Complete genome sequence of Roseivivax marinus strain TCYB24 with quorum sensing system reveal the adaptive mechanism against deep-sea hydrothermal environment

IF 1.3 4区 生物学 Q4 GENETICS & HEREDITY
Zheng-Xing Chen , Lin Yang , Qian Li , Yun-Jin Zhu , Li Zheng
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引用次数: 0

Abstract

Roseivivax marinus strain TCYB24 is a rod-shaped bacterium of Rhodobacteraceae isolated from the gill of deep-sea mussel Bathymodiolus marisindicus which collected from the Tiancheng hydrothermal vent under depth of 2700 m on the southwest Indian ridge. In our previous study, the strain TCYB24 was proved to produce quorum sensing signal of N-Acyl-homoserine lactones (AHLs) and form biofilm. In order to determine its adaptive mechanism against the extreme environment of deep-sea hydrothermal vents, the whole genome was sequenced by high-throughput Illumina tag sequencing. The results show the whole genome consists of one circular chromosome and eight circular plasmids, with a total length of 4.60 Mb (G + C content of 67.4%), 4338 open reading frames, 46 tRNAs and 6 rRNA operons. According to the genome-wide functional annotation, numbers of heavy metal resistance, high pressure and cold adapting related genes were found. In addition, genes about exopolysaccharide (EPS) biosynthesis and secretion and biofilm formation, which facilitate bacteria to resist extreme environments, were identified. Intriguingly, a pair of RaiI/R-type quorum sensing system was discovered firstly in the bacterium isolated from hydrothermal environment. The results may help to understand genetic underpinning of extreme environmental adaptation mechanism of bacteria in deep-sea hydrothermal area.

利用群体感应系统对海洋玫瑰病毒TCYB24菌株进行全基因组测序,揭示了其对深海热液环境的适应性机制。
海洋玫瑰vivax marinus菌株TCYB24是一种从深海贻贝(Bathymodiolus marisindicus)鳃中分离出来的杆状细菌,该贻贝采自印度西南脊2700 m深的天成热液喷口。在我们之前的研究中,菌株TCYB24被证明能够产生n -酰基-高丝氨酸内酯(AHLs)的群体感应信号并形成生物膜。为了确定其对深海热液喷口极端环境的适应机制,采用高通量Illumina标记测序技术对其全基因组进行了测序。结果表明,整个基因组由1条环状染色体和8个环状质粒组成,总长度为4.60 Mb (G + C含量为67.4%),4338个开放阅读框,46个trna和6个rRNA操作子。根据全基因组功能注释,发现了多个重金属抗性、高压适应性和冷适应性相关基因。此外,还鉴定出了帮助细菌抵抗极端环境的胞外多糖(exopolysaccharide, EPS)生物合成、分泌和生物膜形成的相关基因。有趣的是,在热液环境分离的细菌中首次发现了一对RaiI/ r型群体感应系统。研究结果有助于了解深海热液区细菌极端环境适应机制的遗传基础。
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来源期刊
Marine genomics
Marine genomics 生物-遗传学
CiteScore
3.60
自引率
5.30%
发文量
50
审稿时长
29 days
期刊介绍: The journal publishes papers on all functional and evolutionary aspects of genes, chromatin, chromosomes and (meta)genomes of marine (and freshwater) organisms. It deals with new genome-enabled insights into the broader framework of environmental science. Topics within the scope of this journal include: • Population genomics and ecology • Evolutionary and developmental genomics • Comparative genomics • Metagenomics • Environmental genomics • Systems biology More specific topics include: geographic and phylogenomic characterization of aquatic organisms, metabolic capacities and pathways of organisms and communities, biogeochemical cycles, genomics and integrative approaches applied to microbial ecology including (meta)transcriptomics and (meta)proteomics, tracking of infectious diseases, environmental stress, global climate change and ecosystem modelling.
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