Erosion reduces soil microbial diversity, network complexity and multifunctionality

Эрозия снижает микробное разнообразие почвы, сложность сетей и многофункциональность
Michael J. Sadowsky, Qian Zhang, Peter B. Reich, Baoyuan Liu, Samiran Banerjee, Marcel G. A. van der Heijden, Liping Qiu, Hansong Zhu, Satoshi Ishii, Xiaoxu Jia, Mingan Shao, Huan Jiao, Haiqiang Li, Xiaorong Wei
2021-03-12

microbial network complexitynitrogen cycling bacteriasoil erosionsoil microbial diversitysoil multifunctionality
While soil erosion drives land degradation, the impact of erosion on soil microbial communities and multiple soil functions remains unclear. This hinders our ability to assess the true impact of erosion on soil ecosystem services and our ability to restore eroded environments. Here we examined the effect of erosion on microbial communities at two sites with contrasting soil texture and climates. Eroded plots had lower microbial network complexity, fewer microbial taxa, and fewer associations among microbial taxa, relative to non-eroded plots. Soil erosion also shifted microbial community composition, with decreased relative abundances of dominant phyla such as Proteobacteria, Bacteroidetes, and Gemmatimonadetes. In contrast, erosion led to an increase in the relative abundances of some bacterial families involved in N cycling, such as Acetobacteraceae and Beijerinckiaceae. Changes in microbiota characteristics were strongly related with erosion-induced changes in soil multifunctionality. Together, these results demonstrate that soil erosion has a significant negative impact on soil microbial diversity and functionality.
1
Changes in microbial community characteristics were strongly associated with erosion-induced changes in soil multifunctionality.
2
Erosion increased the relative abundances of bacterial families involved in nitrogen cycling, including Acetobacteraceae and Beijerinckiaceae.
3
Erosion shifted microbial community composition and decreased the relative abundances of dominant phyla, including Proteobacteria, Bacteroidetes, and Gemmatimonadetes.
4
Overall, soil erosion negatively affected soil microbial diversity and functionality.
5
Soil erosion reduced microbial network complexity, taxon richness, and associations among microbial taxa at two sites with contrasting soils and climates.

Soil microbial communities and multifunctionality in eroded versus non-eroded soils

The effects of soil erosion on microbial diversity, network complexity, community composition, and soil multifunctionality

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2021-03-12
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Authors
Michael J. Sadowsky
Qian Zhang
Peter B. Reich
Baoyuan Liu
Samiran Banerjee
Marcel G. A. van der Heijden
Liping Qiu
Hansong Zhu
Satoshi Ishii
Xiaoxu Jia
Mingan Shao
Huan Jiao
Haiqiang Li
Xiaorong Wei
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