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赤霉素调节光信号通路,以防止拟南芥幼苗在黑暗中去黄化。

Gibberellins modulate light signaling pathways to prevent Arabidopsis seedling de-etiolation in darkness.

作者信息

Alabadí David, Gallego-Bartolomé Javier, Orlando Leonardo, García-Cárcel Laura, Rubio Vicente, Martínez Cristina, Frigerio Martín, Iglesias-Pedraz Juan Manuel, Espinosa Ana, Deng Xing Wang, Blázquez Miguel A

机构信息

Instituto de Biología Molecular y Celular de Plantas (CSIC-UPV), Av de los Naranjos s/n, 46022-Valencia, Spain.

出版信息

Plant J. 2008 Jan;53(2):324-35. doi: 10.1111/j.1365-313X.2007.03346.x. Epub 2007 Dec 5.

Abstract

In many plants, photomorphogenesis is the default developmental program after seed germination, and provides the key features that allow adaptation to light. This program is actively repressed if germination occurs in the absence of light, through a mechanism dependent on the E3 ubiquitin ligase activity that is encoded in Arabidopsis by COP1 (CONSTITUTIVE PHOTOMORPHOGENIC 1), which induces proteolytic degradation of transcription factors necessary for light-regulated development, such as HY5 (LONG HYPOCOTYL 5) and HYH (LONG HYPOCOTYL 5 HOMOLOG), and stabilization of transcription factors that promote skotomorphogenesis, such as PIF3 (PHYTOCHROME INTERACTING FACTOR 3). Seedlings deficient in gibberellin (GA) synthesis or signaling display a de-etiolated phenotype when grown in darkness, equivalent to the phenotype of cop1 mutants, which indicates that the switch between photo- and skotomorphogenesis is also under hormonal control. Here we provide evidence for the existence of crosstalk between GA and the COP1-mediated pathway, and identify HY5 and the PIF family as nodes of a regulatory network. This interaction occurs through distinct molecular mechanisms, based on the observation that GA signaling regulates protein stability of HY5, and the activity of PIF3.

摘要

在许多植物中,光形态建成是种子萌发后的默认发育程序,并提供了适应光照的关键特征。如果在无光条件下发生萌发,该程序会通过一种依赖于E3泛素连接酶活性的机制被积极抑制,拟南芥中的COP1(组成型光形态建成1)编码这种E3泛素连接酶活性,它会诱导光调控发育所需转录因子(如HY5(长下胚轴5)和HYH(长下胚轴5同源物))的蛋白水解降解,并使促进暗形态建成的转录因子(如PIF3(光敏色素相互作用因子3))稳定化。缺乏赤霉素(GA)合成或信号传导的幼苗在黑暗中生长时会表现出去黄化表型,这与cop1突变体的表型相同,这表明光形态建成和暗形态建成之间的转换也受激素控制。在这里,我们提供了GA与COP1介导的途径之间存在相互作用的证据,并确定HY5和PIF家族是调控网络的节点。这种相互作用通过不同的分子机制发生,这是基于GA信号传导调节HY5的蛋白质稳定性和PIF3活性的观察结果。

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