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Antibacterial Efficacy and Mechanism of Mannosylerythritol Lipids-A on Listeria monocytogenes

机译:甘露话奈脂质-A对李斯特菌单核细胞增生的抗菌疗效及机制

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Mannosylerythritol lipids-A (MEL-A) is a novel biosurfactant with excellent surface activity and potential biomedical applications. In this study, we explored the antibacterial activity and the underlying mechanisms of MEL-A against the important food-borne pathogen Listeria monocytogenes. The bacterial growth and survival assays revealed a remarkable antibacterial activity of MEL-A. Since MEL-A is a biosurfactant, we examined the cell membrane integrity and morphological changes of MEL-A-treated bacteria by biochemical assays and flow cytometry analysis and electron microscopes. The results showed obvious damaging effects of MEL-A on the cell membrane and morphology. To further explore the antibacterial mechanism of MEL-A, a transcriptome analysis was performed, which identified 528 differentially expressed genes (DEGs). Gene ontology (GO) analysis revealed that the gene categories of membrane, localization and transport were enriched among the DEGs, and the analysis of the Kyoto Encyclopedia of Genes and Genomes (KEGG) pathways demonstrated significant changes in the maltodextrin ABC transporter system and stress response system. Furthermore, the growth of L. monocytogenes could also be significantly inhibited by MEL-A in milk, a model of a real food system, suggesting that MEL-A could be potentially applied as an natural antimicrobial agent to control food-borne pathogens in the food industry.
机译:人奈尼糖醇脂质-A(MEL-A)是一种新型生物活性剂,具有优异的表面活性和潜在的生物医学应用。在这项研究中,我们探讨了抗菌活性和Mel-A对阵重要的食品传播病原体李斯特菌单核细胞增生的抗菌活性和潜在机制。细菌生长和存活测定显示Mel-A的显着抗菌活性。由于Mel-A是生物活性剂,我们通过生物化学测定和流式细胞术分析和电子显微镜检查了MEL-A处理细菌的细胞膜完整性和形态学变化。结果表明Mel-A对细胞膜和形态的显而易见的损伤作用。为了进一步探索Mel-A的抗菌机制,进行转录组分析,其鉴定了528个差异表达基因(DEGS)。基因本体论(GO)分析显示,膜的基因类别,局部化和运输中富集,以及基因和基因组(Kegg)途径的京都百科全书(Kegg)途径的分析表现出麦芽糊精ABC转运蛋白系统和应力反应的显着变化系统。此外,L.单核细胞增生的生长也可以通过MEL-A在牛奶中显着抑制一种真正的食物系统的模型,表明MEL-A可能被视为一种天然抗微生物剂以控制食物传播的病原体食品工业。

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