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Emerging coexistence of three PMQR genes on a multiple resistance plasmid with a new surrounding genetic structure of qnrS2 in E. coli in China

机译:中国大肠杆菌新遗传结构对多种抗性质粒的三种PMQR基因的新兴共存

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Background Quinolones are commonly used for treatment of infections by bacteria of the Enterobacteriaceae family. However, the rising resistance to quinolones worldwide poses a major clinical and public health risk. This study aimed to characterise a novel multiple resistance plasmid carrying three plasmid-mediated quinolone resistance genes in Escherichia coli clinical stain RJ749. Methods MICs of ceftriaxone, cefepime, ceftazidime, ciprofloxacin, and levofloxacin for RJ749 and transconjugant c749 were determined by the Etest method. Conjugation was performed using sodium azide-resistant E. coli J53 strain as a recipient. The quinolone resistance-determining regions of gyrA, gyrB, parC, and parE were PCR-amplified. Results RJ749 was highly resistant to quinolones, while c749 showed low-level resistance. S1-nuclease pulsed-field gel electrophoresis revealed that RJ749 and c749 both harboured a plasmid. PCR presented chromosomal mutation sites of the quinolone resistance-determining region, which mediated quinolone resistance. The c749 genome comprised a single plasmid, pRJ749, with a multiple resistance region, including three plasmid-mediated quinolone resistance (PMQR) genes (aac (6 ')-Ib-cr, qnrS2, and oqxAB) and ten acquired resistance genes. One of the genes, qnrS2, was shown for the first time to be flanked by two IS26s. Three IS26-mediated circular molecules carrying the PMQR genes were detected. Conclusions We revealed the coexistence of three PMQR genes on a multiple resistance plasmid and a new surrounding genetic structure of qnrS2 flanked by IS26 elements. IS26 plays an important role in horizontal spread of quinolone resistance.
机译:背景喹诺酮类通常用于治疗肠杆菌痤疮家族的细菌感染。然而,全世界喹诺网的抗升性造成了重大的临床和公共卫生风险。本研究旨在表征在大肠杆菌临床染色RJ749中携带三种质粒介导的喹啉抗基因的多种抗性质粒。方法采用ETEST方法测定CEFTRIAXONE,CEFEPIME,CEFTALADIDIME,CIPROOLACIN和RJ749和TREARCONJAGANT C749的MIC。使用叠氮化钠大肠杆菌J53菌株作为受体进行缀合。喹啉抗性测定区域的喹啉抗性测定区域,PCR扩增。结果RJ749对喹诺酮类高度抗性,而C749则表现出低级别的电阻。 S1 - 核酸酶脉冲场凝胶电泳显示RJ749和C749都覆盖了质粒。 PCR呈现喹啉抗性测定区域的染色体突变位点,其介导的喹诺酮抗性。 C749基因组包含单个质粒,PRJ749,具有多重电阻区域,包括三种质粒介导的喹啉抗性(PMQR)基因(AAC(6')-IB-CR,QNRS2和OQXAB)和10个获得的抗性基因。其中一个基因QNRS2 QNRS2首次被示出为两个IS26s。检测携带PMQR基因的三个IS26介导的圆形分子。结论我们揭示了三种PMQR基因对多种抗性质粒的共存和QNRS2的新围绕因子元素的新遗传结构。 IS26在喹啉抗性水平扩散中起重要作用。

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