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Three Genes for Metabolism of the Phytoalexin Maackiain in the Plant Pathogen Nectria haematococca: Meiotic Instability and Relationship to a New Gene for Pisatin Demethylase

机译:植物病原菌血球菌中植物抗毒素新蛋白代谢的三个基因:减数分裂不稳定和与新的Pisatin脱甲基酶基因的关系

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摘要

Some isolates of the plant-pathogenic fungus Nectria haematococca mating population (MP) VI metabolize maackiain and medicarpin, two antimicrobial compounds (phytoalexins) synthesized by chickpea (Cicer arietinum L.). The enzymatic modifications by the fungus convert the phytoalexins to less toxic derivatives, and this detoxification has been proposed to be important for pathogenesis on chickpea. In the present study, loci controlling maackiain metabolism (Mak genes) were identified by crosses among isolates of N. haematococca MP VI that differed in their ability to metabolize the phytoalexin. Strains carrying Mak1 or Mak2 converted maackiain to 1a-hydroxymaackiain, while those with Mak3 converted it to 6a-hydroxymaackiain. Mak1 and Mak2 were unusual in that they often failed to be inherited by progeny. Mak1 was closely linked to Pda6, a new member in a family of genes in N. haematococca MP VI that encode enzymes for detoxification of pisatin, the phytoalexin synthesized by garden pea. Like Mak1, Pda6 was also transmitted irregularly to progeny. Although the unusual meiotic behaviors of some Mak genes complicate genetic analysis, identification of these genes should afford a more through evaluation of the role of phytoalexin detoxification in the pathogenesis of N. haematococca MP VI on chickpea.
机译:植物病原性真菌Nectria haematococca交配种群(MP)VI的某些分离物代谢了花椒苷和麦地卡宾,这是两种由鹰嘴豆合成的抗微生物化合物(植物抗毒素)。真菌对酶的修饰将植物抗毒素转化为毒性较小的衍生物,并且这种解毒作用被认为对于鹰嘴豆的发病机理很重要。在本研究中,通过血红球菌MP VI分离株之间的杂交鉴定了控制毛霉菌素代谢的基因座(Mak基因),这些菌株在代谢植物抗毒素方面具有差异。携带Mak1或Mak2的菌株将maackiain转化为1a-hydroxymaackiain,而携带Mak3的菌株将其maackiain转化为6a-hydroxymaackiain。 Mak1和Mak2之所以与众不同,是因为它们通常无法被子代继承。 Mak1与Pda6紧密相连,Pda6是N. haematococca MP VI的一个基因家族的新成员,该基因编码豌豆合成的植物抗毒素pisatin的解毒酶。像Mak1一样,Pda6也不规则地传播给后代。尽管某些Mak基因的异常减数分裂行为使遗传分析复杂化,但通过评估植物抗毒素在鸡豆上的N. haematococca MP VI发病机理中的作用,这些基因的鉴定应能提供更多的信息。

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