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首页> 外文期刊>Molecular Plant-Microbe Interactions >Toward the Identification of Two Glycoproteins Involved in the Stomatal Deregulation of Downy Mildew–Infected Grapevine Leaves
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Toward the Identification of Two Glycoproteins Involved in the Stomatal Deregulation of Downy Mildew–Infected Grapevine Leaves

机译:鉴定涉及霜霉病感染葡萄叶片气孔失调的两种糖蛋白

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Stomata remain abnormally opened and unresponsive to abscisic acid in grapevine leaves infected by downy mildew. This deregulation occurs from 3 days postinoculation and increases concomitantly with leaf colonization by the pathogen. Using epidermal peels, we demonstrated that the active compound involved in this deregulation is located in the apoplast. Biochemical assays showed that the active compound present in the apoplastic fluids isolated from Plasmopara viticola–infected grapevine leaves (IAF) is a CysCys bridge-independent, thermostable and glycosylated protein. Fractionation guided assays based on chromatography coupled to stomatal response and proteomic analysis allowed the identification of both plant and pathogen proteins in the active fraction obtained from IAF. Further in silico analysis and discriminant filtrations based on the comparison between predictions and experimental indications lead to the identification of two Vitis vinifera proteins as candidates for the observed stomatal deregulation.
机译:气孔保持异常开放,对霜霉病感染的葡萄叶片中的脱落酸无反应。该失调从接种后3天开始发生,并随病原体的叶片定植而增加。使用表皮果皮,我们证明了参与这种放松调节的活性化合物位于质外体中。生化分析表明,从葡萄小叶单胞菌感染的葡萄叶(IAF)分离出的质外体流体中存在的活性化合物是不依赖CysCys桥的热稳定糖基化蛋白。基于色谱的分馏引导测定,结合气孔反应和蛋白质组学分析,可以鉴定从IAF获得的活性级分中的植物和病原体蛋白质。根据预测值和实验指标之间的比较,进一步进行计算机分析和判别过滤,可以鉴定出两种葡萄果实蛋白,它们是观察到的气孔失调的候选物。

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