schwichtenberg, Guido
Temperton, Vicky
Tscharntke, Teja
Voigt, Winfried
Wilcke, Wolfgang
Wirth, Christian
Schmid, Bernhard
Allan, Eric
Weisser, Wolfgang
Fischer, Markus
Schulze, Ernst-Detlef
Weigelt, Alexandra
Roscher, Christiane
Baade, Jussi
Barnard, Romain
Beßler, Holger
Buchmann, Nina
Ebeling, Anne
Eisenhauer, Nico
Engels, Christof
Fergus, Alexander
Gleixner, Gerd
Gubsch, Marlén
Halle, Stefan
Klein, Alexandra
Kertscher, Ilona
Kuu, Annely
Lange, Markus
Le Roux, Xavier
Meyer, Sebastian
Migunova, Varvara
Milcu, Alexandru
Niklaus, Pascal
Oelmann, Yvonne
Pašalić, Esther
Petermann, Jana
Poly, Franck
Rottstock, Tanja
Sabais, Alexander
Scherber, Christoph
Scherer-Lorenzen, Michael
Scheu, Stefan
Steinbeiss, Sibylle
Schwichtenberg, Guido
Temperton, Vicky
Tscharntke, Teja
Voigt, Winfried
Wilcke, Wolfgang
Wirth, Christian
Schmid, Bernhard
Publication Year :
2018

Abstract

In order to predict which ecosystem functions are most at risk from biodiversity loss, meta-analyses have generalised results from biodiversity experiments over different sites and ecosystem types. In contrast, comparing the strength of biodiversity effects across a large number of ecosystem processes measured in a single experiment permits more direct comparisons. Here, we present an analysis of 418 separate measures of 38 ecosystem processes. Overall, 45% of processes were significantly affected by plant species richness, suggesting that, while diversity affects a large number of processes not all respond to biodiversity. We therefore compared the strength of plant diversity effects between different categories of ecosystem processes, grouping processes according to the year of measurement, their biogeochemical cycle, trophic level and compartment (above- or belowground) and according to whether they were measures of biodiversity or other ecosystem processes, biotic or abiotic and static or dynamic. Overall, and for several individual processes, we found that biodiversity effects became stronger over time. Measures of the carbon cycle were also affected more strongly by plant species richness than were the measures associated with the nitrogen cycle. Further, we found greater plant species richness effects on measures of biodiversity than on other processes. The differential effects of plant diversity on the various types of ecosystem processes indicate that future research and political effort should shift from a general debate about whether biodiversity loss impairs ecosystem functions to focussing on the specific functions of interest and ways to preserve them individually or in combination

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1156701673
Document Type :
Electronic Resource