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[丹江口水库地表水浮游细菌的群落结构与预测功能分析]

[Community Structure and Predictive Functional Analysis of Surface Water Bacterioplankton in the Danjiangkou Reservoir].

作者信息

Zhang Fei, Tian Wei, Sun Feng, Chen Yan, Ding Chuan-Yu, Pang Fa-Hu, Yao Lun-Guang, Li Yu-Ying, Chen Zhao-Jin

机构信息

Collaborative Innovation Center of Water Security for Water Source Region of Mid-route Project of South-North Water Diversion of Henan Province, School of Agricultural Engineering, Nanyang Normal University, Nanyang 473061, China.

Nanjing Institute of Environmental Sciences, Ministry of Environmental Protection, Nanjing 210042, China.

出版信息

Huan Jing Ke Xue. 2019 Mar 8;40(3):1252-1260. doi: 10.13227/j.hjkx.201806122.

Abstract

Bacterioplankton are important components of aquatic ecosystems, and play a crucial role in the global biogeochemical cycle of nitrogen. In this study, surface-water samples were collected from Kuxin (the center of Danjiangkou Reservoir) and Qushou (the Middle Route of the South-to-North Water Diversion Project's canal head) in the Danjiangkou Reservoir in May 2016. Total DNA was isolated, and high-throughput sequencing was performed to analyze the community structure and diversity of bacteria. Phylogenetic analyses of 16S rDNA sequences showed that bacterial communities included species from 12 major phylogenetic groups. The predominant phylogenetic groups included Proteobacteria, Bacteroidetes, Firmicutes, Cyanobacteria, and Verrucomicrobia. The microbial biodiversity of Danjiangkou Reservoir bacterioplankton was greater in water samples from Qushou than in those from Kuxin. PICRUSt (phylogenetic investigation of communities by reconstruction of unobserved states) was used to determine the metabolic and functional abilities of the observed bacterial communities. Our results revealed a wide genetic diversity of organisms involved in various essential processes, such as Amino acid transport and metabolism, Transcription, Energy production and conversion, and Carbohydrate transport and metabolism. Thirty-five metabolic pathways involving nitrogen were detected. Key genes impacting the nitrogen cycle were detected in both the Kuxin and Qushou samples, and these encoded enzymes involved in nitrogen fixation (), nitrification (), denitrification (), and assimilatory and dissimilatory nitrogen reduction to ammonia (). Copy numbers of 16S rRNA genes of each detected phylotype of Danjiangkou Reservoir bacterioplankton were uniformly higher in water samples from Kuxin than in water samples from Qushou. Our analyses of differences in nitrogen abatement potential between water samples, based on bacterial community composition and function, provide a foundation for setting water environmental protection policies in the Danjiangkou Reservoir.

摘要

浮游细菌是水生生态系统的重要组成部分,在全球氮生物地球化学循环中发挥着关键作用。本研究于2016年5月从丹江口水库的库心(丹江口水库中心)和渠首(南水北调中线工程渠首)采集地表水样本。提取总DNA,并进行高通量测序以分析细菌的群落结构和多样性。对16S rDNA序列的系统发育分析表明,细菌群落包括来自12个主要系统发育组的物种。主要的系统发育组包括变形菌门、拟杆菌门、厚壁菌门、蓝细菌门和疣微菌门。丹江口水库浮游细菌的微生物多样性在渠首水样中比在库心水样中更高。利用PICRUSt(通过重建未观察状态对群落进行系统发育研究)来确定所观察到的细菌群落的代谢和功能能力。我们的结果揭示了参与各种基本过程的生物具有广泛的遗传多样性,如氨基酸转运和代谢、转录、能量产生和转换以及碳水化合物转运和代谢。检测到35条涉及氮的代谢途径。在库心和渠首样本中均检测到影响氮循环的关键基因,这些基因编码参与固氮()、硝化作用()、反硝化作用()以及同化和异化氮还原为氨()的酶。丹江口水库浮游细菌各检测系统型的16S rRNA基因拷贝数在库心水样中均高于渠首水样。我们基于细菌群落组成和功能对水样间氮减排潜力差异的分析,为制定丹江口水库的水环境保护政策提供了依据。

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