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首页> 外文期刊>FEMS Microbiology Letters >Atypical enteropathogenic Escherichia coli genomic background allows the acquisition of non-EPEC virulence factors
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Atypical enteropathogenic Escherichia coli genomic background allows the acquisition of non-EPEC virulence factors

机译:非典型肠致病性大肠杆菌基因组背景可获取非EPEC毒力因子

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摘要

Atypical enteropathogenic Escherichia coli (aEPEC) has been associated with infantile diarrhea in many countries. The clonal structure of aEPEC is the object of active investigation but few works have dealt with its genetic relationship with other diarrheagenic E. coli (DEC). This study aimed to evaluate the genetic relationship of aEPEC with other DEC pathotypes. The phylogenetic relationships of DEC strains were evaluated by multilocus sequence typing. Genetic diversity was assessed by pulsed-field gel electrophoresis (PFGE). The phylogram showed that aEPEC strains were distributed in four major phylogenetic groups (A, B1, B2 and D). Cluster I ( group B1) contains the majority of the strains and other pathotypes [enteroaggregative, enterotoxigenic and enterohemorrhagic E. coli ( EHEC)]; cluster II ( group A) also contains enteroaggregative and diffusely adherent E. coli; cluster III ( group B2) has atypical and typical EPEC possessing H6 or H34 antigen; and cluster IV ( group D) contains aEPEC O55:H7 strains and EHEC O157:H7 strains. PFGE analysis confirmed that these strains encompass a great genetic diversity. These results indicate that aEPEC clonal groups have a particular genomic background - especially the strains of phylogenetic group B1 that probably made possible the acquisition and expression of virulence factors derived from non-EPEC pathotypes.
机译:在许多国家,非典型肠致病性大肠杆菌(aEPEC)与婴儿腹泻有关。 aEPEC的克隆结构是积极研究的对象,但很少涉及其与其他腹泻性大肠杆菌(DEC)的遗传关系。这项研究旨在评估aEPEC与其他DEC病态的遗传关系。通过多基因座序列分型来评估DEC菌株的系统发育关系。通过脉冲场凝胶电泳(PFGE)评估遗传多样性。系统进化图显示aEPEC菌株分布在四个主要的系统发育组中(A,B1,B2和D)。群集I(B1组)包含大多数菌株和其他病理类型[全聚集型,产肠毒素性和肠出血性大肠杆菌(EHEC)]; II类(A组)还包含肠聚集性和弥散性粘附的大肠杆菌;簇III(B2组)具有非典型且典型的具有H6或H34抗原的EPEC;第四类(D组)包含aEPEC O55:H7菌株和EHEC O157:H7菌株。 PFGE分析证实,这些菌株具有很大的遗传多样性。这些结果表明,aEPEC克隆组具有特定的基因组背景-尤其是系统发育组B1的菌株,可能使获取和表达源自非EPEC病态型的毒力因子成为可能。

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