分枝杆菌的病理基因组学。

Genome dynamics Pub Date : 2009-01-01 Epub Date: 2009-08-19 DOI:10.1159/000235772
M C Gutierrez, P Supply, R Brosch
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引用次数: 18

摘要

在构成分枝杆菌属的130种中,绝大多数是无害的腐生植物。然而,一些物种非常有效地适应了致病的生活方式。其中包括两种最重要的人类病原体,结核分枝杆菌和麻风分枝杆菌,以及一种新出现的病原体,溃疡分枝杆菌。它们的缓慢生长、对人类的毒力和特殊的生理学使得这些生物体很难处理,然而,需要制定新的策略来对抗这些病原体,需要清楚地了解它们的遗传和生理功能,以及促成它们进化成功的机制。随着结核分枝杆菌基因组序列的完成,分枝杆菌基因组学的迅速发展为寻找区分病原体和非病原体的重要因素提供了基础。因此,在本章中,我们将介绍从最近的研究中获得的一些主要见解,重点关注各种进化过程在形成分枝杆菌基因组和病原体种群结构中所起的作用。
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Pathogenomics of mycobacteria.

Among the 130 species that constitute the genus Mycobacterium, the great majority are harmless saprophytes. However, a few species have very efficiently adapted to a pathogenic lifestyle. Among them are two of the most important human pathogens, Mycobacterium tuberculosis and Mycobacterium leprae, and one emerging pathogen, Mycobacterium ulcerans. Their slow growth, virulence for humans and particular physiology make these organisms very difficult to work with, however the need to develop new strategies in the fight against these pathogens requires a clear understanding of their genetic and physiological repertoires and the mechanisms that have contributed to their evolutionary success. The rapid development of mycobacterial genomics following the completion of the Mycobacterium tuberculosis genome sequence provides now the basis for finding the important factors distinguishing pathogens and non-pathogens. In this chapter we will therefore present some of the major insights that have been gained from recent studies, with focus on the roles played by various evolutionary processes in shaping the structure of mycobacterial genomes and pathogen populations.

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