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Updated: May 6, 2026

Toxicological Assays for Testing Effects of an Epigenetic Drug on Development, Fecundity and Survivorship of Malaria Mosquitoes
Published on: January 16, 2015
Systematic evaluation of three-generation diamide insecticides with glutathione reductase 2: molecular mechanisms and
Yifan Chen1, Fan Yang1, Xiaomin Hou1
1Shandong Provincial Key Laboratory of Microbial Resource Exploration and Innovative Utilization, College of Life Sciences, Qingdao Agricultural University, Qingdao 266109, China.
Abstract:
As representative compounds spanning three generations of diamide insecticides, flubendiamide, chlorantraniliprole, and tetraniliprole have been extensively employed in agricultural practices. However, their widespread application induces oxidative stress in plants and underlying toxic mechanisms remain poorly understood. Given the important roles in oxidative stress, glutathione reductase 2 from Arabidopsis thaliana (AtGR2) was applied as a biomarker to evaluate the toxicological effects of diamide insecticides. Firstly, the root elongation in Arabidopsis seedlings was significantly inhibited and the AtGR2 gene expression level was up-regulated under exposure of the diamide insecticides. Then the glutathione reductase activity of AtGR2 was decreased with the increase concentration of these three insecticides, especially for flubendiamide with similar detrimental effects at much lower concentrations. Moreover, the binding affinity between flubendiamide and AtGR2 was also stronger than that of chlorantraniliprole and tetraniliprole, which was conformed with molecular docking results. Additionally, much more evident effects on the structure of AtGR2 under exposure of flubendiamide was detected through multispectral techniques compared to the other two insecticides. Hence this study systematically explored the binding mechanism of these three-generations of diamide insecticides with AtGR2 at the molecular level, and further provided critical assessments of their phytotoxic effects on plant development and agricultural systems.

