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拟除虫菊酯类农药对蚯蚓的风险缓解策略及机制分析。

Risk mitigation strategy and mechanism analysis of neonicotinoid pesticides on earthworms.

机构信息

College of Resources and Environment, Jilin Agricultural University, Changchun, 130118, China.

出版信息

Environ Pollut. 2024 Apr 15;347:123719. doi: 10.1016/j.envpol.2024.123719. Epub 2024 Mar 6.

Abstract

Neonicotinoid insecticides (NNIs) are a new class of widely used insecticides with certain risks to non-target organisms, like earthworms. The gray correlation method was used to calculate the comprehensive risk effect value of acute toxicity (LC) and bioaccumulation (logK) of NNIs on earthworms. A comprehensive effects three-dimensional quantitative structure-activity relationship (3D-QSAR) model was constructed, using NNIs molecular structures and the comprehensive effect value as the independent and dependent variables, respectively. One of the representatives guadipyr (GUA) was selected as the template molecule for the molecular design and modification. A total of 63 NNIs alternatives were designed with a reduced comprehensive value higher than 10%, and as high as 42%. After screening, 15 NNIs alternatives were screened with decreased acute toxicity to earthworms, bioaccumulation effects and improved functional property. The calculated primary acute risk quotient of earthworms shows that the designed NNIs alternatives have lower earthworm risks (reduction of 70.48-99.99%). Results also found that the electronic, geometric and topological parameters of NNIs are the key descriptors that affect NNIs alternatives' toxicity. The number of hydrophobic interaction amino acid residues in NNIs molecules also contributes to the acute toxicity and the bioaccumulation of NNIs alternatives on earthworms. This study aims to design and screen functionally improved and environmentally friendly NNIs alternatives that have low risk to earthworms and provide theoretical methods and new ideas for the risk control and development of pesticides represented by NNIs.

摘要

新烟碱类杀虫剂(NNIs)是一类新型广泛使用的杀虫剂,对非靶标生物(如蚯蚓)具有一定风险。本研究采用灰色关联度分析法计算 NNIs 对蚯蚓的急性毒性(LC)和生物累积性(logK)的综合风险效应值,以 NNIs 分子结构和综合效应值分别作为自变量和因变量,构建综合效应三维定量构效关系(3D-QSAR)模型。选择代表性新烟碱类杀虫剂噻虫嗪(GUA)作为模板分子进行分子设计和修饰,共设计出综合值降低 10%以上、高达 42%的 63 种 NNIs 替代品。经筛选,筛选出 15 种对蚯蚓急性毒性、生物累积效应降低、功能特性提高的 NNIs 替代品。计算出的蚯蚓初步急性风险商数表明,设计的 NNIs 替代品对蚯蚓的风险较低(降低 70.48%~99.99%)。结果还发现,NNIs 电子、几何和拓扑参数是影响 NNIs 替代品毒性的关键描述符。NNIs 分子中疏水性相互作用氨基酸残基的数量也有助于 NNIs 替代品对蚯蚓的急性毒性和生物累积。本研究旨在设计和筛选功能改进和环境友好的 NNIs 替代品,降低其对蚯蚓的风险,为 NNIs 等代表的农药风险控制和开发提供理论方法和新思路。

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