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Complete Genome Sequence and Comparative Genomic Analysis of Mycobacterium massiliense JCM 15300 in the Mycobacterium abscessus Group Reveal a Conserved Genomic Island MmGI-1 Related to Putative Lipid Metabolism

机译:完整的基因组序列和脓肿分枝杆菌群中分枝杆菌JCM 15300的比较基因组分析揭示了保守的基因组岛MmGI-1与假定的脂质代谢有关。

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摘要

Mycobacterium abscessus group subsp., such as M. massiliense, M. abscessus sensu stricto and M. bolletii, are an environmental organism found in soil, water and other ecological niches, and have been isolated from respiratory tract infection, skin and soft tissue infection, postoperative infection of cosmetic surgery. To determine the unique genetic feature of M. massiliense, we sequenced the complete genome of M. massiliense type strain JCM 15300 (corresponding to CCUG 48898). Comparative genomic analysis was performed among Mycobacterium spp. and among M. abscessus group subspp., showing that additional ß-oxidation-related genes and, notably, the mammalian cell entry (mce) operon were located on a genomic island, M. massiliense Genomic Island 1 (MmGI-1), in M. massiliense. In addition, putative anaerobic respiration system-related genes and additional mycolic acid cyclopropane synthetase-related genes were found uniquely in M. massiliense. Japanese isolates of M. massiliense also frequently possess the MmGI-1 (14/44, approximately 32%) and three unique conserved regions (26/44; approximately 60%, 34/44; approximately 77% and 40/44; approximately 91%), as well as isolates of other countries (Malaysia, France, United Kingdom and United States). The well-conserved genomic island MmGI-1 may play an important role in high growth potential with additional lipid metabolism, extra factors for survival in the environment or synthesis of complex membrane-associated lipids. ORFs on MmGI-1 showed similarities to ORFs of phylogenetically distant M. avium complex (MAC), suggesting that horizontal gene transfer or genetic recombination events might have occurred within MmGI-1 among M. massiliense and MAC.
机译:脓肿分枝杆菌亚种,例如M. massiliense,M。abscessus sensu stricto和M. bolletii,是在土壤,水和其他生态位中发现的环境生物,已从呼吸道感染,皮肤和软组织感染中分离出来,术后感染整容。为了确定M. massiliense的独特遗传特征,我们对M. massiliense型菌株JCM 15300的完整基因组进行了测序(对应于CCUG 48898)。在分枝杆菌属中进行了比较基因组分析。在脓肿分支杆菌亚群中,还发现其他与ß氧化有关的基因,特别是哺乳动物细胞进入操纵子位于一个基因组岛M. massiliense Genomic Island 1(MmGI-1)中。 M. massiliense。此外,在M. massiliense中独特地发现了假定的厌氧呼吸系统相关基因和其他霉菌酸环丙烷合成酶相关基因。日本的M.massiliense分离株也经常拥有MmGI-1(14/44,约32%)和三个独特的保守区(26/44;约60%,34/44;约77%和40/44;约91 %),以及其他国家(马来西亚,法国,英国和美国)的隔离株。保存完好的基因组岛MmGI-1可能在高增长潜力中起重要作用,它具有额外的脂质代谢,在环境中生存的额外因素或与膜相关的复杂脂质的合成。 MmGI-1上的ORF与进化距离较远的鸟分枝杆菌复合体(MAC)的ORF相似,这表明在MmGI-1中可能发生了水平基因转移或遗传重组事件。

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