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唑类杀菌剂混合物对蛋白核小球藻的毒性相互作用。

Toxicity interactions of azole fungicide mixtures on Chlorella pyrenoidosa.

机构信息

College of Environment Science and Engineering, Guilin University of Technology, Guilin, China.

Guangxi Key Laboratory of Environmental Pollution Control Theory and Technology, Guilin, China.

出版信息

Environ Toxicol. 2023 Jul;38(7):1509-1519. doi: 10.1002/tox.23782. Epub 2023 Mar 22.

Abstract

It is acknowledged that azole fungicides may release into the environment and pose potential toxic risks. The combined toxicity interactions of azole fungicide mixtures, however, are still not fully understood. The combined toxicities and its toxic interactions of 225 binary mixtures and 126 multi-component mixtures on Chlorella pyrenoidosa were performed in this study. The results demonstrated that the negative logarithm 50% effect concentration (pEC ) of 10 azole fungicides to Chlorella pyrenoidosa at 96 h ranged from 4.23 (triadimefon) to 7.22 (ketoconazole), while the pEC values of the 351 mixtures ranged from 3.91 to 7.44. The high toxicities were found for the mixtures containing epoxiconazole. According to the results of the model deviation ratio (MDR) calculated from the concentration addition (MDR ), 243 out of 351 (69.23%) mixtures presented additive effect at the 10% effect, while the 23.08% and 7.69% of mixtures presented synergistic and antagonistic effects, respectively. At the 30% effect, 47.29%, 29.34%, and 23.36% of mixtures presented additive effects, synergism, and antagonism, respectively. At the 50% effect, 44.16%, 34.76%, and 21.08% of mixtures presented additive effects, synergism, and antagonism, respectively. Thus, the toxicity interactions at low concentration (10% effect) were dominated by additive effect (69.23%), whereas 55.84% of mixtures induced synergism and antagonism at high concentration (50% effect). Climbazole and imazalil were the most frequency of components presented in the additive mixtures. Epoxiconazole was the key component induced the synergistic effects, while clotrimazole was the key component in the antagonistic mixtures.

摘要

据认为,唑类杀菌剂可能会释放到环境中,并构成潜在的有毒风险。然而,唑类杀菌剂混合物的联合毒性相互作用仍未完全了解。本研究对 225 种二元混合物和 126 种多组分混合物对栅藻的联合毒性及其毒性相互作用进行了研究。结果表明,在 96 小时内,10 种唑类杀菌剂对栅藻的负对数 50%效应浓度(pEC)范围为 4.23(三唑酮)至 7.22(酮康唑),而 351 种混合物的 pEC 值范围为 3.91 至 7.44。含有环氧氯丙烷的混合物表现出高毒性。根据浓度加和(MDR)计算的模型偏差比(MDR)的结果,在 10%效应时,351 种混合物中有 243 种(69.23%)表现出相加作用,而 23.08%和 7.69%的混合物分别表现出协同和拮抗作用。在 30%效应时,47.29%、29.34%和 23.36%的混合物分别表现出相加、协同和拮抗作用。在 50%效应时,44.16%、34.76%和 21.08%的混合物分别表现出相加、协同和拮抗作用。因此,低浓度(10%效应)时的毒性相互作用主要由相加作用(69.23%)主导,而高浓度(50%效应)时 55.84%的混合物诱导协同和拮抗作用。氯苯嘧啶醇和咪鲜胺是相加混合物中最常见的成分。环氧氯丙烷是诱导协同作用的关键成分,而克霉唑是拮抗混合物中的关键成分。

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