急性和慢性接触磺胺甲噁唑对活性污泥群落动力学和微生物结构的影响

I. Pala-Ozkok, Tugce Katipoglu-Yazan, T. Olmez-Hanci, Daniel Jonas, E. Ubay‐Cokgor, D. Orhon
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引用次数: 0

摘要

本研究旨在揭示急性和慢性接触一种常用抗生素(即磺胺甲噁唑)对活性污泥生物质的微生物和动力学影响。氧利用率曲线的呼吸测定分析和模型评估是这项研究的主要内容。研究结果表明,持续接触磺胺甲噁唑会抑制底物的储存,并使内源衰变速率增加两倍,这一点也得到了抗性基因分析的支持。此外,还观察到生长和水解动力学受到轻微抑制。此外,磺胺甲噁唑与可用的有机碳有结合作用,导致耗氧量略有减少。DNA 测序和抗生素耐药性基因分析表明,持续接触磺胺甲噁唑会在物种水平上改变群落结构。耐药细菌包括节杆菌、嗜甲壳素科和孢子内囊菌科的成员,它们在细菌群落中占主导地位。还调查了间歇接触的影响,结果表明,间歇接触 20 天后,影响的严重程度有所下降。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of acute and chronic exposure to sulfamethoxazole on the kinetics and microbial structure of an activated sludge community
The aim of this study was to reveal the microbial and kinetic impacts of acute and chronic exposure to one of the frequently administered antibiotics, i.e., sulfamethoxazole, on an activated sludge biomass. Respirometric analysis and model evaluation of the oxygen utilization rate profiles were the backbone of this study. The results showed that continuous exposure to sulfamethoxazole resulted in the inhibition of substrate storage and an increase in the endogenous decay rates by twofold, which was supported by analysis of the resistance genes. A mild inhibition on the growth and hydrolysis kinetics was also observed. Moreover, sulfamethoxazole had a binding impact with available organic carbon, resulting in a slightly less oxygen consumption. DNA sequencing and antibiotic resistance gene analyses showed that continuous exposure to sulfamethoxazole caused a change in the community structure at the species level. Resistant bacteria including Arthrobacter sp. and members of the Chitinophagaceae and Intrasporangiaceae families were found to have dominated the bacterial community. The impact of intermittent exposure was also investigated, and the results indicated a drop in the severity of the impact after 20 days of intermittence.
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