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Antibiotic-resistant genes and antibiotic-resistant bacteria in the effluent of urban residential areas, hospitals, and a municipal wastewater treatment plant system

机译:城市居民区,医院和市政废水处理厂系统废水中的抗生素抗性基因和抗生素抗性细菌

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摘要

In this study, we determined the abundance of 8 antibiotics (3 tetracyclines, 4 sulfonamides, and 1 trimethoprim), 12 antibiotic-resistant genes (10 tet, 2 sul), 4 antibiotic-resistant bacteria (tetracycline, sulfamethoxazole, and combined resistance), and class 1 integron integrase gene (intI1) in the effluent of residential areas, hospitals, and municipal wastewater treatment plant (WWTP) systems. The concentrations of total/individual targets (antibiotics, genes, and bacteria) varied remarkably among different samples, but the hospital samples generally had a lower abundance than the residential area samples. The WWTP demonstrated removal efficiencies of 50.8 % tetracyclines, 66.8 % sulfonamides, 0.5 logs to 2.5 logs tet genes, and less than 1 log of sul and intI1 genes, as well as 0.5 log to 1 log removal for target bacteria. Except for the total tetracycline concentration and the proportion of tetracycline-resistant bacteria (R-2 = 0.330, P<0.05), there was no significant correlation between antibiotics and the corresponding resistant bacteria (P>0.05). In contrast, various relationships were identified between antibiotics and antibiotic resistance genes (P<0.05). Tet (A) and tet (B) displayed noticeable relationships with both tetracycline and combined antibiotic-resistant bacteria (P<0.01).
机译:在这项研究中,我们确定了8种抗生素(3种四环素,4种磺酰胺和1种甲氧苄氨嘧啶),12种抗药性基因(10 tet,2 sul),4种抗药性细菌(四环素,磺胺甲恶唑和联合耐药)的丰度,以及居民区,医院和市政废水处理厂(WWTP)系统的废水中的1类整型整合酶基因(intI1)。不同样本中总/个体靶标(抗生素,基因和细菌)的浓度差异很大,但医院样本的丰度通常低于居住区样本。污水处理厂的去除效率为50.8%的四环素,66.8%的磺酰胺类,0.5 log到2.5 log tet基因,小于1 log的sul和intI1基因以及对目标细菌的0.5 log到1 log去除。除了四环素的总浓度和四环素耐药菌的比例(R-2 = 0.330,P <0.05)外,抗生素与相应的耐药菌之间无显着相关性(P> 0.05)。相反,在抗生素和抗生素抗性基因之间发现了各种关系(P <0.05)。 Tet(A)和tet(B)与四环素和联合耐药菌均显示出显着的关系(P <0.01)。

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