Amide herbicides: Analysis of their environmental fate, combined plant–microorganism soil remediation scheme, and risk prevention and control strategies for sensitive populations

乙草胺 化学 环境修复 甲草胺 环境化学 菠菜 生物降解 毒理 食品科学 环境科学 杀虫剂 生物化学 阿特拉津 生物 农学 生态学 有机化学 污染
作者
Fuxing Wu,Zini Wang,Xinao Li,Xiaoli Wang
出处
期刊:Journal of Hazardous Materials [Elsevier]
卷期号:460: 132452-132452 被引量:9
标识
DOI:10.1016/j.jhazmat.2023.132452
摘要

In this study, we predicted the environmental fate of amide herbicides (AHs) using the EQC (EQuilibrium Criterion) model. We found that the soil phase is the main reservoir of AHs in the environment. Second, a toxicokinetic prediction indicated that butachlor have a low human health risk, while the alachlor, acetochlor, metolachlor, napropamide, and propanil are all uncertain. To address the environmental and human-health-related threats posed by AHs, 27 new proteins/enzymes that easily absorb, degrade, and mineralize AHs were designed. Compared with the target protein/enzyme, the comprehensive evaluation value of the new proteins/enzymes increased significantly: the absorption protein increased by 20.29-113.49%; the degradation enzyme increased by 151.26-425.22%; and the mineralization enzyme increased by 23.70-52.16%. Further experiments revealed that the remediating effect of 13 new proteins/enzymes could be significantly enhanced to facilitate their applicability under real environmental conditions. The hydrophobic interactions, van der Waals forces, and polar solvation are the key factors influencing plant-microorganism remediation. Finally, the simulations revealed that appropriate consumption of kiwifruit or simultaneous consumption of ginseng, carrot, and spinach, and avoiding the simultaneous consumption of maize and carrot/spinach are the most effective means reduce the risk of exhibiting AH-linked toxicity.
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