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湖泊浮游细菌群落随时间形成过程中确定性和随机性过程之间的平衡。

The balance between deterministic and stochastic processes in structuring lake bacterioplankton community over time.

作者信息

Aguilar Pablo, Sommaruga Ruben

机构信息

Lake and Glacier Ecology Research Group, Department of Ecology, University of Innsbruck, Innsbruck, Austria.

出版信息

Mol Ecol. 2020 Aug;29(16):3117-3130. doi: 10.1111/mec.15538. Epub 2020 Jul 24.

Abstract

One major goal in microbial ecology is to establish the importance of deterministic and stochastic processes for community assembly. This is relevant to explain and predict how diversity changes at different temporal scales. However, understanding of the relative quantitative contribution of these processes and particularly of how they may change over time is limited. Here, we assessed the importance of deterministic and stochastic processes based on the analysis of the bacterial microbiome in one alpine oligotrophic and in one subalpine mesotrophic lake, which were sampled over two consecutive years at different time scales. We found that in both lakes, homogeneous selection (i.e., a deterministic process) was the main assembly process at the annual scale and explained 66.7% of the bacterial community turnover, despite differences in diversity and temporal variability patterns between ecosystems. However, in the alpine lake, homogenizing dispersal (i.e., a stochastic process) was the most important assembly process at the short-term (daily and weekly) sampling scale and explained 55% of the community turnover. Alpha diversity differed between lakes, and seasonal stability of the bacterial community was more evident in the oligotrophic lake than in the mesotrophic one. Our results demonstrate how important forces that govern temporal changes in bacterial communities act at different time scales. Overall, our study validates on a quantitative basis, the importance and dominance of deterministic processes in structuring bacterial communities in freshwater environments over long time scales.

摘要

微生物生态学的一个主要目标是确定确定性和随机性过程对群落组装的重要性。这对于解释和预测不同时间尺度上的多样性变化至关重要。然而,对于这些过程的相对定量贡献,尤其是它们如何随时间变化的理解仍然有限。在此,我们基于对一个高山贫营养湖泊和一个亚高山中营养湖泊中细菌微生物组的分析,评估了确定性和随机性过程的重要性,这两个湖泊在连续两年内以不同时间尺度进行了采样。我们发现,在这两个湖泊中,同质化选择(即一种确定性过程)在年度尺度上是主要的组装过程,解释了细菌群落周转率的66.7%,尽管生态系统之间在多样性和时间变异性模式上存在差异。然而,在高山湖泊中,同质化扩散(即一种随机性过程)在短期(每日和每周)采样尺度上是最重要的组装过程,解释了群落周转率的55%。两个湖泊的α多样性有所不同,细菌群落的季节稳定性在贫营养湖泊中比在中营养湖泊中更为明显。我们的结果表明,控制细菌群落时间变化的重要力量如何在不同时间尺度上发挥作用。总体而言,我们的研究在定量基础上验证了确定性过程在长时间尺度上构建淡水环境中细菌群落的重要性和主导地位。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b9d/7540538/28a064742c45/MEC-29-3117-g001.jpg

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