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Mutants of Cercospora kikuchii Altered in Cercosporin Synthesis and Pathogenicity

机译:菊尾孢菌突变体改变尾孢菌素的合成和致病性

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We have obtained spontaneous and UV-induced stable mutants, altered in the synthesis of cercosporin, of the fungal soybean pathogen Cercospora kikuchii. The mutants were isolated on the basis of colony color on minimal medium. The UV-induced mutants accumulated, at most, 2% of wild-type cercosporin levels on all media tested. In contrast, cercosporin accumulation by the spontaneous mutants was strongly medium regulated, occurring only on potato dextrose medium but at concentrations comparable to those produced by the wild-type strain. UV-induced mutants unable to synthesize cercosporin on any medium were unable to incite lesions when inoculated onto the soybean host. Cercosporin was reproducibly isolated from all inoculated leaves showing lesions. Although cercosporin involvement in disease has been indirectly suggested by many previous studies, this is the first report in which mutants blocked in cercosporin synthesis have been used to demonstrate that cercosporin is a crucial pathogenicity factor for this fungal genus.
机译:我们已经获得了真菌大豆病原体菊苣Cercospora kikuchii的自发和紫外线诱导的稳定突变体,改变了尾孢菌素的合成。在基本培养基上根据菌落颜色分离突变体。在所有测试的培养基上,紫外线诱导的突变体最多积累野生型头孢菌素水平的2%。相反,自发突变体的头孢菌素积累受到强烈的培养基调节,仅在马铃薯葡萄糖培养基上发生,但浓度与野生型菌株产生的浓度相当。紫外线诱导的无法在任何培养基上合成头孢菌素的突变体,接种到大豆宿主上后都不会引起病变。从显示出病灶的所有接种叶中可复制地分离出Cercosporin。尽管许多先前的研究间接暗示了头孢菌素参与疾病,但这是首次报道了头孢菌素合成中受阻的突变体已被证明证明头孢菌素是该真菌属的关键致病因子。

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