首页> 外文期刊>Journal of marine systems: journal of the European Association of Marine Sciences and Techniques >Comparative metagenomic analysis of the microbial communities in the surroundings of Iheya north and Iheya ridge hydrothermal fields reveals insights into the survival strategy of microorganisms in deep-sea environments
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Comparative metagenomic analysis of the microbial communities in the surroundings of Iheya north and Iheya ridge hydrothermal fields reveals insights into the survival strategy of microorganisms in deep-sea environments

机译:Iheya North和Iheya Ridge Hydrohermal领域周围的微生物社区对比较分析分析揭示了深海环境中微生物存活策略的见解

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摘要

In this study, metagenomic analysis was performed to investigate the taxonomic compositions and metabolic profiles of the microbial communities inhabiting the sediments in the surroundings of Iheya North and Iheya Ridge hydrothermal fields. The microbial communities in four different samples were found to be dominated by bacteria and, to a much lesser extent, archaea belonging to the phyla Proteobacteria, Actinobacteria, Planctomycetes, Firmicutes, Deinococcus-Thermus, and Nitrospirae, which play important roles in the cycling of carbon, nitrogen, and sulfur. All four microbial communities (i) contained chemoautotrophs and heterotrophs, the former probably fixed CO2 via various carbon fixation pathways, and the latter may degrade organic matters using nitrate and sulfate as electron acceptors, (ii) exhibited an abundance of DNA repair genes and bacterial sulfur oxidation mediated by reverse sulfate reduction, and (iii) harbored bacteria and archaea involved in anaerobic methane oxidation via intra-aerobic denitrification and reverse methanogenesis, which were found for the first time in hydrothermal areas. Furthermore, genes involved in DNA repair, reductive acetyl-CoA pathway, and ammonia metabolism were possibly affected by distance to the vent fields. These findings facilitate our understanding of the strategies of the microbial communities to adapt to the environments in deep sea areas associated with hydrothermal vents. (C) 2016 Elsevier B.V. All rights reserved.
机译:在该研究中,进行了偏见分析,以研究居住在Iheya North和Iheya岭水热场周围沉积物的微生物组合物和代谢谱的分类组成和代谢谱。发现四种不同样品中的微生物群落以细菌为主,并且在较小的程度上,属于植物植物植物,肌动杆菌,平分菌,常规,Deinococcus-Thermus和Nitrospirae的较大程度,在循环中起重要作用碳,氮和硫。所有四个微生物社区(I)含有化学植物和异诊,前者可能通过各种碳固定途径固定CO 2,并且后者可能使用硝酸盐和硫酸盐降解有机物质,因为电子受体,(ii)表现出丰富的DNA修复基因和细菌通过逆向硫酸盐还原介导的硫氧化,(III)通过有氧碳化反硝化和逆转甲烷发生,涉及厌氧甲烷氧化的含有厌氧甲烷氧化,这是在热热区域的第一次发现的。此外,参与DNA修复,还原乙酰基 - COA途径和氨代谢的基因可能受到通风场的距离的影响。这些调查结果有助于了解微生物社区的策略,以适应与水热通风口相关的深海地区的环境。 (c)2016年Elsevier B.v.保留所有权利。

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