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拟南芥 RAP2.4 在调控光和乙烯介导的发育过程及干旱胁迫耐受中的作用。

Role of Arabidopsis RAP2.4 in regulating light- and ethylene-mediated developmental processes and drought stress tolerance.

机构信息

Boyce Thompson Institute for Plant Research, Cornell University, Ithaca, NY 14853, USA.

出版信息

Mol Plant. 2008 Jan;1(1):42-57. doi: 10.1093/mp/ssm004. Epub 2007 Oct 12.

Abstract

Light and the plant hormone ethylene regulate many aspects of plant growth and development in an overlapping and interdependent fashion. Little is known regarding how their signal transduction pathways cross-talk to regulate plant development in a coordinated manner. Here, we report functional characterization of an AP2/DREB-type transcription factor, Arabidopsis RAP2.4, in mediating light and ethylene signaling. Expression of the RAP2.4 gene is down-regulated by light but up-regulated by salt and drought stresses. RAP2.4 protein is constitutively targeted to the nucleus and it can bind to both the ethylene-responsive GCC-box and the dehydration-responsive element (DRE). We show that RAP2.4 protein possesses an intrinsic transcriptional activation activity in yeast cells and that it can activate a reporter gene driven by the DRE cis-element in Arabidopsis protoplasts. Overexpression of RAP2.4 or mutation in RAP2.4 cause altered expression of representative light-, ethylene-, and drought-responsive genes. Although no salient phenotype was observed with a rap2.4 loss-of-function mutant, constitutive overexpression of RAP2.4 results in defects in multiple developmental processes regulated by light and ethylene, including hypocotyl elongation and gravitropism, apical hook formation and cotyledon expansion, flowering time, root elongation, root hair formation, and drought tolerance. Based on these observations, we propose that RAP2.4 acts at or downstream of a converging point of light and ethylene signaling pathways to coordinately regulate multiple developmental processes and stress responses.

摘要

光和植物激素乙烯以重叠和相互依存的方式调节植物生长和发育的许多方面。关于它们的信号转导途径如何相互作用以协调方式调节植物发育,知之甚少。在这里,我们报告了拟南芥 RAP2.4 作为一种 AP2/DREB 型转录因子在介导光和乙烯信号中的功能特征。RAP2.4 基因的表达受光下调,但受盐和干旱胁迫上调。RAP2.4 蛋白持续靶向细胞核,它可以与乙烯反应的 GCC 框和脱水反应元件(DRE)结合。我们表明 RAP2.4 蛋白在酵母细胞中具有内在的转录激活活性,并且它可以激活拟南芥原生质体中由 DRE 顺式元件驱动的报告基因。RAP2.4 的过表达或 RAP2.4 的突变导致代表性的光、乙烯和干旱响应基因的表达发生改变。尽管 rap2.4 功能丧失突变体没有观察到明显的表型,但 RAP2.4 的组成型过表达导致受光和乙烯调节的多个发育过程的缺陷,包括下胚轴伸长和向性、顶端钩形成和子叶扩张、开花时间、根伸长、根毛形成和耐旱性。基于这些观察结果,我们提出 RAP2.4 作用于或下游于光和乙烯信号通路的交汇点,以协调调节多个发育过程和应激反应。

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