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首页> 外文期刊>Microbial drug resistance: MDR : Mechanisms, epidemiology, and disease >Characterization of ESBLs and associated quinolone resistance in escherichia coli and klebsiella pneumoniae isolates from an urban wastewater treatment plant in Algeria
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Characterization of ESBLs and associated quinolone resistance in escherichia coli and klebsiella pneumoniae isolates from an urban wastewater treatment plant in Algeria

机译:阿尔及利亚城市污水处理厂中大肠杆菌和肺炎克雷伯菌分离物中ESBLs的特征和相关的喹诺酮耐药性

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摘要

The aim of the study was the characterization of extended spectrum beta-lactamases (ESBLs) and quinolone resistance in cefotaxime-resistant coliform isolates from a wastewater treatment plant (WWTP). ESBLs were detected in 19 out of 24 isolates (79%) from raw water and in 21 out of 24 isolates (87.5%) from treated water, identified as Klebsiella pneumoniae and Escherichia coli. Molecular characterization of ESBLs and quinolone resistance showed allele profiles CTX-M-15 (3), CTX-M-3 (5), CTX-M-15+qnrB1 (1), CTX-M-3+qnrB1 (1), CTX-M-15+aac-(6′)-Ib-cr (4), and CTX-M-15+qnrB1+aac-(6′)-Ib-cr (7). A double mutation S83L and D87N (GyrA) and a single mutation S80I (ParC) were detected in ciprofloxacin-resistant E. coli isolates. In K. pneumoniae, mutations S83I (GyrA)+S80I (ParC) or single S80I mutation were detected in ciprofloxacin-resistant isolates, and no mutation was observed in ciprofloxacin-susceptible isolates. blaCTX-M, qnrB1, and aac-(6′)-Ib-cr were found, respectively, in these genetic environments: ISEcp1-blaCTX-M-orf477, orf1005-orf1-qnrB1, and Tn1721-IS26-aac-(6')- Ib-cr-blaOXA-1-catB4. blaCTX-M-15 was located on IncF plasmid in E. coli and blaCTX-M-3 on IncL/M plasmid in both species (E. coli and K. pneumoniae). E. coli isolates were affiliated to the phylogroups/MLST: D/ST405 (CC405), A/ST10 (CC10), A/ST617 (CC10), and B1/ST1431. K. pneumoniae isolates belonged to phylogroup KpI and to sequence types ST15, ST17, ST36, ST48, ST54, and ST147. The study showed a multi-drug resistance at the inflow and outflow of the WWTP, with ESBL production, plasmid-mediated quinolones resistance, and mutations in topoisomerases. The findings highlight the similarity of antibiotic resistance mechanisms in the clinical setting and the environment, and the role of the latter as a source of dissemination of resistance genes.
机译:这项研究的目的是表征污水处理厂(WWTP)中对头孢噻肟耐药的大肠菌群中扩展光谱的β-内酰胺酶(ESBLs)和喹诺酮耐药性。在原水的24个分离株中,有19个(79%)检出了ESBLs,在处理过的水的24个分离株(87.5%)中,有21个检出了ESBLs,它们被鉴定为肺炎克雷伯菌和大肠杆菌。 ESBLs和喹诺酮耐药性的分子表征显示等位基因概况CTX-M-15(3),CTX-M-3(5),CTX-M-15 + qnrB1(1),CTX-M-3 + qnrB1(1), CTX-M-15 + aac-(6')-Ib-cr(4)和CTX-M-15 + qnrB1 + aac-(6')-Ib-cr(7)。在耐环丙沙星的大肠杆菌分离物中检测到双突变S83L和D87N(GyrA)和单突变S80I(ParC)。在肺炎克雷伯菌中,在耐环丙沙星的菌株中检测到突变S83I(GyrA)+ S80I(ParC)或单个S80I突变,在对环丙沙星敏感的菌株中未观察到突变。在以下遗传环境中分别发现了blaCTX-M,qnrB1和aac-(6')-Ib-cr:ISEcp1-blaCTX-M-orf477,orf1005-orf1-qnrB1和Tn1721-IS26-aac-(6 ')-Ib-cr-blaOXA-1-catB4。两种物种(大肠杆菌和肺炎克雷伯菌)中的blaCTX-M-15位于大肠杆菌的IncF质粒上,而blaCTX-M-3位于IncL / M质粒中。大肠杆菌分离物隶属于系统群/ MLST:D / ST405(CC405),A / ST10(CC10),A / ST617(CC10)和B1 / ST1431。肺炎克雷伯菌分离株属于系统群KpI,并且属于序列类型ST15,ST17,ST36,ST48,ST54和ST147。研究表明,污水处理厂的流入和流出处具有多重耐药性,包括ESBL产生,质粒介导的喹诺酮类耐药性和拓扑异构酶突变。这些发现凸显了抗生素耐药机制在临床环境和环境中的相似性,以及后者作为耐药基因传播来源的作用。

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