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Genome sequence of Silicibacter pomeroyi reveals adaptations to the marine environment

机译:矽肺杆菌的基因组序列揭示了对海洋环境的适应性

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Since the recognition of prokaryotes as essential components of the oceanic food web(1), bacterioplankton have been acknowledged as catalysts of most major biogeochemical processes in the sea. Studying heterotrophic bacterioplankton has been challenging, however, as most major clades have never been cultured(2) or have only been grown to low densities in sea water(3,4). Here we describe the genome sequence of Silicibacter pomeroyi, a member of the marine Roseobacter clade ( Fig. 1), the relatives of which comprise similar to10 - 20% of coastal and oceanic mixed-layer bacterioplankton(2,5,6,7). This first genome sequence from any major heterotrophic clade consists of a chromosome ( 4,109,442 base pairs) and megaplasmid ( 491,611 base pairs). Genome analysis indicates that this organism relies upon a lithoheterotrophic strategy that uses inorganic compounds ( carbon monoxide and sulphide) to supplement heterotrophy. Silicibacter pomeroyi also has genes advantageous for associations with plankton and suspended particles, including genes for uptake of algal-derived compounds, use of metabolites from reducing microzones, rapid growth and cell-density-dependent regulation. This bacterium has a physiology distinct from that of marine oligotrophs, adding a new strategy to the recognized repertoire for coping with a nutrient-poor ocean.
机译:自从原核生物被认为是海洋食物网的基本组成部分以来(1),浮游细菌已被公认为海洋中大多数主要生物地球化学过程的催化剂。然而,研究异养细菌性浮游生物一直具有挑战性,因为大多数主要进化枝都从未培养过(2)或仅在海水中生长至低密度(3,4)。在这里,我们描述了Silicobacter pomeroyi的基因组序列,Somericbacter pomeroyi是海洋Roseobacter进化枝的成员(图1),其亲属包含近10%至20%的沿海和海洋混合层浮游细菌(2,5,6,7) 。任何主要异养进化枝的第一个基因组序列都由一条染色体(4,109,442个碱基对)和大质粒(491,611个碱基对)组成。基因组分析表明,这种生物依赖于使用异性营养的策略,该策略使用无机化合物(一氧化碳和硫化物)来补充异养。矽肺杆菌还具有有利于与浮游生物和悬浮颗粒缔合的基因,包括用于吸收藻类衍生化合物的基因,利用来自微区减少的代谢物,快速生长和细胞密度依赖性调节的基因。这种细菌的生理学不同于海洋的寡养生物,为公认的用于应对营养不良的海洋的方法增加了新的策略。

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