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中国南海沉积物中分离的深海细菌 Salinimicrobium sp. 3283s 的基因组分析。

Genome analysis of Salinimicrobium sp. 3283s, a deep-sea bacterium isolated from the sediments of South China Sea, China.

机构信息

Institute of Deep-sea Science and Engineering, Chinese Academy of Sciences, Sanya 572000, China.

Institute of Deep-sea Science and Engineering, Chinese Academy of Sciences, Sanya 572000, China; Hainan Tropical Ocean University, Sanya 572022, China.

出版信息

Mar Genomics. 2024 Aug;76:101125. doi: 10.1016/j.margen.2024.101125. Epub 2024 Jun 18.

DOI:10.1016/j.margen.2024.101125
PMID:39009496
Abstract

Salinimicrobium sp. 3283s is an aerobic, golden-yellow pigment-producing, Flavobacteriaceae bacterium isolated from the sediments at the depth of 1751 m in the South China Sea. In this study, we present the complete genome sequence of strain 3283s, which only have a single circular chromosome comprising 3,702,683 bp with 41.41% G + C content and no circular plasmid. In total, 3257 protein coding genes, 45 tRNA, 9 rRNA, and 13 sRNA genes were obtained. In terms of the function of gene annotation, strain 3283s was more different from Salinimicrobium oceani J15B91, which was isolated from the South China Sea at a similar depth, and more similar to a Mariana Trench-derived strain Salinimicrobium profundisediminis MT39, which was closer in phylogenetic taxonomic status, suggesting that strain 3283s possesses a stronger potential to adapt to the deep-sea environment. Furthermore, the high- pressure simulations also confirmed that strain 3283s can grow in both 30 MPa and 60 MPa hydrostatic pressure environments, and that it grows better in 30 MPa hydrostatic pressure environments than in 60 MPa hydrostatic pressure environments. In addition, we found a large number of genes in strain 3283s that can promote better adaptation of the bacteria to the low oxygen and high hydrostatic pressure (HHP) environment of the deep sea, such as biosynthetic enzymes of antioxidant pigments, genes encoding cytochromes with enhanced affinity for oxygen, proteins for adaptation to HHP, and genes encoding TonB-dependent transporters in the absence of flagella.

摘要

海洋盐单胞菌 3283s 是从南海 1751 米深处的沉积物中分离得到的一株好氧、产金黄色素、黄杆菌科细菌。在本研究中,我们呈现了菌株 3283s 的完整基因组序列,该序列仅包含一个单一的环状染色体,由 3702683bp 组成,G+C 含量为 41.41%,没有环状质粒。总共获得了 3257 个蛋白编码基因、45 个 tRNA、9 个 rRNA 和 13 个 sRNA 基因。就基因注释的功能而言,菌株 3283s 与从南海相似深度分离的海洋盐单胞菌 J15B91 差异更大,与亲缘关系更近的马里亚纳海沟来源的深海盐单胞菌 Salinimicrobium profundisediminis MT39 更为相似,表明菌株 3283s 具有更强的适应深海环境的潜力。此外,高压模拟实验也证实,菌株 3283s 可以在 30MPa 和 60MPa 静水压力环境中生长,在 30MPa 静水压力环境中生长状况优于 60MPa 静水压力环境。此外,我们在菌株 3283s 中发现了大量的基因,这些基因可以促进细菌更好地适应深海的低氧和高压(HHP)环境,如抗氧化色素的生物合成酶、对氧气亲和力增强的细胞色素编码基因、适应 HHP 的蛋白质以及缺乏鞭毛的 TonB 依赖性转运蛋白的编码基因。

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