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Cutting through the smoke: the diversity of microorganisms in deep-sea hydrothermal plumes

机译:消除烟雾:深海热液羽流中的微生物多样性

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摘要

There are still notable gaps regarding the detailed distribution of microorganisms between and within insular habitats such as deep-sea hydrothermal vents. This study investigates the community composition of black smoker vent microorganisms in the Southern Hemisphere, and changes thereof along a spatial and chemical gradient ranging from the vent plume to surrounding waters. We sampled two hydrothermal vent fields, one at the South West Indian Ridge (SWIR), the other at the East Scotia Ridge (ESR). Samples were collected across vent fields at varying vertical distances from the origin of the plumes. The microbial data were sequenced on an Illumina MiSeq platform for the 16SrRNA gene. A substantial amount of vent-specific putative chemosynthetic microorganisms were found, particularly in samples from focused hydrothermal venting. Common vent-specific organisms from both vent fields were the genera Arcobacter, Caminibacter and Sulfurimonas from the Epsilonproteobacteria and the SUP05 group from the Gammaproteobacteria. There were no major differences in microbial composition between SWIR and ESR for focused plume samples. However, within the ESR the diffuse flow and focused samples differed significantly in microbial community composition and relative abundance. For Epsilonproteobacteria, we found evidence of niche-specificity to hydrothermal vent environments. This taxon decreased in abundance by three orders of magnitude from the vent orifice to background water. Epsilonproteobacteria distribution followed a distance–decay relationship as vent-effluents mixed with the surrounding seawater. This study demonstrates strong habitat affinity of vent microorganisms on a metre scale with distinct environmental selection.
机译:在诸如深海热液喷口等岛生境之间和内部的微生物的详细分布方面,仍然存在明显的差距。这项研究调查了南半球黑色吸烟者发泄微生物的群落组成,以及其沿空间和化学梯度(从发泄羽流到周围水域)的变化。我们对两个热液喷口进行了采样,一个在西南印第安岭(SWIR),另一个在东斯科舍脊(ESR)。从烟羽的起点到垂直方向的距离都不同,在通风孔处采集样品。在Illumina MiSeq平台上对16SrRNA基因的微生物数据进行测序。发现了大量排气孔特异性推定的化学合成微生物,尤其是在集中热液排气的样品中。来自两个通风孔领域的常见通风孔特异性生物是来自Epsilon变形杆菌的Arcobacter,Caminibacter和Sulpurimonas属和来自Gammaproteobacteria的SUP05。对于集中羽状样品,SWIR和ESR之间的微生物组成没有重大差异。但是,在ESR内,微生物群落组成和相对丰度在扩散流和聚焦样品方面有显着差异。对于Epsilon变形杆菌,我们发现了对热液喷口环境具有特定生态位的证据。从排气孔到背景水,这个分类单元的丰度降低了三个数量级。随着排气与周围海水的混合,Epsilon变形细菌分布遵循距离-衰减关系。这项研究表明,排放环境中的微生物具有很强的生境亲和力,并且具有独特的环境选择。

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