首页|Forest density and edge effects on soil microbial communities in deciduous forests across Europe

Forest density and edge effects on soil microbial communities in deciduous forests across Europe

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? 2022Forest fragmentation increases the proportion of edge area and this, in turn, induces changes in forest structure, species composition and microclimate. These factors are also strongly determined by the forest management regime. Although the interactive effects of edges and density on forest plant communities have been extensively studied, little is known about the response of the belowground communities. Here we investigated the variation of soil microbiota in 45 deciduous broadleaved forests along a latitudinal gradient from Italy to Norway at a continental scale across Europe. Phospholipid fatty acid (PLFA) and neutral lipid fatty acid (NLFA) were used to map the microbial community in the forest edge and interior across three forest densities (dense, intermediate, open forest). Microbial community composition was only affected by forest edge effects and not by forest density. We did not find any interaction effects between forest density and distance-to-edge. Arbuscular mycorrhizal fungi (AMF) were significantly more abundant in edges and Gram-negative bacteria more abundant in interiors, respectively. The microbial community composition was closely related to soil pH, soil potassium and nitrogen, texture (percent sand) and soil temperature. Soil pH was positively correlated with the saprotrophic fungi and potassium was positively correlated with Gram-negative bacteria but negatively correlated with Actinobacteria. In sum, we reveal the notable effects of forest edges on the soil AMF abundance. This result indicated that AMF could possess a stronger affinity with species growing in the edges, which may help to improve plant performance under hostile conditions herein.

Deciduous forestsEdge effectForest densityMicrobial communityPLFA

Vangansbeke P.、De Frenne P.、Verheyen K.、Boeckx P.、Lenoir J.、Orczewska A.、Ponette Q.、Hedwall P.-O.、Brunet J.、Iacopetti G.、Yang J.、Blondeel H.、Meeussen C.、Govaert S.

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Forest & Nature Lab Department of Environment Faculty of Biosciences Engineering Ghent University

Isotope Bioscience Laboratory Department of Green Chemistry and Technology Faculty of Biosciences Engineering Ghent University

UMR CNRS 7058 “Ecologie et Dynamique des Systèmes Anthropisés” (EDYSAN) Université de Picardie Jules Verne

Institute of Biology Biotechnology and Environmental Protection Faculty of Natural Sciences University of Silesia

UCLouvain – Université catholique de Louvain Earth & Life Institute

Southern Swedish Forest Research Centre Swedish University of Agricultural Sciences

Department of Agriculture Food Environment and Forestry University of Florence

College of Resources and Environment University of Chinese Academy of Sciences

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2022

Applied Soil Ecology

Applied Soil Ecology

SCI
ISSN:0929-1393
年,卷(期):2022.179
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