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Ecological Genomics of the Uncultivated Marine Roseobacter Lineage CHAB-I-5

机译:未培养的海洋玫瑰杆菌谱系CHAB-I-5的生态基因组学

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Members of the marine Roseobacter clade are major participants in global carbon and sulfur cycles. While roseobacters are well represented in cultures, several abundant pelagic lineages, including SAG-O19, DC5-80-3, and NAC11-7, remain largely uncultivated and show evidence of genome streamlining. Here, we analyzed the partial genomes of three single cells affiliated with CHAB-I-5, another abundant but exclusively uncultivated Roseobacter lineage. Members of this lineage encode several metabolic potentials that are absent in streamlined genomes. Examples are quorum sensing and type VI secretion systems, which enable them to effectively interact with host and other bacteria. Further analysis of the CHAB-I-5 single-cell amplified genomes (SAGs) predicted that this lineage comprises members with relatively large genomes (4.1 to 4.4 Mbp) and a high fraction of noncoding DNA (10 to 12%), which is similar to what is observed in many cultured, nonstreamlined Roseobacter lineages. The four uncultured lineages, while exhibiting highly variable geographic distributions, together represent >60% of the global pelagic roseobacters. They are consistently enriched in genes encoding the capabilities of light harvesting, oxidation of “energy-rich” reduced sulfur compounds and methylated amines, uptake and catabolism of various carbohydrates and osmolytes, and consumption of abundant exudates from phytoplankton. These traits may define the global prevalence of the four lineages among marine bacterioplankton.
机译:海洋玫瑰杆菌属成员是全球碳和硫循环的主要参与者。尽管玫瑰杆菌在培养物中具有很好的代表性,但许多丰富的中上层世系,包括SAG-O19,DC5-80-3和NAC11-7,在很大程度上仍未培养并显示出基因组优化的证据。在这里,我们分析了与CHAB-I-5相关的三个单细胞的部分基因组,CHAB-I-5是另一个丰富但完全未经培养的Roseobacter谱系。该谱系成员编码简化的基因组中不存在的几种代谢潜能。例如群体感应和VI型分泌系统,使它们能够与宿主和其他细菌有效相互作用。对CHAB-I-5单细胞扩增基因组(SAG)的进一步分析预测,该谱系包含具有相对较大的基因组(4.1至4.4 Mbp)和高比例的非编码DNA(10%至12%)的成员与在许多培养的,非流线型的玫瑰杆菌谱系中观察到的一样。四个未培养的血统,虽然表现出高度可变的地理分布,但它们合计占全球远洋玫瑰细菌的60%以上。它们始终富含编码光收集能力,“富含能量的”还原硫化合物和甲基化胺的氧化,各种碳水化合物和渗透压的吸收和分解代谢以及浮游植物中大量分泌物的消耗等基因的编码。这些特征可能定义了海洋浮游生物中这四个谱系的总体流行程度。

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