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马里亚纳弧和弧后地区以化能营养驱动的热液微生物席的群落结构

Community Structure of Lithotrophically-Driven Hydrothermal Microbial Mats from the Mariana Arc and Back-Arc.

作者信息

Hager Kevin W, Fullerton Heather, Butterfield David A, Moyer Craig L

机构信息

Department of Biology, Western Washington UniversityBellingham, WA, United States.

National Oceanic and Atmospheric Administration Pacific Marine Environmental Lab, Joint Institute for the Study of the Atmosphere and Ocean, University of WashingtonSeattle, WA, United States.

出版信息

Front Microbiol. 2017 Aug 28;8:1578. doi: 10.3389/fmicb.2017.01578. eCollection 2017.

Abstract

The Mariana region exhibits a rich array of hydrothermal venting conditions in a complex geological setting, which provides a natural laboratory to study the influence of local environmental conditions on microbial community structure as well as large-scale patterns in microbial biogeography. We used high-throughput amplicon sequencing of the bacterial small subunit (SSU) rRNA gene from 22 microbial mats collected from four hydrothermally active locations along the Mariana Arc and back-arc to explore the structure of lithotrophically-based microbial mat communities. The vent effluent was classified as iron- or sulfur-rich corresponding with two distinct community types, dominated by either Zetaproteobacteria or Epsilonproteobacteria, respectively. The Zetaproteobacterial-based communities had the highest richness and diversity, which supports the hypothesis that Zetaproteobacteria function as ecosystem engineers creating a physical habitat within a chemical environment promoting enhanced microbial diversity. Gammaproteobacteria were also high in abundance within the iron-dominated mats and some likely contribute to primary production. In addition, we also compare sampling scale, showing that bulk sampling of microbial mats yields higher diversity than micro-scale sampling. We present a comprehensive analysis and offer new insights into the community structure and diversity of lithotrophically-driven microbial mats from a hydrothermal region associated with high microbial biodiversity. Our study indicates an important functional role of for the Zetaproteobacteria altering the mat habitat and enhancing community interactions and complexity.

摘要

马里亚纳地区在复杂的地质环境中展现出丰富多样的热液喷口条件,这为研究当地环境条件对微生物群落结构的影响以及微生物生物地理学的大规模模式提供了一个天然实验室。我们对从马里亚纳海沟弧前和弧后四个热液活跃地点采集的22个微生物席中的细菌小亚基(SSU)rRNA基因进行了高通量扩增子测序,以探索基于化能无机营养的微生物席群落的结构。根据与两种不同群落类型相对应的情况,将喷口流出物分类为富含铁或富含硫,这两种群落类型分别以ζ变形菌纲或ε变形菌纲为主。以ζ变形菌纲为主的群落具有最高的丰富度和多样性,这支持了以下假设:ζ变形菌纲作为生态系统工程师,在化学环境中创造了一个物理栖息地,促进了微生物多样性的增强。γ变形菌纲在以铁为主的微生物席中也大量存在,其中一些可能对初级生产有贡献。此外,我们还比较了采样规模,结果表明对微生物席进行大量采样比微观采样能产生更高的多样性。我们进行了全面分析,并对来自一个与高微生物多样性相关的热液区域的化能无机营养驱动的微生物席的群落结构和多样性提供了新的见解。我们的研究表明,ζ变形菌纲在改变微生物席栖息地、增强群落相互作用和复杂性方面具有重要的功能作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/77b9/5609546/2efae1c81df2/fmicb-08-01578-g0001.jpg

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