Katagi Toshiyuki, Tanaka Hitoshi
Environmental Health Science Laboratory, Sumitomo Chemical Co., Ltd., 3-1-98 Kasugadenaka, Konohana-ku, Osaka 554-8558, Japan.
Environmental Health Science Laboratory, Sumitomo Chemical Co., Ltd., 4-2-1 Takatsukasa, Takarazuka, Hyogo 665-8555, Japan.
J Pestic Sci. 2016 May 20;41(2):25-37. doi: 10.1584/jpestics.D15-064.
Aquatic insects having a high diversity are good biotic indicators for freshwater quality. Their larvae living in freshwater are sensitive to pesticides, and its impacts has been examined not only through laboratory toxicity studies using water and sediment exposure but also through higher-tier micro-/mesocosm studies and field monitoring. Many sophisticated statistical methods have been applied to assess the impacts of pesticides at levels from species to community, but their body burden has been studied much less, especially in relation to toxicity. We review the uptake, metabolism with relevant detoxifying enzymes, and depuration of pesticides in aquatic insect larvae, which determine their body burden and help to understand the toxicity profiles specific to each chemical class. We also discuss experimental conditions, environmental factors, and species sensitivity in relation to the bioconcentration/-accumulation and toxicity of pesticides.
具有高度多样性的水生昆虫是淡水水质的良好生物指标。它们生活在淡水中的幼虫对农药敏感,不仅通过使用水和沉积物暴露的实验室毒性研究,还通过更高层次的微宇宙/中宇宙研究和现场监测来研究其影响。许多复杂的统计方法已被应用于评估农药从物种到群落层面的影响,但对它们体内农药负荷的研究要少得多,尤其是与毒性相关的研究。我们综述了水生昆虫幼虫对农药的摄取、与相关解毒酶的代谢以及农药的净化,这些决定了它们的体内农药负荷,并有助于了解每种化学类别的特定毒性特征。我们还讨论了与农药生物浓缩/积累和毒性相关的实验条件、环境因素和物种敏感性。