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The KdpD/KdpE two-component system contributes to the motility and virulence of avian pathogenic Escherichia coli

机译:KDPD / KDPE双组分系统有助于禽病原体大肠杆菌的动力和毒力

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Two-component systems (TCSs) are widespread regulatory systems which can help bacteria to control their cellular functions and respond to a diverse range of stimuli. The KdpD/KdpE system had been well studied for regulating potassium transport and identified as an adaptive regulator involved in the virulence of some pathogenic bacteria, but its role in avian pathogenic Escherichia coli (APEC) was still unknown. In this study, the mutant strain AE17 Delta KdpDE was obtained successfully of a clinical APEC isolation AE17 using the lambda Red recombinase system and performed the transcriptional sequencing of the wild type strain AE17 and the mutant strain AE17 Delta KdpDE. The transcriptional sequencing results revealed that the KdpD/KdpE two-component system mainly influenced the expression of the genes covering metabolic pathways, flagellar assembly, global transcription regulator. The expression of some flagellar-related genes detecting by quantitative real-time PCR was consistent with the results of transcriptional sequencing. Importantly, fewer flagellum of the mutant strain AE17 Delta KdpDE was observed than AE17 using the transmission electron microscope and a decreased motility circle of AE17 Delta KdpDE appeared in the semisolid medium. In addition, the serum bactericidal assay was carried out with the specific-pathogen-free chicken in different dilution and the survival ability in the serum of AE17 Delta KdpDE was also obviously lower than that of AE17. These results suggested that in APEC, the KdpD/KdpE two-component system mainly influenced the expression of flagella-related genes, the flagellum formation, the motility and antiserum bactericidal activity.
机译:双组分系统(TCSS)是广泛的调节系统,可以帮助细菌控制其蜂窝功能并响应各种刺激。 KDPD / KDPE系统已经很好地研究了调节钾转运,并鉴定为涉及一些致病细菌的毒力的适应性调节因子,但其在禽病原体大肠杆菌(APEC)中的作用仍然未知。在该研究中,使用λ红重组酶系统成功获得突变菌株AE17δKDPDE,并进行突出的αEE17和突变菌株AE17 Delta Kdpde的转录测序。转录测序结果表明,KDPD / KDPE双组分系统主要影响覆盖代谢途径,鞭毛组件,全局转录调节剂的基因的表达。通过定量实时PCR检测的一些鞭毛相关基因的表达与转录测序的结果一致。重要的是,使用透射电子显微镜观察到突变菌株AE17δKDPDE的较少的鞭毛,并且在半固体培养基中出现AE17 Delta Kdpde的减少的运动圆。此外,血清杀菌试验用不同稀释的无菌无菌鸡进行,AE17ΔKdPDE的血清中的存活能力也明显低于AE17。这些结果表明,在APEC中,KDPD / KDPE双组分系统主要影响了鞭毛相关基因,鞭毛形成,运动和抗血清杀菌活性的表达。

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