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The Conserved nhaAR Operon Is Drastically Divergent between B2 and Non-B2 Escherichia coli and Is Involved in Extra-Intestinal Virulence

机译:保守的nhaAR操纵子在B2和非B2大肠杆菌之间有很大差异并涉及肠外毒力

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摘要

The Escherichia coli species is divided in phylogenetic groups that differ in their virulence and commensal distribution. Strains belonging to the B2 group are involved in extra-intestinal pathologies but also appear to be more prevalent as commensals among human occidental populations. To investigate the genetic specificities of B2 sub-group, we used 128 sequenced genomes and identified genes of the core genome that showed marked difference between B2 and non-B2 genomes. We focused on the gene and its surrounding region with the strongest divergence between B2 and non-B2, the antiporter gene nhaA. This gene is part of the nhaAR operon, which is in the core genome but flanked by mobile regions, and is involved in growth at high pH and high sodium concentrations. Consistently, we found that a panel of non-B2 strains grew faster than B2 at high pH and high sodium concentrations. However, we could not identify differences in expression of the nhaAR operon using fluorescence reporter plasmids. Furthermore, the operon deletion had no differential impact between B2 and non-B2 strains, and did not result in a fitness modification in a murine model of gut colonization. Nevertheless, sequence analysis and experiments in a murine model of septicemia revealed that recombination in nhaA among B2 strains was observed in strains with low virulence. Finally, nhaA and nhaAR operon deletions drastically decreased virulence in one B2 strain. This effect of nhaAR deletion appeared to be stronger than deletion of all pathogenicity islands. Thus, a population genetic approach allowed us to identify an operon in the core genome without strong effect in commensalism but with an important role in extra-intestinal virulence, a landmark of the B2 strains.
机译:大肠埃希氏菌属分为致病性和共性分布不同的系统发育组。属于B2组的菌株参与肠道外病理,但在西方人群中作为共患病似乎也更为普遍。为了研究B2亚组的遗传特异性,我们使用了128个测序的基因组并鉴定了核心基因组的基因,这些基因显示了B2和非B2基因组之间的显着差异。我们集中研究了B2与非B2(反向转运蛋白基因nhaA)之间最强差异的基因及其周围区域。该基因是nhaAR操纵子的一部分,该子在核心基因组中,但侧翼为活动区,并参与高pH和高钠浓度下的生长。一致地,我们发现在高pH和高钠浓度下,一组非B2菌株的生长快于B2。但是,我们无法使用荧光报告质粒鉴定nhaAR操纵子的表达差异。此外,操纵子缺失在B2和非B2菌株之间没有差异性影响,并且在肠道定植的鼠模型中没有导致适应性的改变。然而,在鼠类败血病模型中进行序列分析和实验表明,在低毒力菌株中,在B2菌株中nhaA发生了重组。最后,nhaA和nhaAR操纵子缺失大大降低了一种B2株的毒力。 nhaAR缺失的这种作用似乎强于所有致病岛的缺失。因此,群体遗传学方法使我们能够在核心基因组中鉴定操纵子,而对共产主义没有强烈影响,但在肠外毒力(B2株的标志性作用)中具有重要作用。

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