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首页> 外文期刊>Ecotoxicology >Is there synergistic interaction between fungicides inhibiting different enzymes in the ergosterol biosynthesis pathway in toxicity tests with the green alga Raphidocelis subcapitata ?
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Is there synergistic interaction between fungicides inhibiting different enzymes in the ergosterol biosynthesis pathway in toxicity tests with the green alga Raphidocelis subcapitata ?

机译:杀菌剂之间是否存在杀菌剂中的毒品中的不同酶与绿藻Raphidocelis子谱系中的毒性试验中的不同酶之间的协同相互作用?

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摘要

Products used for plant protection or as biocides often contain more than one active substance together with numerous formulation additives. The environmental risk assessment for such commercial mixtures applies as default the concept of concentration addition. There is remaining regulatory concern, however, that underestimation of risks can occur if components in the mixture interact synergistically, i.e., elicit effects greater than those predicted by concentration addition. While cases of true synergism appear to be rare, the combination of substances targeting different steps in the same biosynthesis pathway was pointed out as one potential case of synergistic interaction although mechanistic explanations are lacking. The present study aimed to verify this hypothesis using the green alga Raphidocelis subcapitata as the regulatory standard test organism for which such synergism had been indicated earlier. Algal growth inhibition tests were conducted with mixtures of ergosterol biosynthesis inhibitors (tebuconazole, fenpropidin, and fenpropimorph). The fungicides were first tested individually to derive reliable data for a mixture toxicity prediction. The here determined toxicity estimates for two of the fungicides were considerably lower than the endpoints in the regulatory dossiers, which had been used for earlier mixture toxicity predictions. Experimentally observed toxicity estimates for the mixtures deviated <2.6-fold from the predicted values. Hence, the hypothesis of synergistic interaction between fungicides targeting different enzymes in the ergosterol biosynthesis was clearly not confirmed for the green alga R. subcapitata . Overall, the present study demonstrates the importance of reliable and correct input data for mixture toxicity predictions in order to avoid erroneous conclusions on non-additive (synergistic) interactions.
机译:用于植物保护或杀生物剂的产品通常含有多于一种活性物质,以及许多配方添加剂。这种商业混合物的环境风险评估适用于默认添加的概念。然而,如果混合物中的组分相互作用,则可能会出现低估风险的担忧。,即,引发效应大于通过浓度加入预测的那些。虽然真正协同作用的病例似乎是罕见的,但靶向相同生物合成途径中不同步骤的物质的组合被指出,因为缺乏机械解释,这是一种协同互动的一个潜在案例。本研究旨在使用绿藻Raphidocelis亚皮特数据作为调节标准试验生物来验证这种假设,因为提前表明了这种协同作用。用Ergosterol生物合成抑制剂(Tebuconazole,Fenprapidin和Fenpropimorph)的混合物进行藻类生长抑制试验。首先将杀真菌剂单独测试以导出混合物毒性预测的可靠数据。这里确定了两种杀菌剂的毒性估计比调节剂掺入液中的终点相当低,这已被用于早期的混合物毒性预测。实验观察到的毒性估计与预测值偏离<2.6倍的混合物。因此,针对Ergosterol生物合成中靶向不同酶的杀菌剂之间的协同相互作用的假设显然未确认绿藻r.Subcapitata。总体而言,本研究表明了对混合物毒性预测的可靠和正确输入数据的重要性,以避免对非添加剂(协同)相互作用的错误结论。

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