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黄河口浮游和底栖细菌群落的组装过程和来源追踪。

Assembly processes and source tracking of planktonic and benthic bacterial communities in the Yellow River estuary.

机构信息

State Key Laboratory of Microbial Technology, Institute of Microbial Technology, Shandong University, Qingdao, 266237, China.

National Nature Reserve Administration of Yellow River Delta, Dongying, 257091, China.

出版信息

Environ Microbiol. 2021 May;23(5):2578-2591. doi: 10.1111/1462-2920.15480. Epub 2021 Apr 2.

Abstract

Estuaries connect rivers with the ocean and are considered transition regions due to the continuous inputs from rivers. Microbiota from different sources converge and undergo succession in these transition regions, but their assembly mechanisms along environmental gradients remain unclear. Here, we found that salinity had a stronger effect on planktonic than on benthic microbial communities, and the dominant planktonic bacteria changed more distinctly than the dominant benthic bacteria with changes in salinity. The planktonic bacteria in the brackish water came mainly from seawater, which was confirmed in the laboratory, whereas the benthic bacteria were weakly affected by salinity, which appeared to be a mixture of the bacteria from riverine and oceanic sediments. Benthic bacterial community assembly in the sediments was mainly controlled by homogeneous selection and almost unaffected by changes in salinity, the dominant assemblage processes for planktonic bacteria changed dramatically along the salinity gradient, from homogeneous selection in freshwater to drift in seawater. Our results highlight that salinity is the key driver of estuarine microbial succession and that salinity is more important in shaping planktonic than benthic bacterial communities in the Yellow River estuary.

摘要

河口连接着河流和海洋,由于不断受到河流的输入,因此被认为是过渡区域。来自不同来源的微生物在这些过渡区域汇聚并经历演替,但它们沿着环境梯度的组装机制仍不清楚。在这里,我们发现盐度对浮游微生物群落的影响比对底栖微生物群落的影响更大,并且随着盐度的变化,优势浮游细菌的变化比优势底栖细菌更为明显。低盐度水中的浮游细菌主要来自海水,这在实验室中得到了证实,而底栖细菌受盐度的影响较弱,似乎是河口水域和海洋沉积物中细菌的混合物。沉积物中底栖细菌群落的组装主要受均一选择控制,几乎不受盐度变化的影响,而浮游细菌的主要组装过程则沿着盐度梯度发生了剧烈变化,从淡水中的均一选择到海水中的漂流。我们的研究结果强调了盐度是河口微生物演替的关键驱动因素,并且在塑造黄河口浮游细菌群落方面,盐度比底栖细菌群落更为重要。

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