Taxonomic and functional biogeographies of soil bacterial communities across the Tibet plateau are better explained by abiotic conditions than distance and plant community composition

Author:

Liang Qingqing1,Mod Heidi K.23ORCID,Luo Shuaiwei4,Ma Beibei1,Yang Kena1,Chen Beibei1,Qi Wei4,Zhao Zhigang4,Du Guozhen4,Guisan Antoine35,Ma Xiaojun1ORCID,Le Roux Xavier6

Affiliation:

1. School of Life Sciences Lanzhou University Lanzhou China

2. Department of Geosciences and Geography University of Helsinki Helsinki Finland

3. Department of Ecology and Evolution University of Lausanne Lausanne Switzerland

4. College of Ecology Lanzhou University Lanzhou China

5. Institute of Earth Surface Dynamics University of Lausanne Lausanne Switzerland

6. INRAE Université de Lyon, Université Lyon 1, CNRS, vetAgroSup, UMR 1418 INRAE, UMR 5557 CNRS, Ecologie Microbienne LEM Villeurbanne France

Abstract

AbstractThe processes governing soil bacteria biogeography are still not fully understood. It remains unknown how the importance of environmental filtering and dispersal differs between bacterial taxonomic and functional biogeography, and whether their importance is scale‐dependent. We sampled soils across the Tibet plateau, with distances among plots ranging from 20 m to 1550 km. Taxonomic composition of bacterial community was characterized by 16S amplicon sequencing and functional community composition by qPCR targeting 9 functional groups involved in N dynamics. Factors representing climate, soil and plant community were measured to assess different facets of environmental dissimilarity. Both bacterial taxonomic and functional dissimilarities were more related to abiotic dissimilarity than biotic (vegetation) dissimilarity or distance. Taxonomic dissimilarity was mostly explained by differences in soil pH and mean annual temperature (MAT), while functional dissimilarity was linked to differences in soil N and P availabilities and N:P ratio. Soil pH and MAT remained the main determinants of taxonomic dissimilarity across spatial scales. In contrast, the explanatory variables of N‐related functional dissimilarity varied across the scales, with soil moisture and organic matter having the highest role across short distances (<~330 km), and available P, N:P ratio and distance being important over long distances (>~660 km). Our results demonstrate how biodiversity dimension (taxonomic versus functional aspects) and spatial scale influence the factors driving soil bacterial biogeography.

Publisher

Wiley

Subject

Genetics,Ecology, Evolution, Behavior and Systematics

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