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从西南印度洋海岭东部受热液影响的深海沉积物中分离出的产海洋胞外多糖细菌——深海栖热单胞菌5.12的全基因组序列

Complete genome sequence of Alteromonas pelagimontana 5.12, a marine exopolysaccharide-producing bacterium isolated from hydrothermally influenced deep-sea sediment of eastern Southwest Indian Ridge.

作者信息

Sinha Rupesh Kumar, Krishnan K P, Kurian P John

机构信息

National Centre for Polar and Ocean Research, Ministry of Earth Sciences, Headland Sada, Vasco da Gama 403804, Goa, India.

出版信息

Mar Genomics. 2021 Feb;55:100804. doi: 10.1016/j.margen.2020.100804. Epub 2020 Jul 19.

Abstract

The whole genome of Alteromonas pelagimontana 5.12, a psychrotolerant deep-sea bacterium isolated from the sediment sample of eastern Southwest Indian Ridge, was sequenced and analysed for understanding its metabolic capacities and biosynthesis potential of natural products. The circular genome contained 4.3 Mb with a GC content of 42.6 mol%. Genomic data mining revealed a gene cluster for heavy metal resistance (czcABC, acrB, arsR1, copA, nikA, mntH, mntP), exopolysaccharides (EPS; epsCDEFHLM) and polyhydroxyalkanoates (PHA; phbC) production, as well as genes involved in complex polysaccharide degradation. Genes that could allow strain 5.12 to cope with acid stress (ibaG) and heat shock (ibpA, hslR) were observed along with ten chaperone-encoding genes which could possibly play vital role in adaptability of this strain to the hydrothermally influenced environment. Gene clusters for secondary metabolite production such as bacteriocin and arylpolyene were also predicted. Thus, genome sequencing and data mining provided insights into the molecular mechanisms involved in the adaptation to hydrothermally influenced deep-sea environment that could promote further experimental exploration.

摘要

从西南印度洋海岭东部沉积物样本中分离出的耐冷深海细菌——深海交替单胞菌5.12的全基因组进行了测序和分析,以了解其代谢能力和天然产物的生物合成潜力。环状基因组包含4.3 Mb,GC含量为42.6 mol%。基因组数据挖掘揭示了一个重金属抗性(czcABC、acrB、arsR1、copA、nikA、mntH、mntP)、胞外多糖(EPS;epsCDEFHLM)和聚羟基脂肪酸酯(PHA;phbC)产生的基因簇,以及参与复杂多糖降解的基因。观察到可能使菌株5.12应对酸胁迫(ibaG)和热休克(ibpA、hslR)的基因,以及十个伴侣编码基因,这些基因可能在该菌株适应热液影响环境中发挥重要作用。还预测了细菌素和芳基多烯等次级代谢产物产生的基因簇。因此,基因组测序和数据挖掘为适应热液影响的深海环境所涉及的分子机制提供了见解,这可能促进进一步的实验探索。

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