Transcriptional analysis reveals the relativity of acid tolerance and antimicrobial peptide resistance of Salmonella

毒力 操纵子 生物 抗菌肽 沙门氏菌 微生物学 抗菌剂 抗生素耐药性 毒力因子 细菌 基因 遗传学 大肠杆菌 抗生素
作者
Cao Li,Jiawei Wang,Lu Sun,Zian Kong,Qingmin Wu,Zhen Wang
出处
期刊:Microbial Pathogenesis [Elsevier]
卷期号:136: 103701-103701 被引量:11
标识
DOI:10.1016/j.micpath.2019.103701
摘要

The objective of this study was to comprehensively identify the target genes induced by acid stimulation in Salmonella, and to clarify the relativity of acid tolerance and antimicrobial peptide resistance. A clinical S. Typhimurium strain, S6, was selected and performed a transcriptome analysis under the acid tolerance response. In total, we found 1461 genes to be differentially expressed, including 721 up-regulated and 740 down-regulated genes. Functional annotation revealed differentially expressed genes to be associated with regulation, metabolism, transport, virulence, and motility. Interestingly, KEGG pathway analysis demonstrated that the induced genes by acid were enriched in cationic antimicrobial peptide resistance, sulfur relay system, ABC transporters, and two-component system pathway. Therein, PhoQ belonging to the two-component system PhoP-PhoQ that promotes virulence by detecting the macrophage phagosome and controls the transcript levels of many genes associated with the resistance to AMPs; MarA, a multiple antibiotic resistance factor; SapA, one of the encoding gene of sapABCDF operon that confers resistance to small cationic peptides of Salmonella; YejB, one of the encoding gene of yejABEF operon that confers resistance to antimicrobial peptides and contributes to the virulence of Salmonella, were all induced by acid stimulation, and could potentially explain that there is a correlation between acid tolerance and AMPs resistance, and finally affects the virulence of intracellular pathogenic bacteria.

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