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Investigation of the Prevalence of Antibiotic Resistance Genes According to the Wastewater Treatment Scale Using Metagenomic Analysis

机译:使用偏氧化物分析调查抗生素治疗规模抗生素抗性基因的患病率

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摘要

Although extensive efforts have been made to investigate the dynamics of the occurrence and abundance of antibiotic resistance genes (ARGs) in wastewater treatment plants (WWTPs), understanding the acquisition of antibiotic resistance based on the WWTP scale and the potential effects on WWTPs is of relatively less interest. In this study, metagenomic analysis was carried out to investigate whether the WWTP scale could be affected by the prevalence and persistence of ARGs and mobile genetic elements (MGEs). As a result, 152 ARG subtypes were identified in small-scale WWTP samples, while 234 ARG subtypes were identified in large-scale WWTP samples. Among the detectable ARGs, multidrug, MLS (macrolide–lincosamide–streptogramin), sulfonamide, and tetracycline resistance genes had the highest abundance, and large and small WWTPs had similar composition characteristics of ARGs. In MGE analysis, plasmids and integrons were 1.5–2.0-fold more abundant in large-scale WWTPs than in small-scale WWTPs. The profile of bacteria at the phylum level showed that Proteobacteria and Actinobacteria were the most dominant bacteria, representing approximately 70% across large- and small-scale WWTPs. Overall, the results of this study elucidate the different abundances and dissemination of ARGs between large- and small-scale WWTPs, which facilitates the development of next-generation engineered wastewater treatment systems.
机译:虽然已经进行了广泛的努力来调查废水处理植物(WWTPS)中抗生素抗性基因(Args)的发生和丰富的动态,但了解基于WWTP规模的抗生素抗性,并且对WWTP的潜在影响相对相对少兴趣。在这项研究中,进行了偏见分析,以研究WWTP规模是否可能受到Args和移动遗传元素(MGES)的患病率和持续性的影响。结果,在小规模的WWTP样品中鉴定了152个Arg亚型,而在大规模的WWTP样品中鉴定了234个Arg亚型。在可检测的args,多药物,MLS(大氯化物 - 吲哚酰胺 - 链图中),磺酰胺和四环素抗性基因具有最高的丰度,大小的WWTPS具有类似的ARGS的组成特征。在MGE分析中,质粒和整合子在大型WWTPS中比小型WWTPS更加丰富1.5-2.0倍。 Phylum水平的细菌概况显示促菌和肌动菌菌是最显着的细菌,横跨大型和小型WWTPS的约70%。总体而言,本研究的结果阐明了大型和小型WWTP之间的不同丰富和传播,这促进了下一代工程废水处理系统的发展。

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