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Massive gene acquisitions in Mycobacterium indicus pranii provide a perspective on mycobacterial evolution

机译:印度分枝杆菌中大量基因的获得为分枝杆菌的进化提供了一个视角

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Understanding the evolutionary and genomic mechanisms responsible for turning the soil-derived saprophytic mycobacteria into lethal intracellular pathogens is a critical step towards the development of strategies for the control of mycobacterial diseases. In this context, Mycobacterium indicus pranii (MIP) is of specific interest because of its unique immunological and evolutionary significance. Evolutionarily, it is the progenitor of opportunistic pathogens belonging to M. avium complex and is endowed with features that place it between saprophytic and pathogenic species. Herein, we have sequenced the complete MIP genome to understand its unique life style, basis of immunomodulation and habitat diversification in mycobacteria. As a case of massive gene acquisitions, 50.5% of MIP open reading frames (ORFs) are laterally acquired. We show, for the first time for Mycobacterium, that MIP genome has mosaic architecture. These gene acquisitions have led to the enrichment of selected gene families critical to MIP physiology. Comparative genomic analysis indicates a higher antigenic potential of MIP imparting it a unique ability for immunomodulation. Besides, it also suggests an important role of genomic fluidity in habitat diversification within mycobacteria and provides a unique view of evolutionary divergence and putative bottlenecks that might have eventually led to intracellular survival and pathogenic attributes in mycobacteria.
机译:了解负责将土壤来源的腐生分枝杆菌转化为致死性细胞内病原体的进化和基因组学机制,是迈向控制分枝杆菌疾病策略的关键一步。在这种情况下,印度分枝杆菌(MIP)由于其独特的免疫学和进化意义而受到特别关注。在进化上,它是属于鸟分枝杆菌复合体的机会病原体的祖先,并具有将其置于腐生和病原菌之间的特征。在这里,我们已经对完整的MIP基因组进行了测序,以了解其独特的生活方式,分枝杆菌中免疫调节的基础和栖息地的多样化。作为大规模基因获取的案例,横向获取了MIP开放阅读框(ORF)的50.5%。对于分枝杆菌,我们首次证明MIP基因组具有镶嵌结构。这些基因的获取导致对MIP生理至关重要的所选基因家族的丰富化。比较基因组分析表明,MIP具有更高的抗原潜能,赋予其独特的免疫调节能力。此外,这也表明基因组流动性在分枝杆菌内的生境多样化中具有重要作用,并提供了进化差异和推定瓶颈的独特观点,这些瓶颈可能最终导致分枝杆菌的细胞内存活和致病特性。

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