Removal of selected sulfonamides and sulfonamide resistance genes from wastewater in full-scale constructed wetlands

废水 磺胺 污水 整合子 磺胺甲恶唑 污水处理 湿地 人工湿地 环境化学 环境科学 微生物学 生物 环境工程 兽医学 化学 抗生素耐药性 生态学 抗生素 医学 立体化学
作者
Ewa Felis,Adam Sochacki,Sylwia Bajkacz,Aneta Łuczkiewicz,Krzysztof Jóźwiakowski,Joan Garcı́a,Jan Vymazal
出处
期刊:Science of The Total Environment [Elsevier]
卷期号:912: 169195-169195 被引量:7
标识
DOI:10.1016/j.scitotenv.2023.169195
摘要

Sulfonamides are high-consumption antibiotics that reach the aquatic environment. The threat related to their presence in wastewater and the environment is not only associated with their antibacterial properties, but also with risk of the spread of drug resistance in bacteria. Therefore, the aim of this work was to evaluate the occurrence of eight commonly used sulfonamides, sulfonamide resistance genes (sul1-3) and integrase genes intI1-3 in five full-scale constructed wetlands (CWs) differing in design (including hybrid systems) and in the source of wastewater (agricultural drainage, domestic sewage/surface runoff, and animal runs runoff in a zoo). The CWs were located in low-urbanized areas in Poland and in Czechia. No sulfonamides were detected in the CW treating agricultural tile drainage water. In the other four systems, four sulfonamide compounds were detected. Sulfamethoxazole exhibited the highest concentration in those four CWs and its highest was 12,603.23 ± 1000.66 ng/L in a CW treating a mixture of domestic sewage and surface runoff. Despite the high removal efficiencies of sulfamethoxazole in the tested CWs (86 %-99 %), it was still detected in the treated wastewater. The sul1 genes occurred in all samples of raw and treated wastewater and their abundance did not change significantly after the treatment process and it was, predominantly, at the level 105 gene copies numbers/mL. Noteworthy, sul2 genes were only found in the influents, and sul3 were not detected. The sulfonamides can be removed in CWs, but their elimination is not complete. However, hybrid CWs treating sewage were superior in decreasing the relative abundance of genes and the concentration of SMX. CWs may play a role in the dissemination of sulfonamide resistance genes of the sul1 type and other determinants of drug resistance, such as the intI1 gene, in the environment, however, the magnitude of this phenomenon is a matter of further research.
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