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艰难梭菌 027 菌株的比较基因组和表型分析为研究一种强毒力细菌的进化提供了线索。

Comparative genome and phenotypic analysis of Clostridium difficile 027 strains provides insight into the evolution of a hypervirulent bacterium.

机构信息

London School of Hygiene and Tropical Medicine, Keppel Street, London, WC1E 7HT, UK.

出版信息

Genome Biol. 2009;10(9):R102. doi: 10.1186/gb-2009-10-9-r102. Epub 2009 Sep 25.

Abstract

BACKGROUND

The continued rise of Clostridium difficile infections worldwide has been accompanied by the rapid emergence of a highly virulent clone designated PCR-ribotype 027. To understand more about the evolution of this virulent clone, we made a three-way genomic and phenotypic comparison of an 'historic' non-epidemic 027 C. difficile (CD196), a recent epidemic and hypervirulent 027 (R20291) and a previously sequenced PCR-ribotype 012 strain (630).

RESULTS

Although the genomes are highly conserved, the 027 genomes have 234 additional genes compared to 630, which may contribute to the distinct phenotypic differences we observe between these strains relating to motility, antibiotic resistance and toxicity. The epidemic 027 strain has five unique genetic regions, absent from both the non-epidemic 027 and strain 630, which include a novel phage island, a two component regulatory system and transcriptional regulators.

CONCLUSIONS

A comparison of a series of 027 isolates showed that some of these genes appeared to have been gained by 027 strains over the past two decades. This study provides genetic markers for the identification of 027 strains and offers a unique opportunity to explain the recent emergence of a hypervirulent bacterium.

摘要

背景

全球艰难梭菌感染的持续上升伴随着一种高度毒力的克隆的快速出现,该克隆被指定为 PCR-核糖型 027。为了更深入地了解这种毒力克隆的进化,我们对一株‘历史’非流行 027 艰难梭菌(CD196)、一株近期流行且高毒力的 027(R20291)和一株先前测序的 PCR-核糖型 012 菌株(630)进行了三方基因组和表型比较。

结果

尽管基因组高度保守,但与 630 相比,027 基因组有 234 个额外的基因,这可能导致我们观察到这些菌株之间在运动性、抗生素耐药性和毒性方面的明显表型差异。流行的 027 菌株有五个独特的基因区域,不存在于非流行的 027 和菌株 630 中,包括一个新的噬菌体岛、一个双组分调节系统和转录调节因子。

结论

对一系列 027 分离株的比较表明,这些基因中的一些似乎是在过去 20 年中由 027 菌株获得的。本研究为 027 菌株的鉴定提供了遗传标记,并为解释最近出现的一种高毒力细菌提供了独特的机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/22f9/2768977/41a81de5c85d/gb-2009-10-9-r102-1.jpg

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