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Haemophilus parasuis CpxRA two-component system confers bacterial tolerance to environmental stresses and macrolide resistance

机译:ProAmophilus parasuis cpxra双组分系统将细菌耐受性与环境压力和大胶质植物抗性赋予

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摘要

Haemophiltis parasuis is an opportunistic pathogen localized in the upper respiratory tracts of pigs, its infection begins from bacterial survival under complex conditions, like hyperosmosis, Oxidative stress, phagocytosis, and sometimes antibiotics as well. The two-component signal transduction (TCST) system serves as a common stimulus-response mechanism that allows microbes to sense and respond to diverse environmental conditions via a series of phosphorylation reactions. In this study, we investigated the role of TCST system CpxRA in H. parasuis in response to different environmental stimuli by constructing the Delta cpxA and Delta cpxR single deletion mutants as well as the Delta cpxRA double deletion mutant from H. parasols serotype 4 isolate JS0135. We demonstrated that H. parasuis TCST system CpxRA confers bacterial tolerance to stresses and bactericidal antibiotics. The CpxR was found to play essential roles in mediating oxidative stress, osmotic stresses and alkaline pH stress tolerance, as well as macrolide resistance (i.e. erythromycin), but the CpxA deletion did not decrease bacterial resistance to abovementioned stresses. Moreover, we found via RT-qPCR approach that HAPS_RS00160 and HAPS_RS09425, both encoding multidrug efflux pumps, were significantly decreased in erythromycin challenged Delta cpxR and Delta cpxRA mutants compared with wild-type strain JS0135. These findings characterize the role of the TCST system CpxRA in H. parasuis conferring stress response tolerance and bactericidal resistance, which will deepen our understanding of the pathogenic mechanism in H. parasuis.
机译:Haemophiltis parasuis是一种机会主义病原体,其猪的上呼吸道,其感染在复杂条件下从细菌存活开始,如过态,氧化应激,吞噬作用,有时也是抗生素。双组分信号转导(TCST)系统用作常见的刺激响应机制,允许微生物通过一系列磷酸化反应感测和响应各种环境条件。在这项研究中,我们通过构建δCPXA和δCPXR单缺失突变体以及来自H.遮阳伞血清型4分离attate JS0135的ΔCpxra双缺失突变体,研究了TCST系统CPXRA在H. Parasuis的作用。 。我们证明,H.Parasuis TCST系统CPXRA赋予应力和杀菌抗生素的细菌耐受性。发现CPXR在介导氧化应激,渗透胁迫和碱性pH胁迫耐受性以及大氯化物抗性(即红霉素)中起着基本作用,但CPXA缺失没有降低对上述胁迫的细菌性抗性。此外,我们发现通过RT-QPCR方法,HAPS_RS00160和HAPS_RS09425编码多药型泵,红霉素挑战ΔCPXR和DELTA CPXRA突变体在野生型菌株JS0135比较的情况下显着降低。这些发现表征了TCST系统CPXRA在H.Parasuis中的作用赋予应激响应耐受性和杀菌性抗性,这将深化我们对普拉的致病机制的理解。

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