摘要
Salmonella gallinarum has shown multiple drug resistance(MDR),especially high level fluoroquinolone(FQ)resistance in recent years.To determine whether the active efflux system was responsible for high-level FQ resistance,this research studied AcrAB efflux pump in Salmonella gallinarum on molecular level.The resistant strains were induced by standard strain C79-13 with ciprofloxacin in vitro.With carbonylcyanide-p-chlorophenyl hydrazone(CCCP)as an energy inhibitor,efflux inhibition test initially showed the potential impact of efflux pump on drug resistance.Sequence analysis of acrA gene indicated that gene mutation of AcrAB efflux pump was not definitely associated with MDR and drug resistance level of Salmonella gallinarum.Detected by competitive RT-PCR,the mRNA expression of acrA and acrB genes in the resistant strains significantly increased(p<0.01)compared with that of the control strain C79-13.The mRNA expression level of acrB gene(increased from 1.6-to 2.9-folds)was consistent with that of acrA gene(increased from 1.6-to 2.8-folds),which increased with the drug resistance level.However,gene mutation of acrA gene showed no correlation with its mRNA expression level,indicating that gene mutation did not affect the expression of AcrAB pump itself.The results suggested that the overexpression rather than the gene mutation of AcrAB efflux pump was an important factor causing the high level drug resistance of Salmonella gallinarum.
基金
Supported by the Application Technology Research and Development Project in Heilongjiang Province of China(PC13S03)
the Foundation of Heilongjiang Province Educational Committee of China(11541030)。