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Genomic insights to SAR86, an abundant and uncultivated marine bacterial lineage

机译:SAR86的基因组学见解

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摘要

Bacteria in the 16S rRNA clade SAR86 are among the most abundant uncultivated constituents of microbial assemblages in the surface ocean for which little genomic information is currently available. Bioinformatic techniques were used to assemble two nearly complete genomes from marine metagenomes and single-cell sequencing provided two more partial genomes. Recruitment of metagenomic data shows that these SAR86 genomes substantially increase our knowledge of non-photosynthetic bacteria in the surface ocean. Phylogenomic analyses establish SAR86 as a basal and divergent lineage of γ-proteobacteria, and the individual genomes display a temperature-dependent distribution. Modestly sized at 1.25–1.7 Mbp, the SAR86 genomes lack several pathways for amino-acid and vitamin synthesis as well as sulfate reduction, trends commonly observed in other abundant marine microbes. SAR86 appears to be an aerobic chemoheterotroph with the potential for proteorhodopsin-based ATP generation, though the apparent lack of a retinal biosynthesis pathway may require it to scavenge exogenously-derived pigments to utilize proteorhodopsin. The genomes contain an expanded capacity for the degradation of lipids and carbohydrates acquired using a wealth of tonB-dependent outer membrane receptors. Like the abundant planktonic marine bacterial clade SAR11, SAR86 exhibits metabolic streamlining, but also a distinct carbon compound specialization, possibly avoiding competition.
机译:16S rRNA进化枝SAR86中的细菌是表层海洋中微生物群落中最丰富的未经培养的成分之一,目前尚缺乏基因组信息。生物信息学技术用于从海洋基因组中组装两个近乎完整的基因组,单细胞测序提供了另外两个部分基因组。宏基因组数据的募集显示,这些SAR86基因组极大地增加了我们对海面非光合细菌的了解。系统生物学分析将SAR86建立为γ-变形杆菌的基础和发散谱系,单个基因组显示出温度依赖性分布。 SAR86基因组大小适中,仅为1.25–1.7 Mbp,缺乏氨基酸和维生素合成以及硫酸盐还原的多种途径,这是在其他丰富的海洋微生物中常见的趋势。 SAR86似乎是一种有氧趋化营养菌,具有基于蛋白视紫红质的ATP生成的潜力,尽管明显缺乏视网膜生物合成途径可能需要它清除外源性色素才能利用蛋白视紫红质。基因组具有更大的降解能力,可以利用大量依赖tonB的外膜受体来降解脂质和碳水化合物。像丰富的浮游海洋细菌进化枝SAR11一样,SAR86不仅表现出新陈代谢的简化,而且具有独特的碳化合物专长性,可以避免竞争。

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