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The Analysis of Multiple Genome Comparisons in Genus Escherichia and Its Application to the Discovery of Uncharacterised Metabolic Genes in Uropathogenic Escherichia coli CFT073

机译:埃希氏菌属多个基因组比较的分析及其在发现致病性大肠杆菌CFT073中未表征的代谢基因中的应用

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摘要

A survey of a complete gene synteny comparison has been carried out between twenty fully sequenced strains from the genus Escherichia with the aim of finding yet uncharacterised genes implicated in the metabolism of uropathogenic strains of E. coli (UPEC). Several sets of adjacent colinear genes have been identified which are present in all four UPEC included in this study (CFT073, F11, UTI89, and 536), annotated with putative metabolic functions, but are not found in any other strains considered. An operon closely homologous to that encoding the L-sorbose degradation pathway in Klebsiella pneumoniae has been identified in E. coli CFT073; this operon is present in all of the UPEC considered, but only in 7 of the other 16 strains. The operon's function has been confirmed by cloning the genes into E. coli DH5α and testing for growth on L-sorbose. The functional genomic approach combining in silico and in vitro work presented here can be used as a basis for the discovery of other uncharacterised genes contributing to bacterial survival in specific environments.
机译:已经在来自埃希氏菌属的二十个完全测序的菌株之间进行了完整的基因同构比较的调查,目的是发现尚未鉴定的与大肠杆菌的尿路致病菌株(UPEC)的代谢有关的基因。已鉴定出几组相邻的共线性基因,它们存在于本研究中所有的四个UPEC中(CFT073,F11,UTI89和536),并带有假定的代谢功能,但在所考虑的任何其他菌株中均未发现。在大肠杆菌CFT073中已经鉴定出了与编码肺炎克雷伯菌中L-山梨糖降解途径的操纵子非常相似的操纵子。该操纵子存在于所有考虑的UPEC中,但仅存在于其他16个菌株中的7个中。通过将基因克隆到大肠杆菌DH5α中并测试其在L-山梨糖上的生长,可以确认操纵子的功能。本文介绍的结合计算机和体外工作的功能基因组学方法可以用作发现其他在特定环境中有助于细菌存活的未表征基因的基础。

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