Adaptation of Pathogenic E. coli to Various Niches: Genome Flexibility is the Key.

Genome dynamics Pub Date : 2009-01-01 Epub Date: 2009-08-19 DOI:10.1159/000235766
E Brzuszkiewicz, G Gottschalk, E Ron, J Hacker, U Dobrindt
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引用次数: 34

Abstract

It is a well-known observation and a long-standing hypothesis that pathogen genome dynamics are important in infectious disease processes. Recent achievements in large-scale genome sequencing, comparative genomics and molecular epidemiology help to unravel current challenges of E. coli pathogenomics, i.e. to gain insights into the in vivo relevance of genome dynamics. Data from comparative genomics support the hypothesis of widespread involvement of horizontal gene transfer in the evolution of E. coli, leading to the presence of distinct and variable 'genomic islands' within the conserved 'chromosomal backbone' in several bacterial lineages. Extensive gene acquisition and loss provide different lineages with distinct metabolic, pathogenic and other capabilities. Not only mobile genetic modules but also point mutations facilitate rapid adaptation of E. coli to changing environmental conditions and hence extend the spectrum of sites that can be infected. We report on recent research efforts to analyze pathoadaptive and other genomic alterations of the E. coli genome that affect disease severity and may have consequences for diagnostics and treatment of E. coli infections.

致病性大肠杆菌适应不同生态位:基因组灵活性是关键。
病原体基因组动力学在传染病过程中很重要,这是一个众所周知的观察和长期存在的假设。最近在大规模基因组测序、比较基因组学和分子流行病学方面取得的成就有助于解决大肠杆菌病理基因组学目前面临的挑战,即深入了解基因组动力学的体内相关性。来自比较基因组学的数据支持大肠杆菌进化中广泛参与水平基因转移的假设,导致在几个细菌谱系中保守的“染色体骨干”中存在独特和可变的“基因组岛”。广泛的基因获取和丢失使不同的谱系具有不同的代谢、致病和其他能力。不仅是可移动的遗传模块,而且点突变也促进了大肠杆菌对不断变化的环境条件的快速适应,从而扩大了可感染位点的范围。我们报告了最近的研究成果,以分析大肠杆菌基因组的病理适应性和其他基因组改变,这些改变影响疾病的严重程度,并可能对大肠杆菌感染的诊断和治疗产生影响。
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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