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DOI10.1038/s41467-021-23931-1
Contrasting responses of above- and belowground diversity to multiple components of land-use intensity
Le Provost G.; Thiele J.; Westphal C.; Penone C.; Allan E.; Neyret M.; van der Plas F.; Ayasse M.; Bardgett R.D.; Birkhofer K.; Boch S.; Bonkowski M.; Buscot F.; Feldhaar H.; Gaulton R.; Goldmann K.; Gossner M.M.; Klaus V.H.; Kleinebecker T.; Krauss J.; Renner S.; Scherreiks P.; Sikorski J.; Baulechner D.; Blüthgen N.; Bolliger R.; Börschig C.; Busch V.; Chisté M.; Fiore-Donno A.M.; Fischer M.; Arndt H.; Hoelzel N.; John K.; Jung K.; Lange M.; Marzini C.; Overmann J.; Paŝalić E.; Perović D.J.; Prati D.; Schäfer D.; Schöning I.; Schrumpf M.; Sonnemann I.; Steffan-Dewenter I.; Tschapka M.; Türke M.; Vogt J.; Wehner K.; Weiner C.; Weisser W.; Wells K.; Werner M.; Wolters V.; Wubet T.; Wurst S.; Zaitsev A.S.; Manning P.
发表日期2021
ISSN2041-1723
卷号12期号:1
英文摘要Land-use intensification is a major driver of biodiversity loss. However, understanding how different components of land use drive biodiversity loss requires the investigation of multiple trophic levels across spatial scales. Using data from 150 agricultural grasslands in central Europe, we assess the influence of multiple components of local- and landscape-level land use on more than 4,000 above- and belowground taxa, spanning 20 trophic groups. Plot-level land-use intensity is strongly and negatively associated with aboveground trophic groups, but positively or not associated with belowground trophic groups. Meanwhile, both above- and belowground trophic groups respond to landscape-level land use, but to different drivers: aboveground diversity of grasslands is promoted by diverse surrounding land-cover, while belowground diversity is positively related to a high permanent forest cover in the surrounding landscape. These results highlight a role of landscape-level land use in shaping belowground communities, and suggest that revised agroecosystem management strategies are needed to conserve whole-ecosystem biodiversity. © 2021, The Author(s).
语种英语
scopus关键词agricultural ecosystem; belowground biomass; biodiversity; forest cover; grassland; land use change; trophic structure; agroecosystem; article; biodiversity; Europe; forest; grassland; human; land use; landscape; agriculture; animal; biodiversity; ecosystem; food chain; herbivory; insect; microbiology; plant; Europe; Agriculture; Animals; Biodiversity; Ecosystem; Europe; Food Chain; Forests; Grassland; Herbivory; Insecta; Plants; Soil Microbiology
来源期刊Nature Communications
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/251406
作者单位Senckenberg Biodiversity and Climate Research Centre (SBIK-F), Senckenberg Gesellschaft für Naturforschung, Frankfurt, Germany; Thünen Institute of Biodiversity, Braunschweig, Germany; Functional Agrobiodiversity, Department of Crop Sciences, University of Göttingen, Göttingen, Germany; Institute of Plant Sciences, University of Bern, Bern, Switzerland; Systematic Botany and Functional Biodiversity, Institute of Biology, Leipzig University, Leipzig, Germany; Plant Ecology and Nature Conservation Group, Wageningen University & Research, Wageningen, Netherlands; Institute of Evolutionary Ecology and Conservations Genomics, University of Ulm, Ulm, Germany; Department of Earth and Environmental Sciences, The University of Manchester, Manchester, United Kingdom; Department of Ecology, Brandenburg University of Technology, Cottbus, Germany; Biodiversity and Conservation Biology, WSL Swiss Federal Research Institute, Birmensdorf, Switzerland; Institute of Zoology, Terrestrial Ecology, University of Cologne, Köln...
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Le Provost G.,Thiele J.,Westphal C.,et al. Contrasting responses of above- and belowground diversity to multiple components of land-use intensity[J],2021,12(1).
APA Le Provost G..,Thiele J..,Westphal C..,Penone C..,Allan E..,...&Manning P..(2021).Contrasting responses of above- and belowground diversity to multiple components of land-use intensity.Nature Communications,12(1).
MLA Le Provost G.,et al."Contrasting responses of above- and belowground diversity to multiple components of land-use intensity".Nature Communications 12.1(2021).
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