首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Effect of the coexposure of sulfadiazine, ciprofloxacin and zinc on the fate of antibiotic resistance genes, bacterial communities and functions in three-dimensional biofilm-electrode reactors
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Effect of the coexposure of sulfadiazine, ciprofloxacin and zinc on the fate of antibiotic resistance genes, bacterial communities and functions in three-dimensional biofilm-electrode reactors

机译:磺胺嘧啶,环丙沙星和锌浓度对抗生素抗性基因,细菌群落和三维生物膜 - 电极反应器中的函数的影响

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摘要

Three-dimensional biofilm electrode reactors (3D-BERs) with high treatment efficiency were constructed to treat wastewater containing sulfadiazine (SDZ) and ciprofloxacin (CIP) coexposure with Zinc (Zn). The results showed that coexposure to target antibiotics and Zn increased the absolute and relative abundances of target antibiotic resistance genes (ARGs). Additionally, the target ARG abundances were higher on cathode of 3D-BER compared with ordinary anaerobic reactor while the abundances of total ARGs were decreased in the effluent. Meanwhile, redundancy analysis results revealed that the composition of bacteria carrying ARGs was greatly influenced in the cathode by the accumulation of Zn and antibiotic, which dominated the changes of ARG abundances. Additionally, ARGs with their host bacteria revealed by network analysis were partially deposited on electrode substrates when being removed from wastewater. Thus, 3D-BER exhibits capability of simultaneously eliminating antibiotic and Zn, and greatly reduces the risks of ARGs spread.
机译:构建具有高处理效率的三维生物膜电极反应器(3D-BERS)以处理含有磺胺嗪(SDZ)和环丙沙星(CIP)椰子用锌(Zn)的废水。结果表明,群靶向抗生素和Zn增加了靶抗生素抗性基因(Args)的绝对和相对丰度。另外,与普通的厌氧反应器相比,3D-BER阴极上的靶蛋白的丰度较高,而流出物中总args的丰度降低。同时,冗余分析结果表明,通过Zn和抗生素的积累,携带饲养args的组成极大地影响了阴极,这主要占据了蛋白质的变化。另外,当从废水中除去时,通过网络分析显示的宿主细菌逐渐沉积在电极基材上。因此,3D-BER表现出同时消除抗生素和Zn的能力,大大降低了args传播的风险。

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