Common mechanisms regulating expression of rice aleurone genes that contribute to the primary response for gibberellin

Kenji Washio, Masaaki Morikawa
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引用次数: 12

Abstract

During germination of cereal seeds, aleurone cells respond to gibberellins (GA) by synthesizing and secreting hydrolytic enzymes that mobilize the reserved nutrients. It has been shown that products of early GA response genes, like a transcription factor GAMyb, act as key molecules leading to this regulation. Pivotal roles of GAMyb on expression of hydrolase genes have been well documented, whereas regulation of GAMyb expression itself remains obscure. In order to understand virtual mechanisms of the GA-mediated expression of genes, it is important to know how GA control expression of early GA response genes. Using an aleurone transient expression system of rice (Oryza sativa L.), we examined GA responsive domains of early GA response genes in the aleurone, such as GAMyb and OsDof3. The upstream promoter could not confer GA response. Extensive analyses revealed the presence of enhancer-like activities in a large first intron. In Arabidopsis, intron enhancers have been identified in MADS-box homeotic genes, AGAMOUS (AG) and FLOWERING LOCUS C (FLC), in which large introns should not only confer proper gene expressions, but also associate with gene silencing by covalent modifications of both DNA and histone. These evidences prompt us to assign that chromatin-based control might be important for initial GA action. Based on this assumption, we have identified DNA methylation of the GAMyb locus in germinated rice seeds.

水稻糊粉素基因表达对赤霉素初级反应的共同调控机制
在谷物种子萌发过程中,糊粉细胞通过合成和分泌水解酶来调动储存的营养物质来响应赤霉素(GA)。研究表明,早期GA反应基因的产物,如转录因子GAMyb,是导致这种调节的关键分子。GAMyb在水解酶基因表达中的关键作用已被充分证明,而GAMyb表达本身的调控仍不清楚。为了了解GA介导基因表达的虚拟机制,了解GA如何控制早期GA应答基因的表达是很重要的。利用水稻糊粉瞬时表达系统,研究了糊粉中早期GA响应基因GAMyb和OsDof3的GA响应域。上游启动子不能授予GA响应。广泛的分析显示,在一个大的第一内含子中存在增强子样活性。在拟南芥中,已经在MADS-box同源基因、AGAMOUS (AG)和开花位点C (FLC)中发现了内含子增强子,其中大内含子不仅赋予适当的基因表达,而且还通过DNA和组蛋白的共价修饰与基因沉默有关。这些证据提示我们,基于染色质的控制可能对初始遗传作用很重要。基于这一假设,我们已经确定了发芽水稻种子中GAMyb位点的DNA甲基化。
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