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Pathogenomic comparison of human extraintestinal and avian pathogenic Escherichia coli - Search for factors involved in host specificity or zoonotic potential

机译:人肠外和禽类致病性大肠杆菌的病理基因组学比较-搜索与宿主特异性或人畜共患病潜力有关的因素

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摘要

Avian pathogenic Escherichia coil (APEC) and human extraintestinal pathogenic E. coli (ExPEC) cause various diseases in humans and animals and cannot be clearly distinguished by molecular epidemiology and genome content. We characterized traits of eight representative human ExPEC and APEC variants to either support the zoonotic potential or indicate factors involved in host specificity. These strains were very similar regarding phylogeny, virulence gene content and allelic variation of adhesins. Host- or serogroup-specific differences in type 1-, P-, S/F1C-fimbriae, curli, flagella, colicin and aerobactin expression or in vivo virulence were not found. Serogroup-dependent differences in genome content may depend on the phylogenetic background.To identify traits involved in host specificity, we performed transcriptome analysis of human ExPEC IHE3034 and APEC BEN374 in response to human (37 degrees C) or avian (41 degrees C) body temperature. Both isolates displayed similar transcriptional profiles at both temperatures. Transcript levels of motility/chemotaxis genes were repressed at 41 degrees C. The hdeAB and cadA genes involved in acid stress resistance, although often induced at 41 degrees C, could not be correlated with host specificity. Beside strain-specific effects, the common behavior of both strains at human or avian body temperature supports the idea of a potential zoonotic risk of certain human ExPEC and APEC variants
机译:禽病原性大肠埃希氏菌(APEC)和人类肠外病原性大肠杆菌(ExPEC)导致人畜共患多种疾病,无法通过分子流行病学和基因组含量清楚地区分。我们表征了八个代表性的人类ExPEC和APEC变体的特征,以支持人畜共患病的潜力或表明宿主特异性所涉及的因素。这些菌株在系统发生,毒力基因含量和粘附素等位基因变异方面非常相似。没有发现宿主或血清群特异性的1-型,P-型,S / F1C-菌毛,curli,鞭毛,大肠菌素和aerobactin表达或体内毒力的差异。基因组内容的血清群依赖性差异可能取决于系统发育背景。为鉴定与宿主特异性有关的特征,我们针对人类(37摄氏度)或禽类(41摄氏度)的身体进行了人类ExPEC IHE3034和APEC BEN374的转录组分析温度。两种分离物在两种温度下均显示相似的转录谱。活力/趋化性基因的转录水平在41°C时受到抑制。虽然经常在41°C诱导,但参与耐酸胁迫的hdeAB和cadA基因却与宿主特异性无关。除了菌株特异性作用外,两种菌株在人或禽的体温下的共同行为都支持某些人ExPEC和APEC变体潜在的人畜共患病风险

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