Liu Xiayu, Liu Siyu, Wang Yuxi, Shi Ying, Chen Qihe
Innovation Center of Yangtze River Delta, Zhejiang University, Jiashan, 314100, China.
Department of Food Science and Nutrition, Zhejiang University, Hangzhou, 310058, China.
Biofilm. 2024 May 11;7:100201. doi: 10.1016/j.bioflm.2024.100201. eCollection 2024 Jun.
is one of the leading causative agents of foodborne disease outbreaks worldwide. Herein, the antibiofilm effect and mechanism of Mannosylerythritol Lipid-A against EGD-e is reported for the first time. MEL-A effectively attenuated biofilm formation while reducing the viability and motility of bacteria within the biofilm in the early stage, and influenced bacterial adhesion by affecting the secretion of extracellular polysaccharides and eDNA. RT-qPCR revealed that MEL-A significantly suppressed the expression of genes involved in flagellar movement and virulence. Untargeted LC-MS metabolomics indicated that MEL-A affected the fluidity and permeability of cell membranes by significantly upregulating unsaturated fatty acids, lipids and glycoside metabolites, and affected protein biosynthesis, nucleotide metabolism and DNA synthesis and repair by significantly downregulating amino acid metabolism and nucleic acid metabolism. These pathways may constitute the key targets of biofilm formation inhibition by MEL-A. Furthermore, MEL-A showed good removal effects on mature biofilms under different temperatures, different materials and milk. Our data indicated that MEL-A could be used as a novel antibiofilm agent to improve food safety. Our study provides new insights into the possible inhibitory mechanism of MEL-A and the response of EGD-e to MEL-A.
是全球食源性疾病暴发的主要致病因子之一。在此,首次报道了甘露糖赤藓糖醇脂-A对EGD-e的抗生物膜作用及其机制。MEL-A有效减弱生物膜形成,同时在早期降低生物膜内细菌的活力和运动性,并通过影响细胞外多糖和胞外DNA的分泌来影响细菌黏附。RT-qPCR显示,MEL-A显著抑制参与鞭毛运动和毒力的基因表达。非靶向液相色谱-质谱代谢组学表明,MEL-A通过显著上调不饱和脂肪酸、脂质和糖苷代谢物来影响细胞膜的流动性和通透性,并通过显著下调氨基酸代谢和核酸代谢来影响蛋白质生物合成、核苷酸代谢以及DNA合成和修复。这些途径可能构成MEL-A抑制生物膜形成的关键靶点。此外,MEL-A在不同温度、不同材料和牛奶条件下对成熟生物膜均显示出良好的清除效果。我们的数据表明,MEL-A可作为一种新型抗生物膜剂来提高食品安全。我们的研究为MEL-A可能的抑制机制以及EGD-e对MEL-A的反应提供了新的见解。