Meta-analysis shows that wild large herbivores shape ecosystem properties and promote spatial heterogeneity

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作者
Jonas Trepel
Elizabeth le Roux
Andrew J. Abraham
Robert Buitenwerf
Johannes Kamp
Jeppe A. Kristensen
Melanie Tietje
Erick J. Lundgren
Jens-Christian Svenning
机构
[1] Aarhus University,Center for Ecological Dynamics in a Novel Biosphere (ECONOVO), Department of Biology
[2] Aarhus University,Section for Ecoinformatics and Biodiversity, Department of Biology
[3] University of Göttingen,Department of Conservation Biology
[4] Aarhus University,Center for Biodiversity Dynamics in a Changing World (BIOCHANGE), Department of Biology
[5] University of Pretoria,Mammal Research Institute, Department of Zoology and Entomology
[6] Northern Arizona University,School of Informatics, Computing and Cyber Systems
[7] University of Oxford,Environmental Change Institute, School of Geography and the Environment
[8] Queensland University of Technology,School of Biology and Environmental Science, Faculty of Science
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摘要
Megafauna (animals ≥45 kg) have probably shaped the Earth’s terrestrial ecosystems for millions of years with pronounced impacts on biogeochemistry, vegetation, ecological communities and evolutionary processes. However, a quantitative global synthesis on the generality of megafauna effects on ecosystems is lacking. Here we conducted a meta-analysis of 297 studies and 5,990 individual observations across six continents to determine how wild herbivorous megafauna influence ecosystem structure, ecological processes and spatial heterogeneity, and whether these impacts depend on body size and environmental factors. Despite large variability in megafauna effects, we show that megafauna significantly alter soil nutrient availability, promote open vegetation structure and reduce the abundance of smaller animals. Other responses (14 out of 26), including, for example, soil carbon, were not significantly affected. Further, megafauna significantly increase ecosystem heterogeneity by affecting spatial heterogeneity in vegetation structure and the abundance and diversity of smaller animals. Given that spatial heterogeneity is considered an important driver of biodiversity across taxonomic groups and scales, these results support the hypothesis that megafauna may promote biodiversity at large scales. Megafauna declined precipitously in diversity and abundance since the late Pleistocene, and our results indicate that their restoration would substantially influence Earth’s terrestrial ecosystems.
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页码:705 / 716
页数:11
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