Abstract

The dominance of safener can unite with herbicides acquiring the efficient protection of crop and qualifying control of weeds in agricultural fields. In order to solve the crop toxicity problem and exploit the novel potential safener for fenoxaprop-P-ethyl herbicide, a series of trichloromethyl dichlorobenzene triazole derivatives were designed and synthesized by the principle of active subunit combination. A total of 21 novel substituted trichloromethyl dichlorobenzene triazole compounds were synthesized by substituted aminophenol and amino alcohol derivatives as the starting materials, using cyclization and acylation. All the compounds were unambiguously characterized by IR, 1H-NMR, 13C-NMR, and HRMS. A greenhouse bioassay indicated that most of the title compounds could protect wheat from injury caused by fenoxaprop-P-ethyl at varying degrees, in which compound 5o exhibited excellent safener activity at a concentration of 10 μmol/L and was superior to the commercialized compound fenchlorazole. A structure–activity relationship for the novel compounds was determined, which demonstrated that those compounds containing benzoxazine groups showed better activity than that of oxazole-substituted compounds. Introducing a benzoxazine fragment and electron-donating group to specific positions could improve or maintain the safener activity for wheat against attack by the herbicide fenoxaprop-P-ethyl. A molecular docking model suggested that a potential mechanism between 5o and fenoxaprop-P-ethyl is associated with the detoxication of the herbicide. Results from the present work revealed that compound 5o exhibited good crop safener activities toward wheat and could be a promising candidate structure for further research on wheat protection.

Highlights

  • Herbicides are a major tool for controlling weeds to protect crop yields

  • Hoechst designed by pharmacophore of Company, acid is designed by pharmacophore combination phenoxycarboxylic acid and phenoxycarboxylic and diphenyl ether herbicides

  • We report the synthesis of a series of report the as synthesis of skeleton a seriesstructure of novel(Scheme substituted trichloromethyl dichlorobenzene triazole novel substituted trichloromethyl dichlorobenzene triazole compounds via cyclization and acylation compounds via cyclization and acylation without any expensive reagent or catalyst

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Summary

Introduction

Herbicides are a major tool for controlling weeds to protect crop yields. From the mid-1980s, more than 140 new herbicide active ingredients were commercialized and played an indispensable role in the rapid development of agriculture and rapid economic growth [1]. The presence of the safener enhances the activity activity of antiretroviral, glutathione-S-transferase (GST) and promotes the metabolism of herbicides of antiretroviral, andcan promotes the crops metabolism herbicides [15]. A chloroacetamide herbicide safener,(e.g., can protect crops against herbicides of. It protects maize from chloroacetanilide herbicides alachlor) by increasing the expression. Isoxadifen-ethyl is developed as a successful herbicide cases have been reported. Isoxadifen-ethyl developed as a herbicide safener with strong safener with strong protection of rice by combiningiswith the active structure of 5-phenyl-4,5protection of rice by combining withthe thesafener active structure. Hoechst designed by pharmacophore of Company, acid is designed by pharmacophore combination phenoxycarboxylic acid and phenoxycarboxylic and diphenyl ether herbicides [22].

Chemicals
Procedure the Synthesis of Titlefor
X-ray Diffraction
Biological Assay
Computational Methods
Synthesis
Molecular Docking Studies
Molecular
Physical
Conclusions
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