UFZ, Helmholtz-Centre for Environmental Research, Department of System-Ecotoxicology, Permoserstraße 15, 04318 Leipzig, Germany; RWTH Aachen University, Institute for Environmental Research (Biology V), Aachen, Germany.
UFZ, Helmholtz-Centre for Environmental Research, Department of System-Ecotoxicology, Permoserstraße 15, 04318 Leipzig, Germany; RWTH Aachen University, Institute for Environmental Research (Biology V), Aachen, Germany.
Sci Total Environ. 2018 Jan 1;610-611:563-569. doi: 10.1016/j.scitotenv.2017.08.073. Epub 2017 Aug 17.
Frequent pesticide-related impacts on ecosystems at concentrations considered environmentally safe indicate that the current risk assessment framework for registration of pesticides is not protective enough. Causes may include difficulties in assessing the effects of sequential pesticide pulses and their interaction with environmental stressors. By contrast to such realistic scenarios, risk assessment for registration of pesticides is typically based on tests of a single exposure period under benign laboratory conditions. Here, we investigated the toxicological sensitivity of Gammarus pulex, an ecologically relevant crustacean, from uncontaminated control streams and pesticide-contaminated agricultural streams by exposing them to pesticide contamination in the laboratory. Individuals from contaminated streams were 2.7-fold more sensitive to pesticide exposure than individuals from the reference streams. We revealed that this increase in sensitivity was the result of a synergistic interaction of sequential pesticide exposure and temperature stress. Such multiple stressor scenarios are typical for agricultural streams. We conclude that the interactive effects of sequential toxicant exposure and additional environmental stressors need to be considered in a realistic risk assessment framework.
频繁发生的与农药相关的对生态系统的影响,即使在被认为环境安全的浓度下,也表明目前用于农药注册的风险评估框架还不够完善。原因可能包括难以评估连续农药脉冲的影响及其与环境胁迫因素的相互作用。与这种现实情况形成对比的是,农药注册的风险评估通常基于在良性实验室条件下进行单一暴露期的测试。在这里,我们通过在实验室中暴露于农药污染,研究了来自未受污染的对照溪流和受农药污染的农业溪流中的生态相关甲壳类动物——光滑爪蟾的毒理学敏感性。与来自对照溪流的个体相比,受污染溪流中的个体对农药暴露的敏感性高 2.7 倍。我们揭示了这种敏感性的增加是连续农药暴露和温度胁迫协同作用的结果。这种多胁迫因素的情况在农业溪流中很常见。我们得出结论,在现实的风险评估框架中需要考虑连续有毒物质暴露和其他环境胁迫因素的交互作用。