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首页> 外文期刊>Applied and Environmental Microbiology >Multiple Antibiotic Resistance (mar) Locus in Salmonella enterica Serovar Typhimurium DT104
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Multiple Antibiotic Resistance (mar) Locus in Salmonella enterica Serovar Typhimurium DT104

机译:肠炎沙门氏菌鼠伤寒沙门氏菌DT104的多重抗生素耐药性(mar)基因座

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In order to understand the role of the mar locus inSalmonella with regard to multiple antibiotic resistance, cyclohexane resistance, and outer membrane protein F (OmpF) regulation, a marA::gfp reporter mutant was constructed in an antibiotic-sensitive Salmonella entericaserovar Typhimurium DT104 background. Salicylate inducedmarA, whereas a number of antibiotics, disinfectants, and various growth conditions did not. Increased antibiotic resistance was observed upon salicylate induction, although this was shown to be by both mar-dependent and mar-independent pathways. Cyclohexane resistance, however, was induced by salicylate by a mar-dependent pathway. Complementation studies with a plasmid that constitutively expressed marA confirmed the involvement of mar in Salmonella with low-level antibiotic resistance and cyclohexane resistance, although the involvement of mar in down regulation of OmpF was unclear. However, marA overexpression did increase the expression of a ca. 50-kDa protein, but its identity remains to be elucidated. Passage of the marA::gfp reporter mutant with increasing levels of tetracycline, a method reported to select for mar mutants in Escherichia coli, led to both multiple-antibiotic and cyclohexane resistance. Collectively, these data indicate that low-level antibiotic resistance, cyclohexane resistance, and modulation of OMPs in Salmonella, as inE. coli, can occur in both a mar-dependent andmar-independent manner.
机译:为了了解沙门氏菌在多种抗生素耐药性,环己烷耐药性和外膜蛋白F(OmpF)调节方面的作用,在对抗生素敏感的肠沙门氏菌鼠伤寒沙门氏菌DT104背景中构建了marA :: gfp报告基因突变体。水杨酸盐诱导了marA,而许多抗生素,消毒剂和各种生长条件却没有。水杨酸盐诱导后观察到抗生素抗性增加,尽管这通过mar-依赖性和mar-非依赖性途径显示。然而,水杨酸酯通过mar依赖性途径诱导了对环己烷的抗性。用组成型表达marA的质粒进行的补充研究证实mar在沙门氏菌中具有低水平的抗生素抗性和环己烷抗性,尽管mar是否参与下调OmpF。但是,marA过表达确实增加了ca的表达。 50 kDa蛋白,但其身份仍有待阐明。具有增加的四环素水平的marA :: gfp报告基因突变体的传代,据报道该方法在大肠杆菌中选择mar突变体,导致多重抗生素耐药性和环己烷耐药性。总体而言,这些数据表明沙门氏菌中的低水平抗生素抗性,环己烷抗性和OMP的调节与inE相同。大肠埃希氏菌可以以mar-依赖性和mar-非依赖性方式发生。

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