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金黄色葡萄球菌基因组学及其水平基因转移的影响。

Staphylococcus aureus genomics and the impact of horizontal gene transfer.

机构信息

Division of Infection and Immunity, St George's, University of London, Cranmer Terrace, London SW17 0RE, United Kingdom.

出版信息

Int J Med Microbiol. 2014 Mar;304(2):103-9. doi: 10.1016/j.ijmm.2013.11.010. Epub 2013 Dec 1.

Abstract

Whole genome sequencing and microarrays have revealed the population structure of Staphylococcus aureus, and identified epidemiological shifts, transmission routes, and adaptation of major clones. S. aureus genomes are highly diverse. This is partly due to a population structure of conserved lineages, each with unique combinations of genes encoding surface proteins, regulators, immune evasion and virulence pathways. Even more variable are the mobile genetic elements (MGE), which encode key proteins for antibiotic resistance, virulence and host-adaptation. MGEs can transfer at high frequency between isolates of the same lineage by horizontal gene transfer (HGT). There is increasing evidence that HGT is key to bacterial adaptation and success. Recent studies have shed light on new mechanisms of DNA transfer such as transformation, the identification of receptors for transduction, on integration of DNA pathways, mechanisms blocking transfer including CRISPR and new restriction systems, strategies for evasion of restriction barriers, as well as factors influencing MGE selection and stability. These studies have also lead to new tools enabling construction of genetically modified clinical S. aureus isolates. This review will focus on HGT mechanisms and their importance in shaping the evolution of new clones adapted to antibiotic resistance, healthcare, communities and livestock.

摘要

全基因组测序和微阵列揭示了金黄色葡萄球菌的种群结构,并确定了主要克隆的流行病学转变、传播途径和适应。金黄色葡萄球菌基因组高度多样化。这部分是由于保守谱系的种群结构,每个谱系都具有独特的表面蛋白、调节剂、免疫逃逸和毒力途径的基因组合。更具变异性的是移动遗传元件(MGE),其编码抗生素耐药性、毒力和宿主适应性的关键蛋白。MGE 可以通过水平基因转移(HGT)在同一谱系的分离株之间高频转移。越来越多的证据表明,HGT 是细菌适应和成功的关键。最近的研究揭示了新的 DNA 转移机制,如转化、转导受体的鉴定、DNA 途径的整合、包括 CRISPR 和新的限制系统在内的阻止转移的机制、逃避限制障碍的策略,以及影响 MGE 选择和稳定性的因素。这些研究还导致了新的工具,能够构建遗传修饰的临床金黄色葡萄球菌分离株。这篇综述将重点介绍 HGT 机制及其在塑造适应抗生素耐药性、医疗保健、社区和牲畜的新克隆进化方面的重要性。

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