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中国黄土高原亚高山针叶林土壤细菌群落的组装机制。

Assembly mechanisms of soil bacterial communities in subalpine coniferous forests on the Loess Plateau, China.

机构信息

Institute of Loess Plateau, Shanxi University, Taiyuan, 030006, P. R. China.

Faculty of Environment Economics, Shanxi University of Finance and Economics, Taiyuan, 030006, P. R. China.

出版信息

J Microbiol. 2019 Jun;57(6):461-469. doi: 10.1007/s12275-019-8373-7. Epub 2019 May 27.

Abstract

Microbial community assembly is affected by trade-offs between deterministic and stochastic processes. However, the mechanisms underlying the relative influences of the two processes remain elusive. This knowledge gap limits our ability to understand the effects of community assembly processes on microbial community structures and functions. To better understand community assembly mechanisms, the community dynamics of bacterial ecological groups were investigated based on niche breadths in 23 soil plots from subalpine coniferous forests on the Loess Plateau in Shanxi, China. Here, the overall community was divided into the ecological groups that corresponded to habitat generalists, 'other taxa' and specialists. Redundancy analysis based on Bray-Curtis distances (db-RDA) and multiple regression tree (MRT) analysis indicated that soil organic carbon (SOC) was a general descriptor that encompassed the environmental gradients by which the communities responded to, because it can explain more significant variations in community diversity patterns. The three ecological groups exhibited different niche optima and degrees of specialization (i.e., niche breadths) along the SOC gradient, suggesting the presence of a gradient in tolerance for environmental heterogeneity. The inferred community assembly processes varied along the SOC gradient, wherein a transition was observed from homogenizing dispersal to variable selection that reflects increasing deterministic processes. Moreover, the ecological groups were inferred to perform different community functions that varied with community composition, structure. In conclusion, these results contribute to our understanding of the trade-offs between community assembly mechanisms and the responses of community structure and function to environmental gradients.

摘要

微生物群落的组装受到确定性和随机性过程之间权衡的影响。然而,这两个过程相对影响的机制仍然难以捉摸。这一知识空白限制了我们理解群落组装过程对微生物群落结构和功能的影响的能力。为了更好地理解群落组装机制,本研究基于中国山西黄土高原亚高山针叶林的 23 个土壤样点的生态位宽度,研究了细菌生态群落在群落动态中的作用。在这里,将整个群落分为对应于生境广适者、“其他分类群”和专化者的生态群。基于 Bray-Curtis 距离(db-RDA)和多元回归树(MRT)分析的冗余分析表明,土壤有机碳(SOC)是一个通用描述符,它通过社区对环境梯度的响应来涵盖环境梯度,因为它可以解释更多关于群落多样性模式的显著变化。这三个生态群沿着 SOC 梯度表现出不同的生态位最优值和专业化程度(即生态位宽度),这表明存在着对环境异质性的容忍度梯度。推断的群落组装过程沿着 SOC 梯度而变化,从同质化扩散到可变选择的转变反映了确定性过程的增加。此外,推断生态群体会执行不同的群落功能,这些功能随着群落组成和结构的变化而变化。总之,这些结果有助于我们理解群落组装机制与群落结构和功能对环境梯度的响应之间的权衡。

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