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对具有农业和环境重要性的节肢动物寄生蜂和寄生虫进行亚致死化学刺激。

Sublethal chemical stimulation of arthropod parasitoids and parasites of agricultural and environmental importance.

作者信息

Agathokleous Evgenios, Blande James D, Masui Noboru, Calabrese Edward J, Zhang Jing, Sicard Pierre, Guedes Raul Narciso C, Benelli Giovanni

机构信息

Collaborative Innovation Center on Forecast and Evaluation of Meteorological Disasters (CIC-FEMD), Nanjing University of Information Science & Technology, Nanjing, 210044, Jiangsu, China; Research Center for Global Changes and Ecosystem Carbon Sequestration & Mitigation, School of Applied Meteorology, Nanjing University of Information Science and Technology, Nanjing, 210044, Jiangsu, China.

Department of Environmental and Biological Sciences, University of Eastern Finland, P. O. Box 1627, 70211, Kuopio, Finland.

出版信息

Environ Res. 2023 Nov 15;237(Pt 1):116876. doi: 10.1016/j.envres.2023.116876. Epub 2023 Aug 11.

Abstract

An increasing number of studies have reported stimulation of various organisms in the presence of environmental contaminants. This has created a need to critically evaluate sublethal stimulation and hormetic responses of arthropod parasitoids and parasites following exposure to pesticides and other contaminants. Examining this phenomenon with a focus on arthropods of agricultural and environmental importance serves as the framework for this literature review. This review shows that several pesticides, with diverse chemical structures and different modes of action, applied individually or in combination at sublethal doses, commonly stimulate an array of arthropod parasitoids and parasites. Exposure at sublethal doses can enhance responses related to physiology (e.g., respiration, total lipid content, and total protein content), behavior (e.g., locomotor activity, antennal drumming frequency, host location, and parasitization), and fitness (longevity, growth, fecundity, population net and gross reproduction). Concordantly, the parasitic potential (e.g., infestation efficacy, parasitization rate, and parasitoid/parasite emergence) can be increased, and as a result host activities inhibited. There is some evidence illustrating hormetic dose-responses, but the relevant literature commonly included a limited number and range of doses, precluding a robust differentiation between sub- and superNOAEL (no-observed-adverse-effect level) stimulation. These results reveal a potentially significant threat to ecological health, through stimulation of harmful parasitic organisms by environmental contaminants, and highlight the need to include sublethal stimulation and hormetic responses in relevant ecological pesticide risk assessments. Curiously, considering a more utilitarian view, hormesis may also assist in optimizing mass rearing of biological control agents for field use, a possibility that also remains neglected.

摘要

越来越多的研究报告了在环境污染物存在的情况下各种生物受到的刺激。这就需要严格评估节肢动物寄生蜂和寄生虫在接触农药和其他污染物后的亚致死刺激和兴奋效应。以具有农业和环境重要性的节肢动物为重点来研究这一现象,是本综述的框架。本综述表明,几种化学结构不同、作用方式各异的农药,以亚致死剂量单独或组合使用时,通常会刺激一系列节肢动物寄生蜂和寄生虫。亚致死剂量的暴露可以增强与生理相关的反应(如呼吸、总脂质含量和总蛋白质含量)、行为(如运动活动、触角敲击频率、寄主定位和寄生)以及适应性(寿命、生长、繁殖力、种群净繁殖和总繁殖)。相应地,寄生潜力(如侵染效力、寄生率和寄生蜂/寄生虫羽化)可以提高,从而抑制寄主活动。有一些证据说明了兴奋效应的剂量反应,但相关文献通常包括的剂量数量和范围有限,无法有力地区分亚无可见有害作用水平(sub-NOAEL)和超无可见有害作用水平(super-NOAEL)刺激。这些结果揭示了环境污染物刺激有害寄生生物对生态健康可能构成的重大威胁,并强调在相关生态农药风险评估中纳入亚致死刺激和兴奋效应的必要性。奇怪的是,从更功利的角度来看,兴奋效应也可能有助于优化用于田间的生物防治剂的大规模饲养,但这一可能性也一直被忽视。

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