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一种使用简化的GUTS模型分析的新型鳞翅目生物测定法。

A Novel Lepidoptera bioassay analysed using a reduced GUTS model.

作者信息

Badder Claire, Bart Sylvain, Robinson Alex, Hesketh Helen, Kille Peter, Spurgeon David J

机构信息

UK Centre for Ecology and Hydrology, MacLean Building, Benson Lane, Oxon, Wallingford OX10 8BB, UK.

UK Centre for Ecology and Hydrology, MacLean Building, Benson Lane, Oxon, Wallingford OX10 8BB, UK; University of York, Heslington YO10, 5DD, United Kingdom; MO-ECO2 (Modelling and data analyses for ecology and ecotoxicology), Paris, France.

出版信息

Ecotoxicol Environ Saf. 2023 Feb;251:114504. doi: 10.1016/j.ecoenv.2023.114504. Epub 2023 Jan 10.

DOI:10.1016/j.ecoenv.2023.114504
PMID:36634482
Abstract

Lepidopteran species can be both pests and also beneficial pollinators for agricultural crops. However, despite these important roles, the effects of pesticides on this diverse taxa are relatively understudied. To facilitate the assessment of pesticides and other chemical hazards on this taxa, we present a novel bioassay capable of testing chemical sensitivity to lepidopteran larvae through dietary exposure. We used Mamestra brassicae caterpillars as a model lepidopteran and tested their sensitivity for the organophosphate insecticide chlorpyrifos. We exposed larvae to an artificial diet spiked with chlorpyrifos and monitored survival over time, as well as weight change over a 96-hour exposure period. To test the repeatability and reliability of the developed bioassay, the experiment was repeated three times. The survival in time data collected enabled analysis with the General Unified Threshold of Survival (GUTS) model, recently recognized by EFSA as a ready-to-use tool for regulatory purposes. The GUTS modelling was used to derive a set of relevant toxicokinetic and toxicodynamic parameters relating to the larval response to exposure over time. We found that across the three repeats studies there was no more than a threefold difference in LC₅₀ values (13.1, 18.7 and 8.1 mg/Kg) at 48 h and fourfold difference at 96 h, highlighting the repeatability of the bioassay. We also highlighted the potential of the method to observe sub-lethal effects such as changes in weight. Finally, we discuss the applications of this new bioassay method to chemical risk assessments and its potential for use in other scenarios, such as mixture or pulsed exposure testing.

摘要

鳞翅目昆虫既可能是农作物害虫,也可能是有益的传粉者。然而,尽管它们具有这些重要作用,但农药对这一多样类群的影响相对研究较少。为便于评估农药及其他化学物质对该类群的危害,我们提出了一种新型生物测定法,该方法能够通过饮食暴露来测试鳞翅目幼虫对化学物质的敏感性。我们以甘蓝夜蛾幼虫作为鳞翅目昆虫的模型,测试了它们对有机磷杀虫剂毒死蜱的敏感性。我们将幼虫暴露于添加了毒死蜱的人工饲料中,监测其随时间的存活率以及在96小时暴露期内的体重变化。为测试所开发生物测定法的可重复性和可靠性,该实验重复进行了三次。收集到的随时间变化的存活数据能够使用生存通用统一阈值(GUTS)模型进行分析,该模型最近被欧洲食品安全局认可为一种可立即用于监管目的的工具。GUTS模型用于推导一组与幼虫随时间暴露反应相关的毒代动力学和毒效动力学参数。我们发现,在三项重复研究中,48小时时LC₅₀值(13.1、18.7和8.1毫克/千克)的差异不超过三倍,96小时时差异不超过四倍,这突出了生物测定法的可重复性。我们还强调了该方法观察亚致死效应(如体重变化)的潜力。最后,我们讨论了这种新生物测定法在化学风险评估中的应用及其在其他场景(如混合物或脉冲暴露测试)中使用的潜力。

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