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Impact of oxidative stress defense on bacterial survival and morphological change in Campylobacter jejuni under aerobic conditions

机译:有氧条件下氧化应激防御对空肠弯曲杆菌细菌存活和形态变化的影响

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摘要

Campylobacter jejuni, a microaerophilic foodborne pathogen, inescapably faces high oxygen tension during its transmission to humans. Thus, the ability of C. jejuni to survive under oxygen-rich conditions may significantly impact C. jejuni viability in food and food safety as well. In this study, we investigated the impact of oxidative stress resistance on the survival of C. jejuni under aerobic conditions by examining three mutants defective in key antioxidant genes, including ahpC, katA, and sodB. All the three mutants exhibited growth reduction under aerobic conditions compared to the wild-type (WT), and the ahpC mutant showed the most significant growth defect. The CFU reduction in the mutants was recovered to the WT level by complementation. Higher levels of reactive oxygen species were accumulated in C. jejuni under aerobic conditions than microaerobic conditions, and supplementation of culture media with an antioxidant recovered the growth of C. jejuni. The levels of lipid peroxidation and protein oxidation were significantly increased in the mutants compared to WT. Additionally, the mutants exhibited different morphological changes under aerobic conditions. The ahpC and katA mutants developed coccoid morphology by aeration, whereas the sodB mutant established elongated cellular morphology. Compared to microaerobic conditions, interestingly, aerobic culture conditions substantially induced the formation of coccoidal cells, and antioxidant treatment reduced the emergence of coccoid forms under aerobic conditions. The ATP concentrations and PMA–qPCR analysis supported that oxidative stress is a factor that induces the development of a viable-but-non-culturable state in C. jejuni. The findings in this study clearly demonstrated that oxidative stress resistance plays an important role in the survival and morphological changes of C. jejuni under aerobic conditions.
机译:空肠弯曲菌空肠食源性病原体在其传播给人类的过程中不可避免地面临着高氧张力。因此,空肠弯曲杆菌在富含氧气的条件下生存的能力可能会显着影响空肠弯曲杆菌在食品和食品安全中的生存能力。在这项研究中,我们通过检查关键抗氧化剂基因(包括ahpC,katA和sodB)中存在缺陷的三个突变体,在有氧条件下研究了抗氧化应激对空肠弯曲杆菌存活的影响。与野生型(WT)相比,这三个突变体在有氧条件下均表现出生长减少,而ahpC突变体表现出最明显的生长缺陷。通过互补将突变体中的CFU降低恢复至WT水平。在有氧条件下,空肠弯曲菌中的活性氧含量高于微有氧条件,并且补充抗氧化剂的培养基可以恢复空肠弯曲菌的生长。与野生型相比,突变体中脂质过氧化和蛋白质氧化的水平显着增加。此外,突变体在有氧条件下表现出不同的形态变化。 ahpC和katA突变体通过通气发展成球状形态,而sodB突变体则建立了细长的细胞形态。有趣的是,与微需氧条件相比,有氧培养条件实质上诱导了球状细胞的形成,而抗氧化剂处理减少了有氧条件下球状形式的出现。 ATP浓度和PMA-qPCR分析支持氧化应激是诱导空肠弯曲菌存活但不可培养状态发展的一个因素。这项研究的发现清楚地表明,在有氧条件下,抗氧化应激在空肠弯曲杆菌的存活和形态变化中起着重要作用。

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