Combined metabolomics and transcriptomics analysis reveals the mechanism of antibiotic resistance of Salmonella enterica serovar Typhimurium after acidic stress

肠沙门氏菌 转录组 微生物学 沙门氏菌 细菌外膜 抗药性 抗生素耐药性 生物 抗生素 代谢组学 细菌 多重耐药 孔蛋白 生物化学 基因 基因表达 大肠杆菌 遗传学 生物信息学
作者
Shang Wei Wu,Jian Ji,Nanfack V.D. Carole,Jia Yang,Yang Yang,Jiadi Sun,Yongli Ye,Yinzhi Zhang,Xiulan Sun
出处
期刊:Food Microbiology [Elsevier]
卷期号:115: 104328-104328 被引量:8
标识
DOI:10.1016/j.fm.2023.104328
摘要

Drug-resistant Salmonella is widely distributed in the meat production chain, endangering food safety and public health. Acidification of meat products during processing can induce acid stress, which may alter antibiotic resistance. Our study investigated the effects of acid stress on the antibiotic resistance and metabolic profile of Salmonella Typhimurium, and explored the underlying mechanisms using metabolomic and transcriptomic analysis. We found that acid-stressed 14028s was more sensitive to small molecule hydrophobic antibiotics (SMHA) while more resistant to meropenem (MERO). Metabolomic analysis revealed that enhanced sensitivity to SMHA was correlated with increased purine metabolism and tricarboxylic acid cycle. Transcriptomic analysis revealed the downregulation of chemotaxis-related genes, which are also associated with SMHA sensitivity. We also found a significant downregulation of the ompF gene, which encodes a major outer membrane protein OmpF of Salmonella. The decreased expression of OmpF porin hindered the influx of MERO, leading to enhanced resistance of the bacteria to the drug. Our findings contribute to greatly improve the understanding of the relationship between Salmonella metabolism, gene expression, and changes in drug resistance after acid stress, while providing a structural framework for exploring the relationship between bacterial stress responses and antibiotic resistance.
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