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Proteomic Analysis of Rice Nonhost Resistance to Puccinia striiformis f. sp. tritici Using Two-Dimensional Electrophoresis

机译:水稻非寄主抗条锈菌的蛋白质组学分析。 sp。二维电泳的小麦

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摘要

Rice (Oryza sativa L.) is the only widely cultivated gramineous crops that cannot be infected by rust fungi. To decipher the molecular basis of rice nonhost resistance (NHR) to Puccinia striiformis f. sp. tritici (Pst), the causal agent of wheat stripe rust, proteomic analysis was performed using the two-dimensional electrophoresis (2-DE) technique. The expressed proteins from rice leaves 24 and 48 h post inoculation with Pst and from mock-inoculated leaves were identified. Quantitative analysis revealed a total of 27 differentially expressed proteins in response to Pst inoculation. Most of these proteins fall into the category “response to stimulus” and are involved in basic resistance processes, such as glycerol-3-phosphate and hydrogen peroxide signaling. A homologue of wheat leaf rust resistance protein Lr10 was also identified, implicating multiple layers of plant defense are implicated in rice NHR to Pst. These results demonstrate an intrinsic relationship between host and nonhost resistance. Changes in abundance of these proteins, together with their putative functions reveal a comprehensive profile of rice NHR to Pst and provide new insights into plant immunity.
机译:水稻(Oryza sativa L.)是唯一不能被锈菌感染的广泛种植的禾本科作物。破译水稻对条锈菌的非寄主抗性(NHR)的分子基础。 sp。小麦条锈病的病原体小麦(Pst),使用二维电泳(2-DE)技术进行了蛋白质组学分析。 Pst接种后24和48 h,从稻叶和模拟接种的叶中鉴定出表达的蛋白质。定量分析显示,响应Pst接种,共有27种差异表达的蛋白质。这些蛋白质中的大多数都属于“对刺激的反应”类别,并参与基本的抗性过程,例如3-磷酸甘油和过氧化氢信号传导。还鉴定了小麦叶锈病抗性蛋白Lr10的同源物,这暗示着水稻NHR中与Pst有关的多个植物防御层。这些结果证明了宿主和非宿主抗性之间的内在联系。这些蛋白质的丰度变化及其推定的功能揭示了水稻NHR对Pst的全面概况,并提供了对植物免疫力的新见解。

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