Toxicity interactions of azole fungicide mixtures on Chlorella pyrenoidosa

Author:

Huang Feng‐Ling1,Liu Min1,Qin Li‐Tang123ORCID,Mo Ling‐Yun234,Liang Yan‐Peng123,Zeng Hong‐Hu123,Deng Zhen‐Gui5

Affiliation:

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

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

3. Collaborative Innovation Center for Water Pollution Control and Water Safety in Karst Area Guilin University of Technology Guilin China

4. Technical Innovation Center of Mine Geological Environmental Restoration Engineering in Southern Karst Area Nanjing China

5. Hengsheng Water Environment Treatment Co., LTD. Guilin China

Abstract

AbstractIt 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 (pEC50) of 10 azole fungicides to Chlorella pyrenoidosa at 96 h ranged from 4.23 (triadimefon) to 7.22 (ketoconazole), while the pEC50 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 (MDRCA), 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.

Funder

Science and Technology Major Project of Guangxi

National Natural Science Foundation of China

Publisher

Wiley

Subject

Health, Toxicology and Mutagenesis,Management, Monitoring, Policy and Law,Toxicology,General Medicine

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