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再生水中抗生素的出现及其在黑麦草中的吸收动态、植物毒性和代谢命运。

Occurrence of antibiotics in reclaimed water, and their uptake dynamics, phytotoxicity, and metabolic fate in Lolium perenne L.

机构信息

College of Marine Life Sciences, Ocean University of China, Yushan Campus, Yushan Road 5, Qingdao, Shandong, China.

Department of Haide, Ocean University of China, Laoshan Campus, Songling Road 238, Qingdao, Shandong, China.

出版信息

Sci Total Environ. 2023 Dec 15;904:166975. doi: 10.1016/j.scitotenv.2023.166975. Epub 2023 Sep 11.

Abstract

Reclaimed water (RW) has been extensively used for irrigation in agriculture, yet the occurrence of antibiotics in real RW, and their toxicity, uptake dynamics and metabolic fate still needs comprehensive exploration. In this study, we investigated the residual concentrations of nineteen antibiotics in the RW from four wastewater treatment plants, and determined their toxicity on plant at environment-relevant concentration. Total found concentrations of these antibiotics ranged from 623.66 ng L to 1536.96 ng L, which decreased 10.3 and 19.4 % of roots' length and weight. Uptake dynamics analysis of the most hazardous antibiotic, norfloxacin (NFX) showed increasing amounts in the roots and leaves up to 3087.71 μg g. Ryegrass also can remove >80 % of 100 μg L NFX being achieved by biodegradation through ring cleavage, decarboxylation, defluorination, hydrogenation, methylation and oxidation. Toxicity assessment of the identified byproducts showed their more toxic effect on fish, daphnia and algae. This study extended our understanding of the fate of antibiotics in plants during irrigation with reclaimed water, and emphasized its safety and pollutants' biomagnification concerns.

摘要

再生水(RW)已广泛用于农业灌溉,但 RW 中抗生素的实际存在及其毒性、吸收动力学和代谢命运仍需要全面探索。在本研究中,我们调查了来自四个污水处理厂的 RW 中十九种抗生素的残留浓度,并确定了它们在环境相关浓度下对植物的毒性。这些抗生素的总检出浓度范围为 623.66ng/L 至 1536.96ng/L,分别降低了 10.3%和 19.4%的根长和根重。对最危险的抗生素诺氟沙星(NFX)的吸收动力学分析表明,NFX 的含量在根和叶中增加到 3087.71μg/g。黑麦草还可以通过生物降解去除 100μg/L NFX 中的 >80%,通过环裂解、脱羧、脱氟、加氢、甲基化和氧化。对鉴定出的代谢产物进行毒性评估表明,它们对鱼类、水蚤和藻类的毒性更大。本研究扩展了我们对再生水灌溉过程中抗生素在植物体内命运的认识,并强调了其安全性和污染物生物放大的关注。

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