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大型溞生活史对杀虫剂氯虫苯甲酰胺及其转化产物的响应。

Daphnid life cycle responses to the insecticide chlorantraniliprole and its transformation products.

机构信息

†Laboratory for Environmental Research, University of Nova Gorica, Vipavska 13, P.O. Box 301, 5000 Nova Gorica, Slovenia.

‡Institute for Biodiversity and Ecosystem Dynamics (IBED), University of Amsterdam, P.O. Box 94248, 1090 GE Amsterdam, The Netherlands.

出版信息

Environ Sci Technol. 2015 Mar 17;49(6):3922-9. doi: 10.1021/es506007q. Epub 2015 Mar 2.

Abstract

Chlorantraniliprole (CAP) is a newly developed, widely applied insecticide. In the aquatic environment, several transformation products are formed under natural conditions, one by dehydration and others by photoinduced degradation. Data on aquatic ecotoxicity of CAP can mainly be found in registration and regulatory evaluation reports. Moreover, the toxicity of its transformation products and especially effects upon chronic exposure remain completely unknown. Hence, our aim was to investigate the acute and chronic toxicity of CAP and its transformation products to the daphnid Daphnia magna. The results showed that CAP is extremely toxic to D. magna, with an acute and chronic LC50 of 9.4 and 3.7 μg/L, respectively. No effects on daphnid reproduction were observed, but the impact on daphnid survival also affected population growth rate, with an EC50 of 3.5 μg/L. In contrast, no negative effects of the two main degradation products were observed. The present study demonstrated a high sensitivity of nontarget microcrustaceans to CAP. However, the actual risk of CAP in water diminishes with its spontaneous or light-induced degradation into two transformation products, showing no toxicity to the daphnids in the present study.

摘要

氯虫苯甲酰胺(CAP)是一种新开发的、广泛应用的杀虫剂。在水环境中,在自然条件下会形成几种转化产物,一种是脱水形成的,另一种是光诱导降解形成的。关于 CAP 的水生生态毒性的数据主要可以在登记和监管评估报告中找到。此外,其转化产物的毒性,特别是慢性暴露的影响,仍然完全未知。因此,我们的目的是研究 CAP 及其转化产物对大型溞(Daphnia magna)的急性和慢性毒性。结果表明,CAP 对大型溞具有极高的毒性,其急性和慢性 LC50 分别为 9.4 和 3.7μg/L。CAP 对大型溞的繁殖没有影响,但对其存活的影响也会影响种群增长率,其 EC50 为 3.5μg/L。相比之下,两种主要降解产物没有观察到负面作用。本研究表明非靶标微型甲壳类动物对 CAP 具有高度敏感性。然而,随着 CAP 自发或光诱导降解为两种转化产物,其在水中的实际风险会降低,在本研究中这两种转化产物对大型溞没有毒性。

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