Navigation auf zora.uzh.ch

Search ZORA

ZORA (Zurich Open Repository and Archive)

Meta-analysis reveals that vertebrates enhance plant litter decomposition at the global scale

Tuo, Bin; García-Palacios, Pablo; Guo, Chao; Yan, En-Rong; Berg, Matty P; Cornelissen, Johannes H C (2024). Meta-analysis reveals that vertebrates enhance plant litter decomposition at the global scale. Nature Ecology and Evolution:online.

Abstract

Evidence is mounting that vertebrate defaunation greatly impacts global biogeochemical cycling. Yet, there is no comprehensive assessment of the potential vertebrate influence over plant decomposition, despite litter decay being one of the largest global carbon fluxes. We therefore conducted a global meta-analysis to evaluate vertebrate effects on litter mass loss and associated element release across terrestrial and aquatic ecosystems. Here we show that vertebrates affected litter decomposition by various direct and indirect pathways, increasing litter mass loss by 6.7% on average, and up to 34.4% via physical breakdown. This positive vertebrate impact on litter mass loss was consistent across contrasting litter types (woody and non-woody), climatic regions (boreal, temperate and tropical), ecosystem types (aquatic and terrestrial) and vertebrate taxa, but disappeared when evaluating litter nitrogen and phosphorus release. Moreover, we found evidence of interactive effects between vertebrates and non-vertebrate decomposers on litter mass loss, and a larger influence of vertebrates at mid-to-late decomposition stages, contrasting with the invertebrate effect known to be strongest at early decomposition stage. Our synthesis demonstrates a global vertebrate control over litter mass loss, and further stresses the need to account for vertebrates when assessing the impacts of biodiversity loss on biogeochemical cycles.

Additional indexing

Item Type:Journal Article, refereed, original work
Communities & Collections:07 Faculty of Science > Department of Plant and Microbial Biology
07 Faculty of Science > Zurich-Basel Plant Science Center
Dewey Decimal Classification:580 Plants (Botany)
Scopus Subject Areas:Life Sciences > Ecology, Evolution, Behavior and Systematics
Physical Sciences > Ecology
Language:English
Date:9 January 2024
Deposited On:22 Jan 2024 15:29
Last Modified:27 Feb 2025 02:38
Publisher:Nature Publishing Group
ISSN:2397-334X
OA Status:Closed
Publisher DOI:https://doi.org/10.1038/s41559-023-02292-6
PubMed ID:38195996

Metadata Export

Statistics

Citations

Dimensions.ai Metrics
6 citations in Web of Science®
4 citations in Scopus®
Google Scholar™

Altmetrics

Downloads

1 download since deposited on 22 Jan 2024
0 downloads since 12 months
Detailed statistics

Authors, Affiliations, Collaborations

Similar Publications