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The enigmatic SAR202 cluster up close: shedding light on a globally distributed dark ocean lineage involved in sulfur cycling

机译:神秘的SAR202集群近在咫尺:揭示了参与硫循环的全球分布的暗海沿袭

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摘要

The dark ocean microbiota represents the unknown majority in the global ocean waters. The SAR202 cluster belonging to the phylum Chloroflexi was the first microbial lineage discovered to specifically inhabit the aphotic realm, where they are abundant and globally distributed. The absence of SAR202 cultured representatives is a significant bottleneck towards understanding their metabolic capacities and role in the marine environment. In this work, we use a combination of metagenome-assembled genomes from deep-sea datasets and publicly available single-cell genomes to construct a genomic perspective of SAR202 phylogeny, metabolism and biogeography. Our results suggest that SAR202 cluster members are medium sized, free-living cells with a heterotrophic lifestyle, broadly divided into two distinct clades. We present the first evidence of vertical stratification of these microbes along the meso- and bathypelagic ocean layers. Remarkably, two distinct species of SAR202 cluster are highly abundant in nearly all deep bathypelagic metagenomic datasets available so far. SAR202 members metabolize multiple organosulfur compounds, many appear to be sulfite-oxidizers and are predicted to play a major role in sulfur turnover in the dark water column. This concomitantly suggests an unsuspected availability of these nutrient sources to allow for the high abundance of these microbes in the deep sea.
机译:暗海微生物群占全球海洋水域的未知多数。属于叶绿菌门的SAR202簇是发现的第一个专门居住在无水域的微生物谱系,无水域丰富且遍布全球。缺少SAR202培养的代表是了解其代谢能力和在海洋环境中的作用的重大瓶颈。在这项工作中,我们结合使用了深海数据集的元基因组组装基因组和公开可用的单细胞基因组,以构建SAR202系统发育,代谢和生物地理学的基因组视角。我们的结果表明,SAR202簇成员是中等大小的,具有异养生活方式的自由生活细胞,大致分为两个不同的进化枝。我们提出了这些微生物沿中,深层海洋层垂直分层的第一个证据。值得注意的是,到目前为止,几乎所有深层浮游巨基因组数据集中,SAR202簇的两个不同物种非常丰富。 SAR202成员代谢多种有机硫化合物,其中许多似乎是亚硫酸盐氧化剂,并且预计在暗水塔中的硫转化中起主要作用。随之而来的是,这些营养素来源的供应意想不到,可以使深海中这些微生物的含量很高。

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