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Microarray analysis of genes that respond to gamma-irradiation in Arabidopsis

机译:拟南芥中对γ-辐射有反应的基因的微阵列分析

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To reveal the signal transduction mechanism of the response to stress in the form of active oxygen species, we used a microarray system to analyze gene expression patterns 2 or 24 h after gamma-irradiation of Arabidopsis. gamma-Irradiation induces several signal transduction and metabolite genes. By analysis of cis-elements located on the promoter region of the gamma-responsive genes, we have also found several cis-elements related to various signal transduction systems. We also analyzed the plelotropic mutant ttg1-1, which has a dramatically altered physiological response to gamma-irradiation. By comparing the gene expression patterns of wild-type (Let) and ttg1-1 mutant plants after gamma-irradiation, we identified various TTG1-regulated gamma-response genes. Analysis of the cis-elements in the promoter region of the gamma-responsive genes also revealed that the many transcription factors interacting with TTG1 protein (WD40 protein) are related to the gamma-responsive gene expression.
机译:为了揭示活性氧物种对应激反应的信号转导机制,我们使用了微阵列系统来分析拟南芥γ射线照射后2或24 h的基因表达模式。 γ射线诱导多种信号转导和代谢产物基因。通过分析位于γ-响应基因的启动子区域的顺式元件,我们还发现了与各种信号转导系统相关的几种顺式元件。我们还分析了多亲突变体ttg1-1,该突变体对γ射线的生理反应发生了巨大变化。通过比较γ射线照射后野生型(Let)和ttg1-1突变体植物的基因表达模式,我们鉴定了各种TTG1调控的γ响应基因。 γ响应基因的启动子区域中的顺式元素的分析还表明,与TTG1蛋白(WD40蛋白)相互作用的许多转录因子与γ响应基因的表达有关。

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