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The Arabidopsis lectin receptor kinase LecRK-I.9 enhances resistance to Phytophthora infestans in Solanaceous plants

机译:拟南芥凝集素受体激酶Lecrk-i.9增强了溶于植物植物中对植物病症患者的抗性

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Late blight caused by the plant pathogenic oomycete Phytophthora infestans is known as one of the most destructive potato diseases. Plant breeders tend to employ NB-LRR-based resistance for introducing genetically controlled late blight resistance in their breeding lines. However, P.infestans is able to rapidly escape this type of resistance, and hence, NB-LRR-based resistance in potato cultivars is often not durable. Previously, we identified a novel type of Phytophthora resistance in Arabidopsis. This resistance is mediated by the cell surface receptor LecRK-I.9, which belongs to the family of L-type lectin receptor kinases. In this study, we report that expression of the Arabidopsis LecRK-I.9 gene in potato and Nicotiana benthamiana results in significantly enhanced late blight resistance. Transcriptional profiling showed strong reduction in salicylic acid (SA)-mediated defence gene expression in LecRK-I.9 transgenic potato lines (TPLs). In contrast, transcripts of two protease inhibitor genes accumulated to extreme high levels, suggesting that LecRK-I.9-mediated late blight resistance is relying on a defence response that includes activation of protease inhibitors. These results demonstrate that the functionality of LecRK-I.9 in Phytophthora resistance is maintained after interfamily transfer to potato and N.benthamiana and suggest that this novel type of LecRK-based resistance can be exploited in breeding strategies to improve durable late blight resistance in Solanaceous crops.RI Govers, Francine/A-5616-2009OI Govers, Francine/0000-0001-5311-929X
机译:植物病原oomycete植物嗜睡症患者的晚期枯萎称为最具破坏性的马铃薯疾病之一。植物育种者倾向于采用基于NB-LRR的抗性,以引入其繁殖线中的遗传控制的晚期抗性。然而,P.infestans能够迅速逃避这种类型的抵抗力,因此,马铃薯品种中的Nb-Lrr基抗性通常不耐用。以前,我们鉴定了拟南芥的新型植物植物抗性。这种阻力由细胞表面受体Lecrk-I.9介导,其属于L型凝集素受体激酶的家族。在这项研究中,我们报告说,拟南芥LeCrk-i.9基因在马铃薯和尼古利亚纳·宾夕法尼亚州的表达导致显着增强的晚期抗性。转录分析显示在Lecrk-i.9转基因薯系(TPLS)中的水杨酸(SA)介导的防御基因表达的强烈降低。相反,两种蛋白酶抑制剂基因的转录物累积在极端高水平,表明LECRK-I.9介导的后期枯燥性抵抗依赖于包括蛋白酶抑制剂的活化的防御反应。这些结果表明,在与马铃薯和N.Benthamiana的间歇转移后,LeCrk-i.9在植物肺抗性中的功能维持,并表明这种新型的骚扰抗性可利用育种策略来提高耐用晚期抗性Solanaceous Crop.ri Govers,Francine / A-5616-20090i Govers,Francine / 0000-0001-5311-929x

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