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Downy Mildew Resistance in Arabidopsis by Mutation of HOMOSERINE KINASE.

机译:通过HomoSerine激酶突变拟南芥柔软的霉菌抗性。

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摘要

Plant disease resistance is commonly triggered by early pathogen recognition and activation of immunity. An alternative form of resistance is mediated by recessive downy mildew resistant 1 (dmr1) alleles in Arabidopsis thaliana. Map-based cloning revealed that DMR1 encodes homoserine kinase (HSK). Six independent dmr1 mutants each carry a different amino acid substitution in the HSK protein. Amino acid analysis revealed that dmr1 mutants contain high levels of homoserine that is undetectable in wild-type plants. Surprisingly, the level of amino acids downstream in the aspartate (Asp) pathway was not reduced in dmr1 mutants. Exogenous homoserine does not directly affect pathogen growth but induces resistance when infiltrated in ARABIDOPSIS: We provide evidence that homoserine accumulation in the chloroplast triggers a novel form of downy mildew resistance that is independent of known immune responses.
机译:植物疾病抗性通常是通过早期病原体识别和免疫激活引发。 替代形式的抗性由拟南芥中的隐性柔软霉菌抗性1(DMR1)等位基因介导。 基于地图的克隆显示DMR1编码HomoSerine激酶(HSK)。 六个独立的DMR1突变体各自在HSK蛋白中携带不同的氨基酸取代。 氨基酸分析显示DMR1突变体含有高水平的野生静脉,其在野生型植物中不可检测。 令人惊讶的是,在DMR1突变体中,天冬氨酸(ASP)途径下游的氨基酸水平不会降低。 外源性均静脉不会直接影响病原体生长,但在拟南芥中浸润时诱导抗性:我们提供了叶绿体中的蛋白质积聚触发了一种独立于已知的免疫反应的新形式的柔软效应。

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