Abstract

원유시료에서 분리한 대장균의 quinolone 항생제 내성비율과 그 내성 결정인자를 분석하였다. 원유시료에서 대장균을 분리하고 quinolone 항생제인 nalidixic acid와 ciprofloxacin에 대한 MIC값을 결정하였으며 내성균을 대상으로 염색체상에 있는 quinolone 내성 결정부위(quinolone resistant determining region, QRDR)인 gyrA, gyrB, parC, pareE의 염기서열 분석, 플라스미드상에 존재하는 내성유전자(plasmid mediated quinolone resistant, PMQR) qnrA, qnrB, qnrS, aac(6')-lb-cr, qepA의 분석 및 약물 유출펌프 유전자인 acrB의 발현을 비교 분석하였다. 그 결과 총 487개의 대장균군 세균중 9개의 균이 nalidixic acid에 내성임을 확인하였으며(<TEX>$MIC{\geq}64{\mu}g/ml$</TEX>) 이중 6개 균주가 ciprofloxacin에도 내성임을 확인하였다(MIC <TEX>$4-16{\mu}g/ml$</TEX>)). 9개의 내성 균주 모두 QRDR의 gyrA 영역 codon 83에 변이(S83L)를 갖고 있었으며 그 중 2균주는 codon 83과 87 (S83L and D87N)에 이중 돌연변이를 갖고 있었다. 한편 9균주 중 3개의 균주에서 parC 영역 codon 80 (S80I)에 변이를 갖고 있었다. 플라스미드 상에 존재하는 내성유전자인 qnrA, qnrB, qnrS, aac(6')-lb-cr 및 qepA 유전자는 존재하지 않았으며 AcrAB-TolC efflux pump 유전자인 acrB 유전자가 대조균인 E. coli ATCC 25922와 비교하여 ciprofloxacin 내성 균주 6균주 중 4균주에서 유의적으로 과발현(2.15-5.74배) 되고 있음을 확인하였다. The aim of this study was to investigate the prevalence of quinolone resistant E. coli from raw bulk milk and to characterize the resistance determinants. In this study, the gyrA, gyrB, parC, and parE quinolone resistance determining regions (QRDR) were sequenced from quinolone resistant E. coli isolates. Also, the presence of plasmid-mediated quinolone resistance (PMQR) and the expression of efflux pump genes based on quantitative real-time PCR (qRT-PCR) were investigated. Of the 487 coliform bacteria, 9 strains showed nalidixic acid resistance, and 6 of the 9 nalidixic acid resistant isolates were also ciprofloxacin resistant. These 9 strains had a single mutation at codon 83 (S83L) in gyrA, 2 of them had double mutations at codon 83 and 87 (S83L and D87N) in gyrA and 3 of the 9 isolates had single mutations at codon 80 (S80I) in parC. None of the 9 isolates harbored PMQR determinants. Compared with wild-type E. coli ATCC 25922, an over-expression of the acrB gene (2.15-5.74 fold), encoding the pump component of the AcrAB-TolC efflux pump was observed in 4 of 6 ciprofloxacin resistant isolates. This study identified the quinolone resistance mechanism of E. coli isolated from raw milk samples in Gyeonggi-do.

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