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Genetic Characterization of Plasmid-Associated Benzalkonium Chloride Resistance Determinants in a Listeria monocytogenes Strain from the 1998-1999 Outbreak

机译:1998-1999年暴发性李斯特菌菌株中与质粒相关的苯扎氯铵抗性决定簇的遗传表征

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Quaternary ammonium compounds such as benzalkonium chloride (BC) are widely used as disinfectants in both food processing and medical environments. BC-resistant strains of Listeria monocytogenes have been implicated in multistate outbreaks of listeriosis and have been frequently isolated from food processing plants. However, the genetic basis for BC resistance in L. monocytogenes remains poorly understood. In this study, we have characterized a plasmid (pLM80)-associated BC resistance cassette in L. monocytogenes H7550, a strain implicated in the 1998-1999 multistate outbreak involving contaminated hot dogs. The BC resistance cassette ( bcrABC ) restored resistance to BC (MIC, 40 μg/ml) in a plasmid-cured derivative of H7550. All three genes of the cassette were essential for imparting BC resistance. The transcription of H7550 BC resistance genes was increased under sublethal (10 μg/ml) BC exposure and was higher at reduced temperatures (4, 8, or 25°C) than at 37°C. The level of transcription was higher at 10 μg/ml than at 20 or 40 μg/ml. In silico analysis suggested that the BC resistance cassette was harbored by an IS 1216 composite transposon along with other genes whose functions are yet to be determined. The findings from this study will further our understanding of the adaptations of this organism to disinfectants such as BC and may contribute to the elucidation of possible BC resistance dissemination in L. monocytogenes .
机译:季铵化合物,例如苯扎氯铵(BC),在食品加工和医疗环境中被广泛用作消毒剂。单核细胞增生性李斯特菌的BC耐药菌株与李斯特菌病的多州暴发有关,并经常从食品加工厂中分离出来。然而,单核细胞增生李斯特氏菌的BC抗性的遗传基础仍然知之甚少。在这项研究中,我们已经在单核细胞增生李斯特菌H7550中鉴定了一个与质粒(pLM80)相关的BC抗性盒,该菌株与1998-1999年多州暴发有关,涉及受污染的热狗。 BC抗性盒(bcrABC)在H7550的质粒固化衍生物中恢复了对BC(MIC,40μg/ ml)的抗性。该盒的所有三个基因对于赋予BC抗性是必不可少的。 H7550 BC抗性基因的转录在亚致死(10μg/ ml)BC暴露下增加,并且在降低的温度(4、8或25°C)下高于37°C。 10μg/ ml时的转录水平高于20或40μg/ ml时的转录水平。电脑分析表明,BC 12抗性盒由IS 1216复合转座子以及其他功能尚待确定的基因所掩盖。这项研究的结果将进一步增进我们对这种生物对消毒剂(如BC)的适应性的理解,并可能有助于阐明单核细胞增生李斯特菌中可能的BC抗性传播。

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