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平衡施肥减少华北地区土壤细菌群落组装的环境过滤作用

Balanced Fertilization Decreases Environmental Filtering on Soil Bacterial Community Assemblage in North China.

作者信息

Feng Youzhi, Guo Zhiying, Zhong Linghao, Zhao Fei, Zhang Jiabao, Lin Xiangui

机构信息

State Key Laboratory of Soil and Sustainable Agriculture, Institute of Soil Science, Chinese Academy of Sciences, Nanjing, China.

Department of Chemistry, Pennsylvania State University at Mont Alto, Mont Alto, PA,United States.

出版信息

Front Microbiol. 2017 Dec 1;8:2376. doi: 10.3389/fmicb.2017.02376. eCollection 2017.

Abstract

Although increasing evidences have emerged for responses of soil microorganisms to fertilizations, the knowledge regarding community assemblages that cause variations in composition is still lacking, as well as the possible feedback to soil fertility. Phylogenetic conservatism of species indicates their similar environmental preferences and/or function traits and phylogenetic signals further can infer community assemblages and influenced ecological processes. Here, we calculated the mean pairwise phylogenetic distance and nearest relative index, characterizing phylogenetic signal and the undergone ecological process to evaluate the community assembly of soil bacterial phylotypes in 20-year fertilized soils. The bacterial community assembly is structured by environmental filtering, regardless of fertilization regime. Soil phosphorous (P) availability imposes selection on community assemblage and influences their community turnover among fertilizations. When P nutrient lacks, the effect of environmental filtering becomes stronger, hence bacterial functional traits become more coherent; this process results into increased intraspecific interactions characterized by co-occurrence network analysis. In contrast, when P nutrient becomes abundant, the environmental selection is mitigated; function traits are evened. This process reduces intraspecific interactions and increases carbon sequestration efficiency, which is finally of great favor to the increases in soil fertility. This study has made the first attempt, at the bacterial level, to understand how fertilization affects agroecosystems. When more phylogenetic information on how nutrient cycling-related microbes respond to fertilization becomes available, the systematic knowledge will eventually provide guidance to optimal fertilization strategies.

摘要

尽管越来越多的证据表明土壤微生物对施肥有响应,但关于导致组成变化的群落组合的知识仍然缺乏,以及对土壤肥力的可能反馈。物种的系统发育保守性表明它们具有相似的环境偏好和/或功能特征,系统发育信号进一步可以推断群落组合和受影响的生态过程。在这里,我们计算了平均成对系统发育距离和最近亲缘指数,以表征系统发育信号和经历的生态过程,从而评估20年施肥土壤中土壤细菌系统型的群落组装。无论施肥制度如何,细菌群落组装都是由环境过滤构建的。土壤磷(P)有效性对群落组合施加选择,并影响施肥间的群落周转。当P养分缺乏时,环境过滤的作用变得更强,因此细菌功能特征变得更加一致;通过共现网络分析,这一过程导致种内相互作用增加。相反,当P养分丰富时,环境选择减弱;功能特征趋于均匀。这一过程减少了种内相互作用,提高了碳固存效率,最终极大地有利于土壤肥力的提高。本研究首次在细菌水平上尝试了解施肥如何影响农业生态系统。当获得更多关于养分循环相关微生物如何响应施肥的系统发育信息时,这些系统知识最终将为优化施肥策略提供指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c76/5716987/f9645e364ff8/fmicb-08-02376-g001.jpg

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