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Operating conditions influence microbial community structures, elimination of the antibiotic resistance genes and metabolites during anaerobic digestion of cow manure in the presence of oxytetracycline

机译:操作条件影响在土霉素存在下厌氧消化牛粪过程中微生物群落结构,抗生素抗性基因和代谢产物的消除

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The way that antibiotic residues in manure follow is one of the greatest concerns due to its potential negative impacts on microbial communities, the release of metabolites and antibiotic resistant genes (ARGs) into the nature and the loss of energy recovery in anaerobic digestion (AD) systems. This study evaluated the link between different operating conditions, the biodegradation of oxytetracycline (OTC) and the formation of its metabolites and ARGs in anaerobic digesters treating cow manure. Microbial communities and ARGs were determined through the use of quantitative real-time PCR. The biodegradation of OTC and occurrence of metabolites were determined using UV-HPLC and LC/MS/MS respectively. The maximum quantity of resistance genes was also examined at the beginning of AD tests and concentration was in the order of: tetM > tetO. The numbers of ARGs were always higher at high volatile solids (VS) content and high mixing rate. The results of the investigation revealed that relationship between mixing rate and VS content plays a crucial role for elimination of ARGs, OTC and metabolites. This can be attributed to high abundance of microorganisms due to high VS content and their increased contact with elevated mixing rate. An increased interaction between microorganisms triggers the promotion of ARGs.
机译:由于其对微生物群落的潜在负面影响,代谢产物和抗生素抗性基因(ARGs)向自然界的释放以及厌氧消化(AD)中能量回收的损失,粪便中抗生素残留的跟随方式是最令人担忧的问题之一。系统。这项研究评估了在处理牛粪的厌氧消化池中,不同操作条件,土霉素(OTC)的生物降解及其代谢产物和ARG的形成之间的联系。微生物群落和ARGs通过使用实时定量PCR来确定。分别使用UV-HPLC和LC / MS / MS确定OTC的生物降解和代谢产物的存在。在AD测试开始时还检查了最大数量的抗性基因,其浓度顺序为:tetM> tetO。在高挥发性固体(VS)含量和高混合速率下,ARG的数量始终较高。调查结果表明,混合速率和VS含量之间的关系对于消除ARGs,OTC和代谢物起着至关重要的作用。这可以归因于高VS含量以及高混合率下增加的接触,从而导致了微生物的丰富。微生物之间相互作用的增强触发了ARG的促进。

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