Suppr超能文献

[不同时期分离的霍乱弧菌埃尔托生物型第七次大流行前菌株和第七次大流行菌株的比较基因组分析]

[Comparative genomic analysis of vibrio cholerae El Tor preseventh and seventh pandemic strains isolated in various periods].

作者信息

Osin A V, Nefedov K S, Eroshenko G A, Smirnova N I

出版信息

Genetika. 2005 Jan;41(1):53-62.

Abstract

Genetic organization of 52 Vibrio cholerae El Tor biotype preseventh and seventh pandemic strains isolated in various periods was studied by PCR assay and DNA-DNA hybridization. It was established that the genome of most ancient of analyzed strains isolated from a diarrhea patient in 1910 was devoid of CTX and RS1 prophages, vibrio pathogenicity islands (VPI and VPI-2), and pandemic islands (VSP-1 and VSP-2) that contain key virulence genes. The appearance of pathogenic properties in cholera vibrios for the first time causing a local outbreak of cholera in 1937 is connected with the acquisition of VPI and CTX that carried genes tcpA and ctx-AB, respectively, which are responsible for the colonization of small intestine and encode the production of cholera toxin. The appearance of seventh pandemic agent for cholera was shown to correlate with the acquisition by its precursor of two additional blocks of genes VSP-1 and VSP-2. This finding strongly supports the involvement of these genes in formation of the pandemic potential in strains. Molecular typing methods allowed elucidation of differences in the genetic organization between prepandemic and pandemic strains. The detected variability of the genome of contemporary virulent strains may be a reason for the occurrence of etiological agent for cholera with new properties.

摘要

通过聚合酶链反应(PCR)分析和DNA - DNA杂交技术,研究了52株在不同时期分离的霍乱弧菌埃尔托生物型第七次大流行前和第七次大流行菌株的基因组织。结果表明,1910年从一名腹泻患者分离出的最古老分析菌株的基因组中没有CTX和RS1前噬菌体、霍乱弧菌致病岛(VPI和VPI - 2)以及包含关键毒力基因的大流行岛(VSP - 1和VSP - 2)。1937年首次引起霍乱局部暴发的霍乱弧菌致病特性的出现与获得分别携带tcpA和ctx - AB基因的VPI和CTX有关,这两个基因分别负责小肠定植并编码霍乱毒素的产生。研究表明,霍乱第七次大流行病原体的出现与其前体获得另外两个基因块VSP - 1和VSP - 2相关。这一发现有力地支持了这些基因参与菌株大流行潜力的形成。分子分型方法能够阐明大流行前和大流行菌株之间基因组织的差异。当代有毒力菌株基因组中检测到的变异性可能是具有新特性的霍乱病原体出现的原因。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验