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σB and σL Contribute to Listeria monocytogenes 10403S Response to the Antimicrobial Peptides SdpC and Nisin

机译:σB和σL有助于单核细胞增生性李斯特菌10403S对抗菌肽SdpC和Nisin的反应

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摘要

The ability of the foodborne pathogen Listeria monocytogenes to survive antimicrobial treatments is a public health concern; therefore, this study was designed to investigate genetic mechanisms contributing to antimicrobial response in L. monocytogenes. In previous studies, the putative bacteriocin immunity gene lmo2570 was predicted to be regulated by the stress responsive alternative sigma factor, σB. As the alternative sigma factor σL controls expression of genes important for resistance to some antimicrobial peptides, we hypothesized roles for lmo2570, σB, and σL in L. monocytogenes antimicrobial response. Results from phenotypic characterization of a L. monocytogenes lmo2570 null mutant suggested that this gene does not contribute to resistance to nisin or to SdpC, an antimicrobial peptide produced by some strains of Bacillus subtilis. While lmo2570 transcript levels were confirmed to be σB dependent, they were σL independent and were not affected by the presence of nisin under the conditions used in this study. In spot-on-lawn assays with the SdpC-producing B. subtilis EG351, the L. monocytogenes ΔsigB, ΔsigL, and ΔsigB/ΔsigL strains all showed increased sensitivity to SdpC, indicating that both σB and σL regulate genes contributing to SdpC resistance. Nisin survival assays showed that σB and σL both affect L. monocytogenes sensitivity to nisin in broth survival assays; that is, a sigB null mutant is more resistant than the parent strain to nisin, while a sigB null mutation in ΔsigL background leads to reduced nisin resistance. In summary, while the σB-dependent lmo2570 does not contribute to resistance of L. monocytogenes to nisin or SdpC, both σB and σL contribute to the L. monocytogenes antimicrobial response.
机译:食源性单核细胞增生李斯特氏菌的抗微生物治疗生存能力是一个公共卫生问题;因此,本研究旨在研究导致单核细胞增生李斯特菌抗菌反应的遗传机制。在以前的研究中,预计推定的细菌素免疫基因lmo2570受应激反应性替代σ因子σ B 的调控。由于替代的σ因子σ L 控制着对某些抗菌肽具有抗性的重要基因的表达,因此我们假设了lmo2570,σ B 和σ L 的作用在单核细胞增生李斯特氏菌的抗微生物反应中。单核细胞增生李斯特菌lmo2570无效突变型的表型表征结果表明,该基因对乳酸链球菌素或对SdpC(由某些枯草芽孢杆菌菌株产生的抗菌肽)的耐药性无贡献。尽管确定了lmo2570转录本水平是σ B 依赖性的,但它们是σ L 无关的,并且在本研究使用的条件下不受乳链菌肽存在的影响。在产SdpC枯草芽孢杆菌EG351的草坪上点检中,单核细胞增生李斯特菌ΔsigB,ΔsigL和ΔsigB/ΔsigL菌株均显示出对SdpC的敏感性提高,表明σ B 和σ L 调节导致SdpC抗性的基因。乳链菌肽生存测定表明,在肉汤存活试验中,σ B 和σ L 都影响单核细胞增生李斯特菌对乳链菌肽的敏感性。也就是说,sigB null突变体比亲本菌株对乳链菌肽的抗性更高,而Δ sigL 背景中的 sigB 空突变导致乳链菌肽的抗性降低。总之,尽管依赖于σ B lmo2570 L的抗性没有贡献。乳链菌肽或SdpC的单核细胞增生因子,σ B 和σ L 均对 L起作用。单核细胞增生的抗菌反应。

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