Escherichia coli O157:H7 is one of the major foodborne pathogenic bacterial that cause infectious diseases in humans.The previous found that a combination of kojic acid and tea polyphenols exhibited better activity ag...Escherichia coli O157:H7 is one of the major foodborne pathogenic bacterial that cause infectious diseases in humans.The previous found that a combination of kojic acid and tea polyphenols exhibited better activity against E.coli O157:H7 than using either alone.This study aimed to explore responses underlying the antibacterial mechanisms of kojic acid and tea polyphenols from the gene level.The functional enrichment analysis by comparing kojic acid and tea polyphenols individually or synergistically against E.coli O157:H7 found that acid resistance systems in kojic acid were activated,and the cell membrane and genomic DNA were destructed in the cells,resulting in“oxygen starvation”.The oxidative stress response triggered by tea polyphenols inhibited both sulfur uptake and the synthesis of ATP,which affected the bacteria's life metabolic process.Interestingly,we found that kojic acid combined with tea polyphenols hindered the uptake of iron that played an essential role in the synthesis of DNA,respiration,tricarboxylic acid cycle.The results suggested that the iron uptake pathways may represent a novel approach for kojic acid and tea polyphenols synergistically against E.coli O157:H7 and provided a theoretical basis for bacterial pathogen control in the food industry.展开更多
目的:构建对肠上皮细胞粘附缺陷的肠出血性大肠埃希菌O157∶H7(EHEC O157)突变株,为体内、体外研究其粘附机制提供可用工具。方法:将pSC101和m in i-Tn5Km2分别通过转化和结合导入O157Sakai菌株中,筛选粘附力缺陷的转化子感染Caco-2细胞...目的:构建对肠上皮细胞粘附缺陷的肠出血性大肠埃希菌O157∶H7(EHEC O157)突变株,为体内、体外研究其粘附机制提供可用工具。方法:将pSC101和m in i-Tn5Km2分别通过转化和结合导入O157Sakai菌株中,筛选粘附力缺陷的转化子感染Caco-2细胞株,观察Caco-2单层细胞中的微菌落数量和m in i-Tn5Km2插入位点。结果:经诱变,共分离到3组粘附缺陷突变株,1组完全丧失了粘附力,2组粘附力减弱,3组的粘附力更弱。1组和3组拥有LEE岛上多基因的转座子插入,而2组m in i-Tn5Km2的插入位点在LEE岛之外。结论:O157Sakai的肠道粘附能力可能与LEE岛的III型分泌系统有关。展开更多
基金supported by National Natural Science Foundation of China(31972021)R&D Projects in Key Areas of Guangdong Province(2019B020212003)+4 种基金the Science and Technology Program of Guangzhou,China(202206010177)Guangdong key research and development program(2021B0202060001)Foshan and agricultural academy cooperation projectGuangdong Modern Agriculture project(2022KJ117)Aquatic Products Center Project of GAAS。
文摘Escherichia coli O157:H7 is one of the major foodborne pathogenic bacterial that cause infectious diseases in humans.The previous found that a combination of kojic acid and tea polyphenols exhibited better activity against E.coli O157:H7 than using either alone.This study aimed to explore responses underlying the antibacterial mechanisms of kojic acid and tea polyphenols from the gene level.The functional enrichment analysis by comparing kojic acid and tea polyphenols individually or synergistically against E.coli O157:H7 found that acid resistance systems in kojic acid were activated,and the cell membrane and genomic DNA were destructed in the cells,resulting in“oxygen starvation”.The oxidative stress response triggered by tea polyphenols inhibited both sulfur uptake and the synthesis of ATP,which affected the bacteria's life metabolic process.Interestingly,we found that kojic acid combined with tea polyphenols hindered the uptake of iron that played an essential role in the synthesis of DNA,respiration,tricarboxylic acid cycle.The results suggested that the iron uptake pathways may represent a novel approach for kojic acid and tea polyphenols synergistically against E.coli O157:H7 and provided a theoretical basis for bacterial pathogen control in the food industry.
文摘目的:构建对肠上皮细胞粘附缺陷的肠出血性大肠埃希菌O157∶H7(EHEC O157)突变株,为体内、体外研究其粘附机制提供可用工具。方法:将pSC101和m in i-Tn5Km2分别通过转化和结合导入O157Sakai菌株中,筛选粘附力缺陷的转化子感染Caco-2细胞株,观察Caco-2单层细胞中的微菌落数量和m in i-Tn5Km2插入位点。结果:经诱变,共分离到3组粘附缺陷突变株,1组完全丧失了粘附力,2组粘附力减弱,3组的粘附力更弱。1组和3组拥有LEE岛上多基因的转座子插入,而2组m in i-Tn5Km2的插入位点在LEE岛之外。结论:O157Sakai的肠道粘附能力可能与LEE岛的III型分泌系统有关。