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希腊火山弧科隆布海底火山活动与非活动硫化物烟囱之间的微生物群落分化

Microbial community differentiation between active and inactive sulfide chimneys of the Kolumbo submarine volcano, Hellenic Volcanic Arc.

作者信息

Christakis Christos A, Polymenakou Paraskevi N, Mandalakis Manolis, Nomikou Paraskevi, Kristoffersen Jon Bent, Lampridou Danai, Kotoulas Georgios, Magoulas Antonios

机构信息

Hellenic Centre for Marine Research, Institute of Marine Biology, Biotechnology and Aquaculture, 71500, Heraklion, Crete, Greece.

Faculty of Geology and Geoenvironment, National and Kapodistrian University of Athens, Panepistimioupoli Zografou, 15784, Athens, Greece.

出版信息

Extremophiles. 2018 Jan;22(1):13-27. doi: 10.1007/s00792-017-0971-x. Epub 2017 Oct 25.

Abstract

Over the last decades, there has been growing interest about the ecological role of hydrothermal sulfide chimneys, their microbial diversity and associated biotechnological potential. Here, we performed dual-index Illumina sequencing of bacterial and archaeal communities on active and inactive sulfide chimneys collected from the Kolumbo hydrothermal field, situated on a geodynamic convergent setting. A total of 15,701 OTUs (operational taxonomic units) were assigned to 56 bacterial and 3 archaeal phyla, 133 bacterial and 16 archaeal classes. Active chimney communities were dominated by OTUs related to thermophilic members of Epsilonproteobacteria, Aquificae and Deltaproteobacteria. Inactive chimney communities were dominated by an OTU closely related to the archaeon Nitrosopumilus sp., and by members of Gammaproteobacteria, Deltaproteobacteria, Planctomycetes and Bacteroidetes. These lineages are closely related to phylotypes typically involved in iron, sulfur, nitrogen, hydrogen and methane cycling. Overall, the inactive sulfide chimneys presented highly diverse and uniform microbial communities, in contrast to the active chimney communities, which were dominated by chemolithoautotrophic and thermophilic lineages. This study represents one of the most comprehensive investigations of microbial diversity in submarine chimneys and elucidates how the dissipation of hydrothermal activity affects the structure of microbial consortia in these extreme ecological niches.

摘要

在过去几十年中,人们对热液硫化物烟囱的生态作用、其微生物多样性及相关生物技术潜力的兴趣与日俱增。在此,我们对从位于地球动力学汇聚环境中的科隆布热液区采集的活跃和不活跃硫化物烟囱上的细菌和古菌群落进行了双指数Illumina测序。总共15701个操作分类单元(OTU)被归为56个细菌门和3个古菌门、133个细菌纲和16个古菌纲。活跃烟囱群落以与埃希氏菌属、产水菌门和δ变形菌门嗜热成员相关的OTU为主。不活跃烟囱群落则以与古菌嗜硝化菌属密切相关的一个OTU以及γ变形菌门、δ变形菌门、浮霉菌门和拟杆菌门的成员为主。这些谱系与通常参与铁、硫、氮、氢和甲烷循环的系统发育型密切相关。总体而言,与以化能自养和嗜热谱系为主的活跃烟囱群落相比,不活跃的硫化物烟囱呈现出高度多样且均匀的微生物群落。这项研究是对海底烟囱微生物多样性最全面的调查之一,并阐明了热液活动的消散如何影响这些极端生态位中微生物群落的结构。

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