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Plant disease susceptibility conferred by a 'resistance' gene

机译:“抗性”基因赋予植物的疾病易感性

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The molecular nature of many plant disease resistance (R) genes is known; the largest class encodes nucleotide-binding site-leucine-rich repeat (NBS-LRR) proteins that are structurally related to proteins involved in innate immunity in animals. Few genes conferring disease susceptibility, on the other hand, have been identified. Recent identification of susceptibility to the fungus Coch-liobolus victoriae in Arabidopsis thaliana has enabled our cloning of LOV1, a disease susceptibility gene that, paradoxically, is a member of the NBS-LRR resistance gene family. We found LOV1 mediates responses associated with defense, but mutations in known defense response pathways do not prevent susceptibility to C. victoriae. These findings demonstrate that NBS-LRR genes can condition disease susceptibility and resistance and may have implications for R gene deployment.
机译:许多植物抗病(R)基因的分子性质是已知的。最大的一类编码核苷酸结合位点-富含亮氨酸的重复序列(NBS-LRR)蛋白,该蛋白与动物中与先天免疫有关的蛋白在结构上相关。另一方面,很少鉴定出赋予疾病易感性的基因。最近鉴定拟南芥中对真菌Coch-liobolus victoriae的易感性使我们能够克隆LOV1,这是一种疾病易感性基因,自相矛盾的是,它是NBS-LRR抗性基因家族的成员。我们发现LOV1介导与防御相关的反应,但已知防御反应途径中的突变并不能阻止对维多利亚葡萄球菌的易感性。这些发现表明,NBS-LRR基因可以调节疾病的易感性和抵抗力,并且可能对R基因的部署有影响。

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