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  3. Functional traits mediate the effect of land use on drivers of community stability within and across trophic levels.
 

Functional traits mediate the effect of land use on drivers of community stability within and across trophic levels.

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BORIS DOI
10.48620/85272
Publisher DOI
10.1126/sciadv.adp6445
PubMed ID
39854460
Description
Understanding how land use affects temporal stability is crucial to preserve biodiversity and ecosystem functions. Yet, the mechanistic links between land-use intensity and stability-driving mechanisms remain unclear, with functional traits likely playing a key role. Using 13 years of data from 300 sites in Germany, we tested whether and how trait-based community features mediate the effect of land-use intensity on acknowledged stability drivers (compensatory dynamics, portfolio effect, and dominant species variability), within and across plant and arthropod communities. Trait-based plant features, especially the prevalence of acquisitive strategies along the leaf-economics spectrum, were the main land-use intensity mediators within and across taxonomic and trophic levels, consistently influencing dominant species variability. Functional diversity also mediated land-use intensity effects but played a lesser role. Our analysis discloses trait-based community features as key mediators of land-use effects on stability drivers, emphasizing the need to consider multi-trophic functional interactions to better understand complex ecosystem dynamics.
Date of Publication
2025-01-24
Publication Type
Article
Subject(s)
600 Technology > 610 Medicine & health
Language(s)
en
Contributor(s)
Sperandii, Marta Gaia
Bazzichetto, Manuele
Götzenberger, Lars
Moretti, Marco
Achury, Rafael
Blüthgen, Nico
Fischer, Markus
Institute of Plant Sciences (IPS)
Hölzel, Norbert
Klaus, Valentin H
Kleinebecker, Till
Neff, Felix
Prati, Daniel
Institute of Plant Sciences (IPS)
Bolliger, Ralph
Institute of Plant Sciences (IPS)
Seibold, Sebastian
Simons, Nadja K
Staab, Michael
Weisser, Wolfgang W
de Bello, Francesco
Gossner, Martin M
Additional Credits
Institute of Plant Sciences (IPS)
Series
Science Advances
Publisher
American Association for the Advancement of Science
ISSN
2375-2548
Access(Rights)
open.access
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