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Undefeated—Changing the phenamacril scaffold is not enough to beat resistant Fusarium

机译:不败的变化的phenamacril脚手架是不足以抗抗性镰刀菌

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Filamentous fungi belonging to the genus Fusarium are notorious plant-pathogens that infect, damage and contaminate a wide variety of important crops. Phenamacril is the first member of a novel class of single-site acting cyanoacrylate fungicides which has proven highly effective against important members of the genus Fusarium . However, the recent emergence of field-resistant strains exhibiting qualitative resistance poses a major obstacle for the continued use of phenamacril. In this study, we synthesized novel cyanoacrylate compounds based on the phenamacril-scaffold to test their growth-inhibitory potential against wild-type Fusarium and phenamacril-resistant strains. Our findings show that most chemical modifications to the phenamacril-scaffold are associated with almost complete loss of fungicidal activity and in vitro inhibition of myosin motor domain ATPase activity.
机译:属于镰刀菌属的丝状真菌是臭名昭着的植物 - 病原体感染,损害和污染各种重要作物。 Phenamacril是一种新型单次单位代理氰基丙烯酸氰基酯杀菌剂的第一部分,其证明对镰刀菌属的重要成员来说是非常有效的。 然而,最近出现的抗抗抗性菌株的出现具有定性抗性的主要障碍,用于继续使用phenamacril。 在该研究中,我们基于苯甲酸支架合成新的氰基丙烯酸酯化合物,以测试它们对野生型镰刀菌和抗苯甲酸株菌株的生长抑制潜力。 我们的研究结果表明,最多的化学修饰与Phenamacril-CuScold的化学修饰与霉菌活性的几乎完全丧失和体外抑制肌球蛋白电机结构域ATP酶活性有关。

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