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

兴奋 生物 杀虫剂 生殖力 有机体 长寿 毒理 生态学 人口 节肢动物 动物 人口学 古生物学 社会学 氧化应激 生物化学 遗传学
作者
Evgenios Agathokleous,James D. Blande,Noboru Masui,Edward J. Calabrese,Zhang Jing,Pierre Sicard,R. N. C. Guedes,Giovanni Benelli
出处
期刊:Environmental Research [Elsevier BV]
卷期号:237: 116876-116876 被引量:8
标识
DOI:10.1016/j.envres.2023.116876
摘要

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.

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