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Annual changes in the occurrence of antibiotic-resistant coliform bacteria and enterococci in municipal wastewater

机译:城市废水中抗生素抗性大肠菌菌和肠球菌发生的年度变化

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Wastewater contains subinhibitory concentrations of different micropollutants such as antibiotics that create selective pressure on bacteria. This phenomenon is also caused by insufficient wastewater treatment technology leading to the development and spread of antibiotic-resistant bacteria and resistance genes into the environment. Therefore, this work focused on monitoring of antibiotic-resistant coliform bacteria and enterococci in influent and effluent wastewaters taken from the second biggest wastewater treatment plant (Petralka) in the capital of Slovakia during 1year. Antibiotic-resistant strains were isolated, identified, and characterized in terms of susceptibility and biofilm production. All of 27 antibiotic-resistant isolates were identified mainly as Morganella morganii, Citrobacter spp., and E. coli. Multidrug-resistance was detected in 58% of isolated strains. All tested isolates could form biofilm; two strains were very strong producers, and 74% formed biofilm by strong intensity. The flow rate of the influent wastewater had a more significant impact on the number of studied bacteria than the temperature.
机译:废水含有不同微露剂的产水位浓度,例如在细菌产生选择性压力的抗生素。这种现象也是由于废水处理技术不足导致抗生素抗性细菌和抗性进入环境中的开发和传播。因此,这项工作的重点是在1年在斯洛伐克首都的第二大废水处理厂(Petralka)中的流水和污水废水中监测抗生素抗性大肠杆菌细菌和肠球菌。在易感性和生物膜生产方面分离,鉴定和表征抗生素抗性菌株。所有27个抗生素抗性分离株主要鉴定为Morganella Morganii,酸杆菌SPP。和大肠杆菌。在58%的分离菌株中检测到多药抗性。所有测试的分离物都可以形成生物膜;两种菌株是非常强大的生产者,通过强烈强度形成生物膜74%。流水废水的流速对研究的细菌数量比温度更大的影响更大。

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