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Disentangling community functional components in a litter-macrodetritivore model system reveals the predominance of the mass ratio hypothesis

Recent investigations have shown that two components of community trait composition are important for key ecosystem processes: (i) the community-weighted mean trait value (CWM), related to the mass ratio hypothesis and dominant trait values in the community, and (ii) functional diversity (FD), relat...

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Autores principales: Bílá, Karolína, Moretti, Marco, Bello, Francesco, Dias, André TC, Pezzatti, Gianni B, Van Oosten, Arend Raoul, Berg, Matty P
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons Ltd 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3936387/
https://www.ncbi.nlm.nih.gov/pubmed/24634725
http://dx.doi.org/10.1002/ece3.941
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author Bílá, Karolína
Moretti, Marco
Bello, Francesco
Dias, André TC
Pezzatti, Gianni B
Van Oosten, Arend Raoul
Berg, Matty P
author_facet Bílá, Karolína
Moretti, Marco
Bello, Francesco
Dias, André TC
Pezzatti, Gianni B
Van Oosten, Arend Raoul
Berg, Matty P
author_sort Bílá, Karolína
collection PubMed
description Recent investigations have shown that two components of community trait composition are important for key ecosystem processes: (i) the community-weighted mean trait value (CWM), related to the mass ratio hypothesis and dominant trait values in the community, and (ii) functional diversity (FD), related to the complementarity hypothesis and the divergence of trait values. However, no experiments controlling for the inherent dependence between CWM and FD have been conducted so far. We used a novel experimental framework to disentangle the unique and shared effects of CWM and FD in a leaf litter-macrodetritivore model system. We manipulated isopod assemblages varying in species number, CWM and FD of litter consumption rate to test the relative contribution of these community parameters in the decomposition process. We showed that CWM, but also the combination of CWM and FD, is a main factor controlling litter decomposition. When we tested individual biodiversity components separately, CWM of litter consumption rate showed a significant effect on decomposition, while FD and species richness alone did not. Our study demonstrated that (i) trait composition rather than species diversity drives litter decomposition, (ii) dominant trait values in the community (CWM) play a chief role in driving ecosystem processes, corroborating the mass ratio hypothesis, and (iii) trait dissimilarity can contribute in modulating the overall biodiversity effects. Future challenge is to assess whether the generality of our finding, that is, that dominant trait values (CWM) predominate over trait dissimilarity (FD), holds for other ecosystem processes, environmental conditions and different spatial and temporal scales.
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spelling pubmed-39363872014-03-14 Disentangling community functional components in a litter-macrodetritivore model system reveals the predominance of the mass ratio hypothesis Bílá, Karolína Moretti, Marco Bello, Francesco Dias, André TC Pezzatti, Gianni B Van Oosten, Arend Raoul Berg, Matty P Ecol Evol Original Research Recent investigations have shown that two components of community trait composition are important for key ecosystem processes: (i) the community-weighted mean trait value (CWM), related to the mass ratio hypothesis and dominant trait values in the community, and (ii) functional diversity (FD), related to the complementarity hypothesis and the divergence of trait values. However, no experiments controlling for the inherent dependence between CWM and FD have been conducted so far. We used a novel experimental framework to disentangle the unique and shared effects of CWM and FD in a leaf litter-macrodetritivore model system. We manipulated isopod assemblages varying in species number, CWM and FD of litter consumption rate to test the relative contribution of these community parameters in the decomposition process. We showed that CWM, but also the combination of CWM and FD, is a main factor controlling litter decomposition. When we tested individual biodiversity components separately, CWM of litter consumption rate showed a significant effect on decomposition, while FD and species richness alone did not. Our study demonstrated that (i) trait composition rather than species diversity drives litter decomposition, (ii) dominant trait values in the community (CWM) play a chief role in driving ecosystem processes, corroborating the mass ratio hypothesis, and (iii) trait dissimilarity can contribute in modulating the overall biodiversity effects. Future challenge is to assess whether the generality of our finding, that is, that dominant trait values (CWM) predominate over trait dissimilarity (FD), holds for other ecosystem processes, environmental conditions and different spatial and temporal scales. John Wiley & Sons Ltd 2014-02 2014-01-20 /pmc/articles/PMC3936387/ /pubmed/24634725 http://dx.doi.org/10.1002/ece3.941 Text en © 2014 The Authors. Ecology and Evolution published by John Wiley & Sons Ltd. http://creativecommons.org/licenses/by/3.0/ This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Research
Bílá, Karolína
Moretti, Marco
Bello, Francesco
Dias, André TC
Pezzatti, Gianni B
Van Oosten, Arend Raoul
Berg, Matty P
Disentangling community functional components in a litter-macrodetritivore model system reveals the predominance of the mass ratio hypothesis
title Disentangling community functional components in a litter-macrodetritivore model system reveals the predominance of the mass ratio hypothesis
title_full Disentangling community functional components in a litter-macrodetritivore model system reveals the predominance of the mass ratio hypothesis
title_fullStr Disentangling community functional components in a litter-macrodetritivore model system reveals the predominance of the mass ratio hypothesis
title_full_unstemmed Disentangling community functional components in a litter-macrodetritivore model system reveals the predominance of the mass ratio hypothesis
title_short Disentangling community functional components in a litter-macrodetritivore model system reveals the predominance of the mass ratio hypothesis
title_sort disentangling community functional components in a litter-macrodetritivore model system reveals the predominance of the mass ratio hypothesis
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3936387/
https://www.ncbi.nlm.nih.gov/pubmed/24634725
http://dx.doi.org/10.1002/ece3.941
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