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首页> 外文期刊>Physiological and Molecular Plant Pathology >Expression profiling of rice genes in early defense responses to blast and bacterial blight pathogens using cDNA microarray.
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Expression profiling of rice genes in early defense responses to blast and bacterial blight pathogens using cDNA microarray.

机译:水稻基因在表达对稻瘟病和细菌性白叶枯病病原菌的早期防御反应中的表达谱。

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In order to understand the defence machinery in the model cereal crop rice, we performed a large-scale analysis of rice gene expression in response to rice blast Magnaporthe grisea (M. grisea) or Magnaporthe oryzae and bacterial blight Xanthomonas oryzae pv. oryzae (Xoo) during the early incompatible and compatible interactions. Using a gene chip containing 10 254 rice cDNAs representing 9240 unique genes, we identified 794 and 612 genes differentially expressed in the incompatible and compatible rice-M. grisea interactions, respectively, with 274 genes co-regulated during both interactions. In the rice-Xoo pathosystem, 454 and 498 differentially expressed genes were identified in the incompatible and compatible interactions, respectively, including 237 co-regulated genes in the both interactions. By clustering differentially regulated genes from all these interactions, we identified 29 co-regulated genes in the all four interactions, and 86 and 74 co-regulated genes in the two incompatible and two compatible interactions, respectively. These differentially expressed genes could be classified into three categories, including M. grisea- and Xoo-regulated, M. grisea-specific, and Xoo-specific. The expression patterns of representative defense-related genes were further confirmed by RT-PCR. The large-scale expression data from our microarray analysis indicated the existence of distinctive as well as shared defence pathways between the rice-M. grisea and rice-Xoo interactions..
机译:为了了解模型谷物作物水稻中的防御机制,我们针对稻瘟病稻(Magnaporthe grisea)或稻瘟病(Magnaporthe oryzae)和枯萎病黄单胞菌Xanthomonas oryzae pv进行了水稻基因表达的大规模分析。早期的不兼容和兼容的交互过程中的稻米(Xoo)。使用包含代表9240个独特基因的10 254个水稻cDNA的基因芯片,我们鉴定了在不相容和相容的水稻M中差异表达的794和612个基因。在两个相互作用过程中,分别与274个基因共同调控了恶性相互作用。在水稻-Xoo病理系统中,分别在不相容和相容相互作用中鉴定出454和498个差异表达基因,包括在两种相互作用中共237个共同调控的基因。通过将来自所有这些相互作用的差异调节基因聚类,我们在所有四个相互作用中鉴定出29个共同调控的基因,分别在两个不相容和两个相容相互作用中鉴定出86和74个共同调控的基因。这些差异表达的基因可分为三类,包括稻瘟病菌和Xoo调控,稻瘟病菌特异性和Xoo特异性。通过RT-PCR进一步证实了代表性的防御相关基因的表达模式。来自我们的微阵列分析的大规模表达数据表明,水稻-M之间存在独特且共有的防御途径。稻米与Xoo的相互作用

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