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首页> 外文期刊>Journal of pesticide science >Development of a novel fungicide, tolprocarb
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Development of a novel fungicide, tolprocarb

机译:新型杀菌剂甲苯丙威的开发

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Tolprocarb developed by Mitsui Chemicals Agro, Inc. (Tokyo, Japan) was discovered as a new oomycete fungicide. However, its antifungal spectrum and action mechanisms against fungi are completely different from those of the original compound, iprovalicarb. Tolprocarb has a potent and highly controlled effect on a rice blast fungus Magnaporthe grisea , and its mode of action was revealed to be the inhibition of polyketide synthase in the melanin biosynthesis pathway. In addition, tolprocarb induced systemic acquired resistance in Arabidopsis thaliana and rice ( Oryza sativa L.). Owing to these double modes of action, tolprocarb can effectively control not only rice blast but also bacterial diseases, and has a low risk of developing fungicide-resistant isolates. Tolprocarb also provides long-term residual activity. A meta-analysis was performed in order to demonstrate tolprocarb’s superior control against panicle blast in paddy fields. In addition, tolprocarb did not show cross-resistance against the fungi that are resistant to dehydratase inhibitor in melanin biosynthesis (Melanin Biosynthesis Inhibitor-Dehydratase; MBI-D) or respiratory complex III: cytochrome bc sub1/sub at Quinone outside site inhibitor (Quinone outside Inhibitor; QoI). Owing to its stable effects, tolprocarb appears to be a suitable choice for practical use against fungi in the rice production field.
机译:由Mitsui Chemicals Agro,Inc.(日本东京)开发的Tolprocarb被发现是一种新型的卵菌杀菌剂。但是,它的抗真菌谱和对真菌的作用机理与原始化合物依普利卡威完全不同。托普卡威对稻瘟病稻瘟病菌Magnaporthe grisea具有强效和高度控制的作用,其作用方式被证明是抑制黑色素生物合成途径中的聚酮化合物合酶。另外,甲苯丙威在拟南芥和水稻(稻(Oryza sativa L.))中诱导了系统获得性抗性。由于这些双重作用方式,托必威不仅可以有效控制稻瘟病,而且还可以有效控制细菌性疾病,并且开发抗真菌分离株的风险较低。杀虫威也提供长期的残留活性。进行了荟萃分析,目的是证明托普威在稻田中对穗爆具有优异的防治效果。此外,托普卡威对黑色素生物合成(黑色素生物合成抑制剂脱水酶; MBI-D)或呼吸道复合物III:醌中的细胞色素bc 1 的抗脱水酶抑制剂的真菌没有交叉耐药性。外部位点抑制剂(Quinone outside抑制剂; QoI)。由于杀虫威的稳定作用,它似乎是水稻生产领域中针对真菌实际应用的合适选择。

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