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Identification and Mechanism of Evolution of New Alleles Coding for the AIDA-I Autotransporter of Porcine Pathogenic Escherichia coli

机译:猪致病性大肠杆菌AIDA-I自转运蛋白新等位基因编码的鉴定和进化机理

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Autotransporters are a large family of virulence factors of Gram-negative bacterial pathogens. The autotransporter adhesin involved in diffuse adherence (AIDA-I) is an outer membrane protein of Escherichia coli , which allows binding to epithelial cells as well as the autoaggregation of bacteria. AIDA-I is glycosylated by a specific heptosyltransferase encoded by the aah gene that forms an operon with the aidA gene. aidA is highly prevalent in strains that cause disease in pigs. Nevertheless, there are only two published whole-length sequences for this gene. In this study, we sequenced the aah and aidA genes of 24 aidA -positive porcine strains harboring distinct virulence factor profiles. We compared the obtained sequences and performed phylogenetic and pulsed-field electrophoresis analyses. Our results suggest that there are at least 3 different alleles for aidA , which are associated with distinct virulence factor profiles. The genes are found on high-molecular-weight plasmids and seem to evolve via shuffling mechanisms, with one of the sequences showing evidence of genetic recombination. Our work suggests that genetic plasticity allows the evolution of aah-aidA alleles that are selected during pathogenesis.
机译:自转运蛋白是革兰氏阴性细菌病原体的毒力因子的大家族。参与弥散粘附的自转运粘附素(AIDA-I)是大肠杆菌的一种外膜蛋白,可与上皮细胞结合以及细菌的自动聚集。 AIDA-1被aah基因编码的特异性七糖基转移酶糖基化,该aah基因与aidA基因形成操纵子。 aidA在引起猪疾病的毒株中非常普遍。但是,该基因只有两个公开的全长序列。在这项研究中,我们对24株具有不同毒力因子谱的aidA阳性猪株的aah和aidA基因进行了测序。我们比较了获得的序列,并进行了系统发育和脉冲场电泳分析。我们的结果表明,关于aidA至少存在3个不同的等位基因,它们与不同的毒力因子谱相关。该基因存在于高分子量质粒中,似乎通过改组机制进化,其中一个序列显示出基因重组的证据。我们的工作表明,遗传可塑性允许在发病机理中选择的aah-aidA等位基因进化。

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