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Predicting the aquatic toxicity of commercial pesticide mixtures

机译:预测商业农药混合物的水生毒性

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Background Previous studies reported on a large (> 80%) compliance between the observed toxicity of pesticide mixtures and their toxicity as predicted by the concept of concentration addition (CA). The present study extents these findings to commercially sold and frequently applied pesticide mixtures by investigating whether the aquatic toxicity of 66 herbicidal and 53 fungicidal combination products, i.e., authorized plant protection products that contain two or more active substances, can reliably be predicted by CA. Results In more than 50% of cases, the predicted and observed mixture toxicity deviated by less than factor 2. An indication for a synergistic interaction was only detected with regard to algal growth inhibition for mixtures of fungicides that inhibit different enzymes of ergosterol biosynthesis. The greatest degree of compliance between prediction and observation was found for the acute toxicity of fungicidal products towards Daphnia and fish, while the greatest degree of underestimation of product toxicity occurred for the acute toxicity of herbicidal products towards Daphnia and fish. Using the lowest available toxicity measures within taxonomic groups as the most conservative approach resulted in a bias towards overestimation of product toxicity, but did not eliminate cases of considerable underestimation of product toxicity. Conclusions The results suggest that the CA concept can be applied to predict the aquatic toxicity of commercial pesticide mixtures using the heterogeneous data typically available in a risk assessment context for a number of clearly identified combinations of test species and pesticide types with reasonably small uncertainty.
机译:背景技术先前的研究报道了在农药混合物的观察到的毒性与浓度增加(CA)概念所预测的毒性之间有很大的一致性(> 80%)。本研究通过调查CA是否可以可靠地预测66种除草剂和53种杀菌组合产品(即含有两种或多种活性物质的授权植物保护产品)的水生毒性,从而将这些发现扩展到商业销售和经常使用的农药混合物中。结果在超过50%的情况下,预测和观察到的混合物毒性相差不到2倍。仅在抑制麦角固醇生物合成不同酶的杀菌剂混合物的藻类生长抑制方面,才发现了协同相互作用的迹象。在预测和观察之间最大程度地发现了杀菌产品对水蚤和鱼类的急性毒性,而对产品毒性的最大程度的低估发生在了除草产品对水蚤和鱼类的急性毒性中。使用分类学组中现有的最低毒性措施作为最保守的方法会导致对产品毒性的高估,但并不能消除产品毒性被低估的情况。结论结果表明,CA概念可用于风险分析环境中,通常可使用许多数据中明确确定的测试物种和农药类型组合的异质数据来预测商业农药混合物的水生毒性,不确定性较小。

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