首页> 外文OA文献 >Genome sequence of the Roseovarius mucosus type strain (DSM 17069(T)), a bacteriochlorophyll a-containing representative of the marine Roseobacter group isolated from the dinoflagellate Alexandrium ostenfeldii.
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Genome sequence of the Roseovarius mucosus type strain (DSM 17069(T)), a bacteriochlorophyll a-containing representative of the marine Roseobacter group isolated from the dinoflagellate Alexandrium ostenfeldii.

机译:迷迭香粘膜型菌株(DSM 17069(T))的基因组序列,该菌株是含有细菌叶绿素a的代表,从海洋鞭毛藻中分离到海洋鞭毛藻类。

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摘要

Roseovarius mucosus Biebl et al. 2005 is a bacteriochlorophyll a-producing representative of the marine Roseobacter group within the alphaproteobacterial family Rhodobacteraceae, which was isolated from the dinoflagellate Alexandrium ostenfeldii. The marine Roseobacter group was found to be abundant in the ocean and plays an important role for global and biogeochemical processes. Here we describe the features of the R. mucosus strain DFL-24(T) together with its genome sequence and annotation generated from a culture of DSM 17069(T). The 4,247,724 bp containing genome sequence encodes 4,194 protein-coding genes and 57 RNA genes. In addition to the presence of four plasmids, genome analysis revealed the presence of genes associated with host colonization, DMSP utilization, cytotoxins, and quorum sensing that could play a role in the interrelationship of R. mucosus with the dinoflagellate A. ostenfeldii and other marine organisms. Furthermore, the genome encodes genes associated with mixotrophic growth, where both reduced inorganic compounds for lithotrophic growth and a photoheterotrophic lifestyle using light as additional energy source could be used.
机译:罗索瓦斯粘膜Biebl等。 2005年是α变形杆菌科(Rhodobacteraceae)中海洋玫瑰果杆菌组的细菌叶绿素a产生代表,该科是从鞭毛藻(Donflagellate ostenfeldii)中分离出来的。发现海洋玫瑰红细菌群在海洋中丰富,在全球和生物地球化学过程中起着重要作用。在这里,我们描述了粘液芽孢杆菌DFL-24(T)的特征及其基因组序列和从DSM 17069(T)培养物中产生的注释。包含4,247,724 bp的基因组序列编码4,194个蛋白质编码基因和57个RNA基因。除了存在四个质粒外,基因组分析还显示了与宿主定植,DMSP利用,细胞毒素和群体感应相关的基因的存在,这些基因可能在粘膜鼠李糖单鞭毛藻和其他海洋鱼类的相互关系中起作用。生物。此外,该基因组编码与混合营养生长相关的基因,其中既可以使用还原的无机化合物进行岩石营养生长,又可以使用光作为额外的能源来实现光异养生活方式。

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