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影响农药与生物防治剂兼容性的因素:基于元数据的综述

Factors influencing pesticide-biocontrol agent compatibility: A metadata-based review.

作者信息

Folorunso Ewumi Azeez, Bohata Andrea, Mraz Jan

机构信息

University of South Bohemia in České Budějovice, Faculty of Fisheries and Protection of Waters, South Bohemian Research Center of Aquaculture and Biodiversity of Hydrocenoses, Institute of Aquaculture and Protection of Waters, Na Sádkách 1780, 370 05 České Budějovice, Czech Republic.

University of South Bohemia in Ceske Budejovice, Faculty of Agriculture and Technology, Department of Plant Protection, Studentska 1668, České Budějovice 370 05, Czech Republic.

出版信息

Pestic Biochem Physiol. 2024 Dec;206:106204. doi: 10.1016/j.pestbp.2024.106204. Epub 2024 Nov 4.

Abstract

The complexities of non-target effects of registered pesticides on biocontrol agents (BCAs) hinder the optimization of integrated pest management programs in agriculture. The wealth of literature on BCA-pesticide compatibility allows for the investigation of factors influencing BCA susceptibility and the generalized impacts of different pesticides. We conducted a meta-analysis using 2088 observations from 122 published articles to assess non-target effects on two phytoseiid species (Neoseiulus californicus and Phytoseiulus persimilis), a parasitoid (Encarsia formosa), and two microbial BCAs (Trichoderma harzianum and Metarhizium anisopliae). We explored the contributions of bioassay factors (exposure duration, temperature, test methods, mode of actions (MOA), and type of pesticide), and simulated effects of compatibility on target pests. MOA groups 21 and 6 were the most harmful to predatory mites and E. formosa, increasing mortality during pesticide-BCA compatibility. Exposure duration, temperature, and test methods were identified as the most influential factors increasing mortality in phytoseiids during pesticide exposure. Insecticides and fungicides were the most represented and harmful groups to BCAs. Although most bioassays were conducted at room temperature, temperatures between 21 and 22 °C were the most harmful to phytoseiids and E. formosa during toxicity assays. Exposure durations of 1-3 days (54-85 %) for predators/parasitoids and 1-5 days (>50 %) for microbial BCAs highlight the lack of data on long-term impacts. In assessing pesticide impacts on target pests, pesticides with compatible concentrations above mean LC50 values were more effective. This study not only identified compatibility trends but also highlighted factors responsible for discrepancies in results and knowledge gaps that need to be addressed.

摘要

登记农药对生物防治剂(BCAs)的非靶标效应的复杂性阻碍了农业害虫综合管理计划的优化。关于BCA与农药兼容性的大量文献使得人们能够研究影响BCA易感性的因素以及不同农药的普遍影响。我们使用从122篇已发表文章中获取的2088个观察数据进行了一项荟萃分析,以评估对两种植绥螨物种(加州新小绥螨和智利小植绥螨)、一种寄生蜂(丽蚜小蜂)以及两种微生物BCAs(哈茨木霉和绿僵菌)的非靶标效应。我们探讨了生物测定因素(暴露持续时间、温度、测试方法、作用方式(MOA)和农药类型)的影响,以及兼容性对靶标害虫的模拟效应。作用方式组21和6对捕食螨和丽蚜小蜂危害最大,在农药与BCA兼容性测试期间会增加死亡率。暴露持续时间、温度和测试方法被确定为在农药暴露期间增加植绥螨死亡率的最有影响的因素。杀虫剂和杀菌剂是对BCAs代表性最强且危害最大的类别。尽管大多数生物测定是在室温下进行的,但在毒性测定期间,21至22°C的温度对植绥螨和丽蚜小蜂危害最大。捕食者/寄生蜂的暴露持续时间为1 - 3天(占54 - 85%),微生物BCAs的暴露持续时间为1 - 5天(>50%),这突出表明缺乏关于长期影响的数据。在评估农药对靶标害虫的影响时,兼容浓度高于平均LC50值的农药更有效。这项研究不仅确定了兼容性趋势,还突出了导致结果差异的因素以及需要解决的知识空白。

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