从深海海绵Cacospongia mycofijiensis中分离到的海绵分枝杆菌MSC19T全基因组表明其对深海环境的适应和海绵与微生物的共生。

IF 1.3 4区 生物学 Q4 GENETICS & HEREDITY Marine genomics Pub Date : 2022-06-01 DOI:10.1016/j.margen.2022.100955
Yuling Chen, Tianjiao Pan, Guangjun Chai, Zhiyong Li
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引用次数: 2

摘要

研究了从马里亚纳海沟真菌海绵中分离的一种新型海洋海绵相关放线菌——海绵分枝杆菌MSC19T的基因组序列。基因组有一条全长3196754 bp的环状染色体,平均GC含量为66.43 mol%,编码序列为2887条。基因注释显示,M. spongiae MSC19T具有一系列与适应深海环境胁迫相关的基因,包括冷休克、热休克、渗透应激和氧化应激。在基因组中还发现了对极端环境下生存至关重要的重金属抗性、多药耐药性和多种天然产物生物合成的编码基因。多种维生素和真核样蛋白的合成潜力表明海绵支原体MSC19T与海绵宿主之间可能存在营养交换和相互识别。该基因组提供了对深海海绵全息生物中细菌共生体的抗逆性和生态适应性的见解。
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Complete genome of Mycetocola spongiae MSC19T isolated from deep-sea sponge Cacospongia mycofijiensis indicates the adaptation to deep-sea environment and sponge-microbe symbioses

Genome of Mycetocola spongiae MSC19T, a novel marine sponge-associated Actinobacteria isolated from the Mariana Trench sponge Cacospongia mycofijiensis, was sequenced. The genome has one circular chromosome of 3,196,754 bp, with an average GC content of 66.43 mol%, and 2887 coding sequences. Gene annotation shows that M. spongiae MSC19T possesses series of genes related to adaptation to deep-sea environmental stresses including cold shock, heat shock, osmotic stress and oxidative stress. Genes encoding for heavy metal resistance, multidrug resistance and multiple natural product biosynthesis which are crucial for survival in the extreme environment are also detected in the genome. The potentials to synthesize kinds of vitamins and eukaryotic-like proteins indicates the possible nutrient exchange and mutual recognization between M. spongiae MSC19T and its sponge host. The genome provides insights into the stress resistance and ecological fitness of bacterial symbionts in the deep-sea sponge holobionts.

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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.
期刊最新文献
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