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首页> 外文期刊>Environmental toxicology and chemistry >Vulnerability of Aquatic Insect Species to Insecticides, Depending on Their Flight Period and Adult Life Span
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Vulnerability of Aquatic Insect Species to Insecticides, Depending on Their Flight Period and Adult Life Span

机译:脆弱的水生昆虫物种对杀虫剂,取决于他们的飞行期和成人寿命

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摘要

Effects of insecticides on terrestrial adult life stages of otherwise aquatic insects, such as mayflies (Ephemeroptera), stoneflies (Plecoptera), and caddisflies (Trichoptera), are largely unknown. In the present study, a risk model was used to pinpoint the species most likely to experience effects due to spray drift exposure during the adult life stage. Using data from an earlier case study with lambda-cyhalothrin, 6 species with different life cycle traits were used to explore how life cycle characteristics may influence vulnerability. In addition, we performed a generic calculation of the potential effect on the terrestrial life stages of 53 species (including 47 species with unknown sensitivity). Our approach incorporated temporal and spatial distribution of both the insect and the insecticide, creating different exposure conditions among species due to variation in the relative proportion of the populations present at the time of insecticide spraying. The Ephemeroptera species represented were least vulnerable due to their extremely short adult life span and relatively short flight period. Based on their life cycle characteristics, Plecoptera and Trichoptera species were more vulnerable. These vulnerable species segregated into 2 distinct groups; one with a long adult life span to emergent period ratio and another with a high overlap between emergent period and spraying season. We therefore recommend that future ecotoxicological tests be done on species with these life cycle characteristics. Environ Toxicol Chem 2021;00:1-10. (c) 2021 SETAC
机译:杀虫剂对其他水生昆虫的陆地成年生命阶段的影响,例如Mayflies(ephemeroptera),碳氟氢(Plecoptera)和Caddisflies(Trichoptera),主要是未知的。在本研究中,风险模型用于确定成年生命期间喷雾漂移暴露导致的物种最有可能经历效果的物种。使用来自λ-cyhalothrin的早期案例研究的数据,使用具有不同生命周期特征的6种来探索寿命周期特征如何影响脆弱性。此外,我们对53种的陆地寿命阶段进行了通用计算(包括47种具有未知敏感性的物种)。我们的方法掺入了昆虫和杀虫剂的时间和空间分布,由于在杀虫剂喷涂时存在的群体的相对比例的变化,在物种中产生不同的暴露条件。由于其极短的成年生命跨度和相对较短的飞行期,表示代表的闭塞术治疗是最不脆弱的。基于其生命周期特征,Plecoptera和Trichoptera物种更脆弱。这些脆弱的物种被隔离成2个不同的群体;一个具有漫长的成年生命跨度,突然突然比率,另一个在紧急期和喷洒季节之间具有高重叠。因此,我们建议未来的生态毒理学测试在具有这些生命周期特征的物种上进行。环境毒素化学2021; 00:1-10。 (c)2021 Setac

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