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首页> 外文期刊>Plant Molecular Biology >Two Rice GRAS Family Genes Responsive to N-Acetylchitooligosaccharide Elicitor are Induced by Phytoactive Gibberellins: Evidence for Cross-Talk Between Elicitor and Gibberellin Signaling in Rice Cells
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Two Rice GRAS Family Genes Responsive to N-Acetylchitooligosaccharide Elicitor are Induced by Phytoactive Gibberellins: Evidence for Cross-Talk Between Elicitor and Gibberellin Signaling in Rice Cells

机译:植物活性赤霉素诱导两个响应N-乙酰基壳寡糖激肽的水稻GRAS家族基因:水稻细胞中激肽和赤霉素信号之间的交叉对话的证据

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摘要

In this study, we present data showing that two members of the GRAS family of genes from rice, CIGR1 and CIGR2(chitin-inducible gibberellin-responsive), inducible by the potent elicitor N-acetylchitooligosaccharide (GN), are rapidly induced by exogenous gibberellins. The pattern of mRNA accumulation was dependent on the dose and biological activity of the gibberellins, suggesting that the induction of the genes by gibberellin is mediated by a biological receptor capable of specific recognition and signal transduction upon perception of the phytoactive compounds. Further pharmacological analysis revealed that the CIGR1 and CIGR2 mRNA accumulation by treatment with gibberellin is dependent upon protein phosphorylation/dephosphorylation events. In rice calli derived from slender rice 1, a constitutive gibberellin-responsive mutant, or d1, a mutant deficient in the α-subunit of the heterotrimeric G-protein, CIGR1 and CIGR2 were induced by a GN elicitor, yet not by gibberellin. Neither gibberellin nor GN showed related activities in defense or development, respectively. These results strongly suggested that the signal transduction cascade from gibberellin is independent of that from GN, and further implied that CIGR1 and CIGR2 have dual, distinct roles in defense and development.
机译:在这项研究中,我们提供的数据表明,由强力激发子N-乙酰基壳寡糖(GN)诱导的水稻GRAS基因家族的两个成员CIGR1和CIGR2(几丁质诱导的赤霉素响应)可被外源赤霉素快速诱导。 mRNA积累的模式取决于赤霉素的剂量和生物学活性,这表明赤霉素对基因的诱导是由能够特异性识别和感知植物活性化合物后信号转导的生物受体介导的。进一步的药理分析表明,赤霉素处理后CIGR1和CIGR2 mRNA的积累取决于蛋白质的磷酸化/去磷酸化事件。在源自细长稻米1的水稻愈伤组织中,组成型赤霉素响应突变体或d1(缺乏异源三聚体G蛋白,CIGR1和CIGR2的α亚基的突变体)是由GN诱导子诱导的,而不是由赤霉素诱导的。赤霉素和GN均未显示出与防御或发育相关的活性。这些结果强烈表明,赤霉素的信号转导级联与GN的信号转导无关,并且进一步暗示CIGR1和CIGR2在防御和发育中具有双重,独特的作用。

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