首页> 外文期刊>Journal of Agricultural and Food Chemistry >Strategies of cruciferous pathogenic fungi: detoxification of the phytoalexin cyclobrassinin by mimicry.
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Strategies of cruciferous pathogenic fungi: detoxification of the phytoalexin cyclobrassinin by mimicry.

机译:十字花科致病真菌的策略:通过拟态作用对植物抗毒素的环菜豆素进行解毒。

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The remarkable metabolism of the cruciferous phytoalexin cyclobrassinin by the phytopathogenic root rot (Rhizoctonia solani Kuhn) and blackleg [Phoma lingam (Tode ex Fr.) Desm., asexual stage of Leptosphaeria maculans (Desm.) Ces. et de Not.] fungi is reported. It was established that R. solani metabolized and detoxified cyclobrassinin via the phytoalexin brassicanal A, which was further transformed into nontoxic products. Detoxification of cyclobrassinin in P. lingam avirulent isolate Unity occurred via the phytoalexin brassilexin, whereas the detoxification in P. lingam virulent isolate BJ 125 occurred via the phytoalexin dioxibrassinin. The chemistry involved in the structure determination of the intermediates of these three apparently different pathways and their antifungal activities are described. In addition, efficient syntheses of both phytoalexins brassicanal A and brassilexin by mimicry of the fungal biotransformation route are reported. Implications of these unprecedented transformations are discussed.
机译:致病性根腐烂菌(Rhizoctonia solani Kuhn)和黑腿病(Phoma lingam(Tode ex Fr.)Desm。,无性的Leptosphaeria maculans(Desm。)Ces。等]真菌的报道。已经确定,茄尼色单胞菌通过植物抗毒素黄铜芸苔素A代谢和解毒了环孢素,并将其进一步转化为无毒产品。灵芝P. lingam无毒分离株中环花青素的解毒通过植物抗毒素黄铜素而发生,而灵芝P. lingam毒性分离株BJ 125中的解毒则通过植物抗毒素二氧西ass素发生。描述了这三种明显不同途径的中间体的结构确定中涉及的化学及其抗真菌活性。另外,已经报道了通过模仿真菌生物转化途径来有效合成植物抗毒素类芸苔素A和黄铜抗毒素。讨论了这些前所未有的转变的含义。

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