首页> 外文期刊>Journal of Agricultural and Food Chemistry >Novel Fungicide 4-Chlorocinnamaldehyde Thiosemicarbazide (PMDD) Inhibits Laccase and Controls the Causal Agent of Take-All Disease in Wheat, Gaeumannomyces graminis var. tritici
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Novel Fungicide 4-Chlorocinnamaldehyde Thiosemicarbazide (PMDD) Inhibits Laccase and Controls the Causal Agent of Take-All Disease in Wheat, Gaeumannomyces graminis var. tritici

机译:新型杀菌剂4-氯丙酮醛硫代硫脲(PMDD)抑制漆酶,并控制小麦中的出生疾病的因果剂,Gaeumannomyces graminis var。 Tritici.

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摘要

Our aim was to investigate the bioactivity and mode of action of a novel fungicide 4-chlorocinnamaldehyde thiosemicarbazide (PMDD). As a result of its efficacy against various plant pathogens, its protective fungicidal activity, and systemic transport after root treatment, PMDD could be a promising fungicide to control wheat root diseases. In a field assay, PMDD showed good control efficacy on wheat take-all disease. A biochemical study indicated that PMDD acts as a laccase inhibitor, a to date unique mode of fungicidal action. Moreover, a total of seven stable PMDD-resistant Gaeumannomyces graminis var. tritici (Ggt) mutants were generated and demonstrated no cross-resistance with any commercial fungicides used for take-all disease control, and the gene expression profile further confirmed that laccase could be the target of PMDD. Taken together, we conclude that PMDD is a laccase inhibitor and could be used on wheat to control take-all diseases. The current study could strongly benefit the registration and application of PMDD.
机译:我们的目标是调查新型杀菌剂4-氯丙酮醛硫代喹臭毒素(PMDD)的生物活性和作用方式。由于其对各种植物病原体的功效,其保护性杀真菌活性和根治疗后的全身运输,PMDD可能是对小麦根茎疾病进行有前途的杀菌剂。在田间测定中,PMDD对小麦出现疾病显示出良好的控制效能。生物化学研究表明PMDD作为漆酶抑制剂,a至迄今为止独特的杀菌作用方式。此外,总共七个稳定的PMDD抗性Gaeumannomyces graminis var。产生妥霉(GGT)突变体,并证明没有用于服用所有疾病控制的任何商业杀菌剂的交叉抗性,并且基因表达谱进一步证实漆酶可以是PMDD的靶标。我们得出结论,PMDD是一种漆酶抑制剂,可用于小麦以控制服用疾病。目前的研究可以强烈利益PMDD的注册和应用。

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