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◆ Journal of agricultural and food chemistry2026-09-09

Discovery and Mechanistic Investigation of Aminopyrimidine/Pyridine Hydrazone 4b-8 as a Potent Fungicide Candidate with Distinct Glucan-Associated Antifungal Mechanisms.

Lei Zeng, Tuotuo Zhang, Yuan Zhou, Meng Cai, Hongwu He

原始摘要(英文原文)· Original abstract
The limited diversity of fungicide modes of action and rising resistance highlight the need for novel agrochemicals. Here, aminopyrimidine/pyridine hydrazones were rationally designed through bioisosteric modification of lead compound L. Twenty-five derivatives were synthesized and evaluated, yielding multiple candidates with strong activity against major phytopathogenic fungi. Compound 4b-8 showed the best performance, with an EC50 of 0.3 μg/mL against Monilinia fructicola and >90% in vivo control efficacy against peach brown rot at 50 μg/mL, outperforming chlorothalonil. Mechanistic studies suggested that 4b-8 induces extensive ultrastructural damage, mitochondrial dysfunction, ATP depletion, and antioxidant system collapse in fungal hyphae. Transcriptomic profiling indicated substantial disruption of carbohydrate metabolism, particularly glucan-associated processes, which was consistent with the marked reduction in total β-glucan content. Collectively, the data demonstrate that 4b-8 exerts fungicidal activity through interference with glucan-related cellular processes, providing a promising lead with a mode of action distinct from commercial standards.
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Discovery and Mechanistic Investigation of Aminopyrimidine/Pyridine Hydrazone 4b-8 as a Potent Fungicide Candidate with Distinct Glucan-Associated Antifungal Mechanisms. — 科研速览 Science Skim