Relative importance of tree species richness, tree functional type, and microenvironment for soil macrofauna communities in European forests

被引:0
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作者
Pierre Ganault
Johanne Nahmani
Stephan Hättenschwiler
Lauren Michelle Gillespie
Jean-François David
Ludovic Henneron
Etienne Iorio
Christophe Mazzia
Bart Muys
Alain Pasquet
Luis Daniel Prada-Salcedo
Janna Wambsganss
Thibaud Decaëns
机构
[1] CNRS,CEFE, Univ Montpellier
[2] EPHE,Normandie University
[3] IRD,Department of Forest Ecology and Management
[4] Univ Paul Valéry Montpellier 3,UAPV UMR 7263 CNRS IRD
[5] UNIROUEN,Division Forest, Nature and Landscape, Department of Earth and Environmental Sciences
[6] ECODIV,CNRS, University of Lorrain
[7] Place E. Blondel,Helmholtz
[8] UFR Sciences et Techniques,Centre for Environmental Research, UFZ
[9] Swedish University of Agricultural Sciences,University of Leipzig
[10] EI,Univeristy of Freiburg
[11] Entomologie and Myriapodologie,undefined
[12] Institut Méditerranéen de Biodiversité et Ecologie,undefined
[13] KU Leuven,undefined
[14] Faculté Des Sciences Et Technologies,undefined
[15] UR AFPA,undefined
[16] ,undefined
[17] Department of Soil Ecology,undefined
[18] Department of Biology,undefined
[19] Chair of Silviculture,undefined
[20] Faculty of Environment and Natural Resources,undefined
来源
Oecologia | 2021年 / 196卷
关键词
Community ecology; Forest ecosystems; Biodiversity-ecosystem functioning; Aboveground-belowground linkages;
D O I
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中图分类号
学科分类号
摘要
Soil fauna communities are major drivers of many forest ecosystem processes. Tree species diversity and composition shape soil fauna communities, but their relationships are poorly understood, notably whether or not soil fauna diversity depends on tree species diversity. Here, we characterized soil macrofauna communities from forests composed of either one or three tree species, located in four different climate zones and growing on different soil types. Using multivariate analysis and model averaging we investigated the relative importance of tree species richness, tree functional type (deciduous vs. evergreen), litter quality, microhabitat and microclimatic characteristics as drivers of soil macrofauna community composition and structure. We found that macrofauna communities in mixed forest stands were represented by a higher number of broad taxonomic groups that were more diverse and more evenly represented. We also observed a switch from earthworm-dominated to predator-dominated communities with increasing evergreen proportion in forest stands, which we interpreted as a result of a lower litter quality and a higher forest floor mass. Finally, canopy openness was positively related to detritivore abundance and biomass, leading to higher predator species richness and diversity probably through trophic cascade effects. Interestingly, considering different levels of taxonomic resolution in the analyses highlighted different facets of macrofauna response to tree species richness, likely a result of both different ecological niche range and methodological constraints. Overall, our study supports the positive effects of tree species richness on macrofauna diversity and abundance through multiple changes in resource quality and availability, microhabitat, and microclimate modifications.
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页码:455 / 468
页数:13
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