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首页> 外文期刊>The journal of microbiology >Genome analysis of Rubritalea profundi SAORIC-165~T, the first deep-sea verrucomicrobial isolate, from the northwestern Pacific Ocean
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Genome analysis of Rubritalea profundi SAORIC-165~T, the first deep-sea verrucomicrobial isolate, from the northwestern Pacific Ocean

机译:来自西北太平洋西北海洋的第一个深海疣状孤立的rubritalea profundi saoric-165〜t的基因组分析

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摘要

Although culture-independent studies have shown the presence of Verrucomicrobia in the deep sea, verrucomicrobial strains from deep-sea environments have been rarely cultured and characterized. Recently, Rubritalea profundi SAORIC-165~T, a psychrophilic bacterium of the phylum Verrucomicrobia, was isolated from a depth of 2,000 m in the northwestern Pacific Ocean. In this study, the genome sequence of R. profundi SAORIC-165~T, the first deep-sea verrucomicrobial isolate, is reported with description of the genome properties and comparison to surface-borne Rubritalea genomes. The draft genome consisted of four contigs with an entire size of 4,167,407 bp and G+C content of 47.5%. The SAORIC-165~T genome was predicted to have 3,844 proteincoding genes and 45 non-coding RNA genes. The genome contained a repertoire of metabolic pathways, including the Embden-Meyerhof-Parnas pathway, pentose phosphate pathway, tricarboxylic acid cycle, assimilatory sulfate reduction, and biosynthesis of nicotinate/nicotinamide, pantothenate/ coenzyme A, folate, and lycopene. The comparative genomic analyses with two surface-derived Rubritalea genomes showed that the SAORIC-165~T genome was enriched in genes involved in transposition of mobile elements, signal transduction, and carbohydrate metabolism, some of which might be related to bacterial enhancement of ecological fitness in the deep-sea environment. Amplicon sequencing of 16S rRNA genes from the water column revealed that R. profundi-related phylotypes were relatively abundant at 2,000 m and preferred a particle-associated life style in the deep sea. These findings suggest that R. profundi represents a genetically unique and ecologically relevant verrucomicrobial group well adapted to the deep-sea environment.
机译:虽然文化无关的研究显示了深海中疣状霉病的存在,但深海环境中的疣状体积很少培养和表征。最近,鲁布利特征Profundi Saoric-165〜T,疣状疣的嗜好细菌,在西北太平洋西北海洋的深度中分离出来。在该研究中,据报道,基因组特性的描述报告了R.Profudi saoric-165〜t的基因组序列。基因组草案由四个共体组成,整个尺寸为4,167,407bp和g + c含量为47.5%。预计Saoric-165〜T基因组有3,844个蛋白质基因和45个非编码RNA基因。该基因组含有代谢途径的曲目,包括Embden-Meyerhof-parnas途径,戊糖途径,三羧酸循环,减少刺激性硫酸盐,尼曲肽/烟酰胺的生物合成,泛酸/辅酶A,叶酸和番茄红素。具有两个表面衍生的摩擦基因组的比较基因组分析表明,富含Saoric-165〜T基因组在参与流动元素,信号转导和碳水化合物代谢的转子中富集的基因,其中一些可能与生态健康的细菌增强有关在深海环境中。来自水柱的16S rRNA基因的扩增子测序显示,R.Profudi相关的植物型相对丰富2,000μm,并且优选深海的颗粒相关的寿命。这些研究结果表明,R.Profundi代表了遗传独特而生态相关的疣状组,适应了深海环境。

著录项

  • 来源
    《The journal of microbiology》 |2019年第5期|共10页
  • 作者单位

    Department of Biological Science Inha University Incheon 22212 Republic of Korea;

    Department of Biological Science Inha University Incheon 22212 Republic of Korea;

    Department of Biological Science Inha University Incheon 22212 Republic of Korea;

    Atmosphere and Ocean Research Institute The University of Tokyo Chiba 277-8564 Japan;

    National Institute of Polar Research Tokyo 190-8518 Japan;

    Center for Omics and Bioinformatics Graduate School of Frontier Sciences The University of Tokyo Chiba 277-8561 Japan;

    Center for Omics and Bioinformatics Graduate School of Frontier Sciences The University of Tokyo Chiba 277-8561 Japan;

    Atmosphere and Ocean Research Institute The University of Tokyo Chiba 277-8564 Japan;

    Atmosphere and Ocean Research Institute The University of Tokyo Chiba 277-8564 Japan;

    Department of Life Science Chung-Ang University Seoul 06974 Republic of Korea;

    Department of Life Science Chung-Ang University Seoul 06974 Republic of Korea;

    Department of Biological Science Inha University Incheon 22212 Republic of Korea;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 微生物学;
  • 关键词

    Rubritalea; Verrucomicrobia; genome; deep sea; 16S rRNA; particle-associated;

    机译:rubritalea;verrucomicrobia;基因组;深海;16s rrna;粒子相关的;

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