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首页> 外文期刊>Antimicrobial agents and chemotherapy. >Relationship between mutations in the gyrA gene and quinolone resistance in clinical isolates of Corynebacterium striatum and Corynebacterium amycolatum.
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Relationship between mutations in the gyrA gene and quinolone resistance in clinical isolates of Corynebacterium striatum and Corynebacterium amycolatum.

机译:纹状体棒状杆菌和淀粉棒状杆菌临床分离株中gyrA基因突变与喹诺酮耐药性的关系。

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摘要

Quinolone susceptibility was analyzed in 17 clinical isolates of Corynebacterium striatum and 9 strains of Corynebacterium amycolatum by the E-test method in Mueller-Hinton agar plates. The C. striatum ATCC 6940 strain was used as a control strain. The amplified quinolone resistance determining regions of the gyrA genes of C. amycolatum and C. striatum were characterized. Four in vitro quinolone-resistant mutants of C. amycolatum were selected and analyzed. Both in vivo and in vitro quinolone-resistant strains of C. amycolatum showed high levels of fluoroquinolone resistance in strains with a double mutation leading to an amino acid change in positions 87 and 91 or positions 87 and 88 (unusual mutation) of GyrA, whereas the same concomitant mutations at amino acid positions 87 and 91 in GyrA of C. striatum produced high levels of resistance to ciprofloxacin and levofloxacin but only showed a moderate increase in the MIC of moxifloxacin, suggesting that other mechanism(s) of quinolone resistance could be involved in moxifloxacin resistance in C. amycolatum. Moreover, a PCR-RFLP-NcoI of the gyrA gene was developed to distinguish between C. amycolatum and C. striatum species.
机译:在Mueller-Hinton琼脂平板上通过E-test方法分析了17例纹状棒状杆菌临床分离株和9株淀粉样棒状杆菌中的喹诺酮敏感性。纹眉梭菌ATCC 6940菌株用作对照菌株。表征了C.amycolatum和纹状体C.的gyrA基因的扩增的喹诺酮抗性决定区域。选择并分析了四个体外抗扁桃体喹诺酮的突变体。体内和体外的耐C.amycolatum喹诺酮菌株在双突变菌株中均表现出高水平的氟喹诺酮耐药性,导致GyrA的第87和91位或第87和88位(异常突变)发生氨基酸改变,而纹状体梭菌GyrA的氨基酸位置87和91处的相同伴随突变产生了对环丙沙星和左氧氟沙星的高水平耐药性,但仅显示莫西沙星的MIC适度增加,表明喹诺酮耐药性的其他机制可能是参与了扁桃体对莫西沙星的耐药性。此外,开发了gyrA基因的PCR-RFLP-NcoI来区分扁桃体和纹状体。

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