Picolinic acid and picolinate compounds are a remarkable class of synthetic auxin herbicides. In recent years, two new picolinate compounds, halauxifen-methyl (Arylex active) and florpyrauxifen-benzyl (Rinskor active), have been launched as novel herbicides. Using their structural skeleton as a template, 33 4-amino-3,5-dicholor-6-(5-aryl-substituted-1-pytazolyl)-2-picolinic acid compounds were designed and synthesized for the discovery of compounds with potent herbicidal activity. The compounds were tested for inhibitory activity against the growth of roots, and the results demonstrated that the IC value of compound was 45 times lower than that of the halauxifen-methyl commercial herbicide. Molecular docking analyses revealed that compound docked with the receptor auxin-signaling F-box protein 5 (AFB5) more intensively than picloram. An adaptive three-dimensional quantitative structure-activity relationship model was constructed from these IC values to guide the next step of the synthetic strategy. Herbicidal tests of the new compounds indicated that compound exhibited better post-emergence herbicidal activity than picloram at a dosage of 300 gha, and it was also safe for corn, wheat, and sorghum at this dosage. These results demonstrated that 6-(5-aryl-substituted-1-pyrazolyl)-2-picolinic acid compounds could be used as potential lead structures in the discovery of novel synthetic auxin herbicides.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9920234PMC
http://dx.doi.org/10.3390/molecules28031431DOI Listing

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