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Analysis of differentially expressed genes in Oryza meyeriana in response to infection by Xanthomonas oryzae pv. oryzae

机译:响应于米氏黄单胞菌PV感染的米中稻中差异表达基因的分析。水稻

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P>Oryza meyeriana Baill was found immune to Xanthomonas oryzae pv. oryzae (Xoo). However, the genes responsible for the strong resistance are unknown. In this study, suppression subtractive hybridization (SSH) was utilized to identify genes differentially expressed in O. meyeriana after Xoo infection. Oryza meyeriana plants inoculated with high pathogenicity races were used as 'tester' and non-inoculated plants as 'driver'. Analysis of the SSH library revealed genes responsible for cell wall lignifications, which may function to block pathogen invasion. Also identified are genes involved in secondary metabolism systems to eliminate damage caused by chemicals such as peroxides in cells. One of the response genes, ME281 encoding a protein with leucine-rich repeats which has high similarity with those of other reported disease resistance genes, was further analysed by RT-PCR and Northern blotting, which showed its expression peaked at 48-72 h after Xoo infection, suggesting that it may function at the later stage of the plant's responses. This study would help demonstrate the molecular mechanism of O. meyeriana's strong resistance to Xoo and find new disease resistance candidate genes.
机译:P> Oryza meyeriana Baill被发现对Xanthomonas oryzae pv免疫。稻(Xoo)。然而,尚不清楚引起强抗性的基因。在这项研究中,抑制消减杂交(SSH)用于鉴定Xoo感染后在O. meyeriana中差异表达的基因。接种了高致病性小种的野生稻(Oryza meyeriana)植物被用作“测试者”,未接种的植物被用作“驱动者”。 SSH库的分析揭示了负责细胞壁木质化的基因,这些基因可能起到阻止病原体入侵的作用。还鉴定出与次级代谢系统有关的基因,以消除细胞中过氧化物等化学物质引起的破坏。通过RT-PCR和Northern杂交进一步分析了其中一个响应基因ME281,该基因编码具有丰富亮氨酸重复序列的蛋白,该蛋白与其他报道的抗病基因具有高度相似性,其表达在48-72 h达到峰值Xoo感染,表明它可能在植物反应的后期起作用。这项研究将有助于证明O. meyeriana对Xoo的强抗性的分子机制,并找到新的抗病候选基因。

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