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Temporal and spatial changes of microbial community in an industrial effluent receiving area in Hangzhou Bay

机译:杭州湾工业污水接收区微生物群落的时空变化

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Anthropogenic activities usually contaminate water environments, and have led to the eutrophication of many estuaries and shifts in microbial communities. In this study, the temporal and spatial changes of themicrobial community in an industrial effluent receiving area in Hangzhou Bay were investigated by 454 pyrosequencing. The bacterial community showed higher richness and biodiversity than the archaeal community in all sediments. Proteobacteria dominated in the bacterial communities of all the samples; Marine_Group_I and Methanomicrobia were the two dominant archaeal classes in the effluent receiving area. PCoA and AMOVA revealed strong seasonal but minor spatial changes in both bacterial and archaeal communities in the sediments. The seasonal changes of the bacterial community were less significant than those of the archaeal community, which mainly consisted of fluctuations in abundance of a large proportion of longstanding species rather than the appearance and disappearance of major archaeal species. Temperature was found to positively correlate with the dominant bacteria, Betaproteobacteria, and negatively correlate with the dominant archaea, Marine_Group_I; and might be the primary driving force for the seasonal variation of the microbial community. (C) 2016 The Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences. Published by Elsevier B.V.
机译:人为活动通常会污染水环境,并导致许多河口的富营养化和微生物群落的迁移。本研究以454个焦磷酸测序技术研究了杭州湾某工业废水接收区微生物群落的时空变化。在所有沉积物中,细菌群落比古细菌群落表现出更高的丰富度和生物多样性。变形杆菌在所有样品的细菌群落中占主导。 Marine_Group_I和Methanomicrobia是污水接收区的两个主要古细菌类别。 PCoA和AMOVA揭示了沉积物中细菌和古细菌群落的强烈季节性变化,但空间变化很小。细菌群落的季节变化不如古细菌群落的季节变化重要,该季节变化主要由很大比例的长期存在物种的丰度波动引起,而不是主要古细菌物种的出现和消失。发现温度与优势细菌Betaproteobacteria正相关,而与优势古细菌Marine_Group_I负相关。可能是微生物群落季节性变化的主要驱动力。 (C)2016中国科学院生态环境研究中心。由Elsevier B.V.发布

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