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[长江流域河流与湖泊/水库中浮游细菌群落特征]

[Characteristics of Bacterioplankton Community Between River and Lake/Reservoir in the Yangtze River Basin].

作者信息

Hu Yu-Xin, Zhang Jing, Huang Jie, Duan Chun-Jian, Li Tian-Cui, Liu Wei, Wang Ying-Cai, Hu Sheng

机构信息

Yangtze River Basin Ecological Environment Monitoring and Scientific Research Center, Yangtze River Basin Ecological Environment Supervision and Administration Bureau, Ministry of Ecology and Environment, Wuhan 430010, China.

Henan Branch of the South-to-North Water Diversion Middle Route Project Construction Administration Bureau, Zhengzhou 450018, China.

出版信息

Huan Jing Ke Xue. 2022 Mar 8;43(3):1414-1423. doi: 10.13227/j.hjkx.202106173.

Abstract

To explore the bacterioplankton community structure in the Yangtze River basin, water samples were collected from 177 sampling sites, including the source to the estuary along the mainstream of the Yangtze River, eight primary tributaries, and several lakes and reservoirs. The 16S rRNA genes were used to explore the bacterioplankton communities based on single molecule real-time sequencing, with the aim to study the diversity and community characteristics in a border sampling area and higher species annotation accuracy. Based on -diversity analysis, the river area had higher species richness than that of the lake/reservoir area, resulting in these two areas having different bacterioplankton community diversities. Based on the diversity analysis, the bacterioplankton showed different community compositions between the river and lake/reservoir areas; temperature was the key environmental factor for the river area, and pH was the key environmental factor for the lake/reservoir area. In order to study the influence of different bacterioplankton communities, this study further investigated the species, function, and community differences between the river and lake/reservoir areas. The results were as follows:for the river area, the eutrophication level gradually increased from west to east along the mainstream of the Yangtze River, resulting in a gradually increased relative abundance of specific species. The lake/reservoir area had a higher risk of cyanobacteria bloom, and the opportunistic pathogen had a high relative abundance in the Danjiangkou Reservoir, indicating a higher ecological risk. For species composition, the river and lake/reservoir areas shared most OTUs (84%); however, some uncultured bacteria showed a high relative abundance in the Yangtze River, meaning the bacterioplankton of the Yangtze River basin still requires further study. In general, the river and lake/reservoir shared most species; however, the different bacterioplankton diversity, community composition, and enriched species made the river and lake/reservoir have different key environmental factors, and they also showed differences in ecological functions.

摘要

为探究长江流域浮游细菌群落结构,从177个采样点采集水样,这些采样点包括长江干流从源头到河口、八条主要支流以及若干湖泊和水库。基于单分子实时测序,利用16S rRNA基因探究浮游细菌群落,旨在研究边界采样区域的多样性和群落特征,并提高物种注释准确性。基于α多样性分析,河流区域的物种丰富度高于湖泊/水库区域,导致这两个区域具有不同的浮游细菌群落多样性。基于β多样性分析,河流区域和湖泊/水库区域的浮游细菌群落组成不同;温度是河流区域的关键环境因素,pH是湖泊/水库区域的关键环境因素。为研究不同浮游细菌群落的影响,本研究进一步调查了河流区域和湖泊/水库区域之间的物种、功能及群落差异。结果如下:对于河流区域,长江干流从西向东富营养化水平逐渐升高,导致特定物种的相对丰度逐渐增加。湖泊/水库区域蓝藻水华风险较高,丹江口水库中机会致病菌相对丰度较高,表明生态风险较高。就物种组成而言,河流区域和湖泊/水库区域共享大部分OTU(84%);然而,一些未培养细菌在长江中相对丰度较高,这意味着长江流域的浮游细菌仍需进一步研究。总体而言,河流区域和湖泊/水库区域共享大部分物种;然而,不同的浮游细菌多样性、群落组成和富集物种使得河流区域和湖泊/水库区域具有不同的关键环境因素,并且它们在生态功能上也存在差异。

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