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结核分枝杆菌复合群基因组多样性的本质与进化

The Nature and Evolution of Genomic Diversity in the Mycobacterium tuberculosis Complex.

作者信息

Brites Daniela, Gagneux Sebastien

机构信息

Swiss Tropical and Public Health Institute, Basel, Switzerland.

University of Basel, Basel, Switzerland.

出版信息

Adv Exp Med Biol. 2017;1019:1-26. doi: 10.1007/978-3-319-64371-7_1.

Abstract

The Mycobacterium tuberculosis Complex (MTBC) consists of a clonal group of several mycobacterial lineages pathogenic to a range of different mammalian hosts. In this chapter, we discuss the origins and the evolutionary forces shaping the genomic diversity of the human-adapted MTBC. Advances in whole-genome sequencing have brought invaluable insights into the macro-evolution of the MTBC, and the biogeographical distribution of the different MTBC lineages, the phylogenetic relationships between these lineages. Moreover, micro-evolutionary processes start to be better understood, including those influencing bacterial mutation rates and those governing the fate of new mutations emerging within patients during treatment. Current genomic and epidemiological evidence reflect the fact that, through ecological specialization, the MTBC affecting humans became an obligate and extremely well-adapted human pathogen. Identifying the adaptive traits of human-adapted MTBC and unraveling the bacterial loci that interact with human genomic variation might help identify new targets for developing better vaccines and designing more effective treatments.

摘要

结核分枝杆菌复合群(MTBC)由一群克隆的分枝杆菌谱系组成,这些谱系对一系列不同的哺乳动物宿主具有致病性。在本章中,我们将讨论塑造适应人类的MTBC基因组多样性的起源和进化力量。全基因组测序的进展为MTBC的宏观进化、不同MTBC谱系的生物地理分布以及这些谱系之间的系统发育关系带来了宝贵的见解。此外,人们对微观进化过程的理解也开始更加深入,包括那些影响细菌突变率的过程以及那些在治疗期间控制患者体内新出现突变命运的过程。目前的基因组和流行病学证据反映了这样一个事实,即通过生态特化,影响人类的MTBC成为了一种专性且高度适应人类的病原体。确定适应人类的MTBC的适应性特征并揭示与人类基因组变异相互作用的细菌基因座,可能有助于确定开发更好疫苗和设计更有效治疗方法的新靶点。

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