The use of mycobacterial interspersed repetitive unit typing and whole genome sequencing to inform tuberculosis prevention and control activities.

Gwendolyn L Gilbert, Vitali Sintchenko
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引用次数: 2

Abstract

Molecular strain typing of Mycobacterium tuberculosis has been possible for only about 20 years; it has significantly improved our understanding of the evolution and epidemiology of Mycobacterium tuberculosis and tuberculosis disease. Mycobacterial interspersed repetitive unit typing, based on 24 variable number tandem repeat unit loci, is highly discriminatory, relatively easy to perform and interpret and is currently the most widely used molecular typing system for tuberculosis surveillance. Nevertheless, clusters identified by mycobacterial interspersed repetitive unit typing sometimes cannot be confirmed or adequately defined by contact tracing and additional methods are needed. Recently, whole genome sequencing has been used to identify single nucleotide polymorphisms and other mutations, between genotypically indistinguishable isolates from the same cluster, to more accurately trace transmission pathways. Rapidly increasing speed and quality and reduced costs will soon make large scale whole genome sequencing feasible, combined with the use of sophisticated bioinformatics tools, for epidemiological surveillance of tuberculosis.

利用分枝杆菌穿插重复单位分型和全基因组测序为结核病预防和控制活动提供信息。
结核分枝杆菌分子菌株分型仅有20年的历史;它大大提高了我们对结核分枝杆菌和结核病的演变和流行病学的理解。分枝杆菌穿插重复单元分型基于24个可变数目串联重复单元位点,具有高度的歧视性,相对容易执行和解释,是目前应用最广泛的结核病监测分子分型系统。然而,通过分枝杆菌穿插重复单位分型确定的聚集性有时不能通过接触者追踪得到确认或充分定义,需要其他方法。最近,全基因组测序已被用于鉴定单核苷酸多态性和其他突变,在基因典型上难以区分的分离株来自同一簇,以更准确地追踪传播途径。快速提高的速度和质量以及降低的成本将很快使大规模全基因组测序成为可能,并结合使用复杂的生物信息学工具,用于结核病的流行病学监测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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