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Treated wastewater: A hotspot for multidrug- and colistin-resistant Klebsiella pneumoniae

粘菌素 肺炎克雷伯菌 生物 微生物学 抗生素耐药性 流出物 多重耐药 抗菌剂 废水 抗生素 基因 遗传学 环境科学 环境工程 大肠杆菌
作者
Andrea Di Cesare,Alessandra Cornacchia,Tomasa Sbaffi,Raffaella Sabatino,Gianluca Corno,Cesare Cammà,Paolo Calistri,Francesco Pomilio
出处
期刊:Environmental Pollution [Elsevier]
卷期号:359: 124598-124598
标识
DOI:10.1016/j.envpol.2024.124598
摘要

Wastewater treatment plants are hotspots for the release of antimicrobial resistant pathogenic bacteria into aquatic ecosystems, significantly contributing to the cycle of antimicrobial resistance. Special attention should be paid to antimicrobial resistant ESKAPE bacteria, which have been identified as high-priority targets for control measures. Among them, Klebsiella pneumoniae is particularly noteworthy. In this study, we collected wastewater samples from the inlet, sedimentation tank, and effluent water of a wastewater treatment plant in June, July, October, and November of 2018. We detected and characterized 42 K. pneumoniae strains using whole genome sequencing (15 from the inlet, 8 from the sedimentation tank, and 19 from the effluent). Additionally, the strains were tested for their antimicrobial resistance phenotype. Using whole genome sequencing no distinct patterns were observed in terms of their genetic profiles. All strains were resistant to tetracycline, meanwhile 60%, 47%, and 37.5% of strains isolated from the inlet, sedimentation tank, and effluent, respectively, were multidrug resistant. Some of the multidrug resistant isolates were also resistant to colistin, and nearly all tested positive for the eptB and arnT genes, which are associated with polymyxin resistance. Various antimicrobial resistance genes were linked to mobile genetic elements, and they did not correlate with detected virulence groups or defense systems. Overall, our results, although not quantitative, highlight that multidrug resistant K. pneumoniae strains, including those resistant to colistin and genetically unrelated, being discharged into aquatic ecosystems from wastewater treatment plants. This suggests the necessity of monitoring aimed at genetically characterizing these pathogenic bacteria.
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