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RpoS-independent evolution reveals the importance of attenuated cAMP/CRP regulation in high hydrostatic pressure resistance acquisition in E. coli

机译:不依赖RpoS的进化揭示了减弱的cAMP / CRP调节在大肠杆菌中获得高静水压力阻力的重要性

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摘要

High hydrostatic pressure (HHP) processing is an attractive non-thermal alternative to food pasteurization. Nevertheless, the large inter- and intra-species variations in HHP resistance among foodborne pathogens and the ease by which they can acquire extreme resistance are an issue of increasing concern. Since RpoS activity has been considered as a central determinant in the HHP resistance of E. coli and its pathovars, this study probed for the potential of an E. coli MG1655 ΔrpoS mutant to acquire HHP resistance by directed evolution. Despite the higher initial HHP sensitivity of the ΔrpoS mutant compared to the wild-type strain, evolved lineages of the former readily managed to restore or even succeed wild-type levels of resistance. A number of these ΔrpoS derivatives were affected in cAMP/CRP regulation, and this could be causally related to their HHP resistance. Subsequent inspection revealed that some of previously isolated HHP-resistant mutants derived from the wild-type strain also incurred a causal decrease in cAMP/CRP regulation. cAMP/CRP attenuated HHP-resistant mutants also exhibited higher resistance to fosfomycin, a preferred treatment for STEC infections. As such, this study reveals attenuation of cAMP/CRP regulation as a relevant and RpoS-independent evolutionary route towards HHP resistance in E. coli that coincides with fosfomycin resistance.
机译:高静水压(HHP)处理是食品巴氏灭菌法的一种有吸引力的非热替代方法。然而,食源性病原体之间HHP耐药性的种间和种内差异很大,以及它们获得极强耐药性的难易程度日益引起人们的关注。由于RpoS活性已被认为是大肠杆菌及其致病菌对HHP抗性的主要决定因素,因此本研究探讨了大肠杆菌MG1655ΔrpoS突变体通过定向进化获得HHP抗性的潜力。尽管与野生型菌株相比,ΔrpoS突变体的初始HHP敏感性更高,但前者的进化谱系很容易恢复或成功达到野生型抗性水平。这些ΔrpoS衍生物中有许多在cAMP / CRP调节中受到影响,这可能与其HHP抗性有关。随后的检查表明,某些先前分离的源自野生型菌株的HHP抗性突变体也导致cAMP / CRP调节的因果下降。 cAMP / CRP减毒的HHP耐药突变体还显示出对磷霉素的更高耐药性,这是STEC感染的首选治疗方法。因此,这项研究揭示了cAMP / CRP调节的减弱,这是与Hfo耐药相关的,与RpoS无关的,与RpoS无关的进化途径,与磷霉素耐药性相吻合。

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