Ma Kai, Wang Hui, Lv Zhenfei, Hu Yutong, Wang Hongli, Shu Fang, Zhu Chengfeng, Xue Ting
School of Life Sciences, Anhui Agricultural University, Hefei 230036, China.
Animals (Basel). 2023 Jan 23;13(3):383. doi: 10.3390/ani13030383.
Avian pathogenic (APEC) is one of the common extraintestinal infectious disease pathogens in chickens, geese, and other birds. It can cause a variety of infections, and even the death of poultry, causing enormous economic losses. However, the misuse and abuse of antibiotics in the poultry industry have led to the development of drug resistance in the gut microbes, posing a challenge for the treatment of APEC infections. It has been reported that the CpxRA two-component system has an effect on bacterial drug resistance, but the specific regulatory mechanism remains unclear. In this study, the regulatory mechanism of CpxRA on APEC biofilm formation and EmrKY efflux pump was investigated. The knockout strain of APEC40 was constructed, and the molecular regulatory mechanism of CpxR on biofilms and efflux pump-coding genes were identified by biofilm formation assays, drug susceptibility test, real-time reverse transcription quantitative PCR, and electrophoretic mobility shift assay (EMSA). The results indicated that CpxR can directly bind to the promoter region of and negatively regulate the sensitivity of bacteria to ofloxacin and erythromycin. These results confirm the important regulatory role of the CpxRA two-component system under antibiotic stress in APEC.
禽致病性大肠杆菌(APEC)是鸡、鹅等禽类常见的肠道外感染病原体之一。它可引发多种感染,甚至导致家禽死亡,造成巨大经济损失。然而,家禽业中抗生素的滥用和误用已导致肠道微生物产生耐药性,给APEC感染的治疗带来挑战。据报道,CpxRA双组分系统对细菌耐药性有影响,但具体调控机制尚不清楚。本研究调查了CpxRA对APEC生物膜形成和EmrKY外排泵的调控机制。构建了APEC40基因敲除菌株,并通过生物膜形成试验、药敏试验、实时逆转录定量PCR和电泳迁移率变动分析(EMSA)确定了CpxR对生物膜和外排泵编码基因的分子调控机制。结果表明,CpxR可直接结合到基因的启动子区域,并负向调节细菌对氧氟沙星和红霉素的敏感性。这些结果证实了CpxRA双组分系统在抗生素应激下对APEC的重要调控作用。