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- W2773878871 abstract "Summary World‐wide conversion of natural forests to other land uses has profound effects on soil microbial communities. However, how soil microbial β‐diversity responds to land‐use change and its driving mechanisms remains poorly understood. In this study, therefore, we examined the effect of forest conversion from native broad‐leaved forest to coniferous plantation on soil microbial β‐diversity and its underlying mechanisms in both summer and winter in subtropical China. Microbial communities increasingly differed in structure as geographical distance between them increased, and the slope of the relationship among distances and community similarity differed among forest covers. In general, as with microbial β‐diversity, slopes also shifted across seasons. Finally, null deviations of bacterial and fungal communities were lower in coniferous plantation and presented opposing seasonal variations with greater influences of deterministic processes in summer for soil fungi and in winter for soil bacteria. Integrating previous frameworks with our β‐null model results, we propose a conceptual model to link microbial secondary succession to stochastic/deterministic shifts in forest ecosystems. Overall, forest conversion induced significant increases in stochastic processes in both bacterial and fungal community assemblies. Therefore, our results highlight the importance of spatiotemporal scales to assess the influence of land‐use change on microbial β‐diversity." @default.
- W2773878871 created "2017-12-22" @default.
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- W2773878871 date "2018-01-01" @default.
- W2773878871 modified "2023-10-01" @default.
- W2773878871 title "Forest conversion induces seasonal variation in microbial β‐diversity" @default.
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- W2773878871 cites W1898338332 @default.
- W2773878871 cites W1920295170 @default.
- W2773878871 cites W1946171492 @default.
- W2773878871 cites W1970441300 @default.
- W2773878871 cites W1972661203 @default.
- W2773878871 cites W1985544238 @default.
- W2773878871 cites W2005306137 @default.
- W2773878871 cites W2009138626 @default.
- W2773878871 cites W2013187801 @default.
- W2773878871 cites W2021575064 @default.
- W2773878871 cites W2026927102 @default.
- W2773878871 cites W2031611770 @default.
- W2773878871 cites W2038036959 @default.
- W2773878871 cites W2050079248 @default.
- W2773878871 cites W2051201019 @default.
- W2773878871 cites W2059182707 @default.
- W2773878871 cites W2066402881 @default.
- W2773878871 cites W2068381362 @default.
- W2773878871 cites W2069708014 @default.
- W2773878871 cites W2073810410 @default.
- W2773878871 cites W2079664170 @default.
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- W2773878871 cites W2083857556 @default.
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- W2773878871 cites W2124351063 @default.
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- W2773878871 cites W2461616610 @default.
- W2773878871 cites W2465003886 @default.
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- W2773878871 doi "https://doi.org/10.1111/1462-2920.14017" @default.
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