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Phylogenomics and antimicrobial resistance of the leprosy bacillus Mycobacterium leprae

机译:麻风杆菌麻风分枝杆菌的药理学和抗药性

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摘要

Leprosy is a chronic human disease caused by the yet-uncultured pathogen Mycobacterium leprae. Although readily curable with multidrug therapy (MDT), over 200,000 new cases are still reported annually. Here, we obtain M. leprae genome sequences from DNA extracted directly from patients’ skin biopsies using a customized protocol. Comparative and phylogenetic analysis of 154 genomes from 25 countries provides insight into evolution and antimicrobial resistance, uncovering lineages and phylogeographic trends, with the most ancestral strains linked to the Far East. In addition to known MDT-resistance mutations, we detect other mutations associated with antibiotic resistance, and retrace a potential stepwise emergence of extensive drug resistance in the pre-MDT era. Some of the previously undescribed mutations occur in genes that are apparently subject to positive selection, and two of these (ribD, fadD9) are restricted to drug-resistant strains. Finally, nonsense mutations in the nth excision repair gene are associated with greater sequence diversity and drug resistance.
机译:麻风病是一种由尚未培养的病原性麻风分枝杆菌引起的慢性人类疾病。尽管可以通过多药疗法(MDT)治愈,但每年仍报告200,000例新病例。在这里,我们使用定制的方案从直接从患者皮肤活检组织中提取的DNA中获得麻风分枝杆菌的基因组序列。来自25个国家/地区的154个基因组的比较和系统发育分析提供了对进化和抗菌素耐药性的了解,揭示了谱系和系统地理学趋势,其中最祖先的菌株与远东有关。除了已知的MDT抗药性突变,我们还检测了与抗生素抗性相关的其他突变,并追溯了MDT前时代广泛耐药性的潜在逐步出现。一些先前未描述的突变发生在显然经过阳性选择的基因中,其中两个(ribD,fadD9)仅限于耐药菌株。最后,第n个切除修复基因中的无意义突变与更大的序列多样性和耐药性相关。

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