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Transcriptome Analysis of Avian Pathogenic Escherichia coli O1 in Chicken Serum Reveals Adaptive Responses to Systemic Infection

机译:鸡血清中禽致病性大肠杆菌O1的转录组分析揭示了对系统感染的适应性反应。

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摘要

Infections of avian pathogenic Escherichia coli (APEC) result in annual multimillion-dollar losses to the poultry industry. Despite this, little is known about the mechanisms by which APEC survives and grows in the bloodstream. Thus, the aim of this study was to identify molecular mechanisms enabling APEC to survive and grow in this critical host environment. To do so, we compared the transcriptome of APEC O1 during growth in Luria-Bertani broth and chicken serum. Several categories of genes, predicted to contribute to adaptation and growth in the avian host, were identified. These included several known virulence genes and genes involved in adaptive metabolism, protein transport, biosynthesis pathways, stress resistance, and virulence regulation. Several genes with unknown function, which were localized to pathogenicity islands or APEC O1's large virulence plasmid, pAPEC-O1-ColBM, were also identified, suggesting that they too contribute to survival in serum. The significantly upregulated genes dnaK, dnaJ, phoP, and ybtA were subsequently subjected to mutational analysis to confirm their role in conferring a competitive advantage during infection. This genome-wide analysis provides novel insight into processes that are important to the pathogenesis of APEC O1.
机译:禽病原性大肠杆菌(APEC)的感染每年给家禽业造成数百万美元的损失。尽管如此,对APEC在血液中存活和生长的机制知之甚少。因此,本研究的目的是确定使APEC在此关键宿主环境中生存和生长的分子机制。为此,我们比较了Luria-Bertani肉汤和鸡血清生长期间APEC O1的转录组。确定了几种类别的基因,这些基因预计会有助于禽类宿主的适应和生长。这些包括几个已知的毒力基因和与适应性代谢,蛋白质转运,生物合成途径,抗逆性和毒力调节有关的基因。还鉴定了一些功能未知的基因,这些基因位于致病岛或APEC O1的大毒力质粒pAPEC-O1-ColBM,表明它们也有助于血清的存活。随后对显着上调的基因dnaK,dnaJ,phoP和ybtA进行突变分析,以确认其在感染过程中赋予竞争优势的作用。这种全基因组分析提供了对APEC O1发病机理重要过程的新颖见解。

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