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Light Regulation of Gibberellin Biosynthesis in Pea Is Mediated through the COP1/HY5 Pathway

机译:通过COP1 / HY5途径介导豌豆中赤霉素生物合成的光调节。

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Light regulation of gibberellin (GA) biosynthesis occurs in several species, but the signaling pathway through which this occurs has not been clearly established. We have isolated a new pea (Pisum sativum) mutant, long1, with a light-dependent elongated phenotype that is particularly pronounced in the epicotyl and first internode. The long1 mutation impairs signaling from phytochrome and cryptochrome photoreceptors and interacts genetically with a mutation in LIP1, the pea ortholog of Arabidopsis thaliana COP1. Mutant long1 seedlings show a dramatic impairment in the light regulation of active GA levels and the expression of several GA biosynthetic genes, most notably the GA catabolism gene GA2ox2. The long1 mutant carries a nonsense mutation in a gene orthologous to the ASTRAY gene from Lotus japonicus, a divergent ortholog of the Arabidopsis bZIP transcription factor gene HY5. Our results show that LONG1 has a central role in mediating the effects of light on GA biosynthesis in pea and demonstrate the importance of this regulation for appropriate photomorphogenic development. By contrast, LONG1 has no effect on GA responsiveness, implying that interactions between LONG1 and GA signaling are not a significant component of the molecular framework for light-GA interactions in pea.
机译:赤霉素(GA)生物合成的光调节发生在几种物种中,但是尚未明确建立发生赤霉素的信号传导途径。我们已经分离出一个新的豌豆(Pisum sativum)突变体long1,其具有光依赖性的伸长表型,在表皮和第一节间尤为明显。 long1突变会削弱来自植物色素和隐色光感受器的信号传导,并与LIP1(拟南芥COP1的豌豆直系同源物)中的突变发生遗传相互作用。突变的long1幼苗在活性GA水平的光调节和一些GA生物合成基因(尤其是GA分解代谢基因GA2ox2)的表达中表现出极大的损害。 long1突变体在与日本莲的ASTRAY基因同源的基因中带有无意义的突变,后者是拟南芥bZIP转录因子基因HY5的异源同源物。我们的结果表明,LONG1在介导光对豌豆中GA生物合成的影响中起着核心作用,并证明了该调控对于适当的光形态发生发展的重要性。相比之下,LONG1对GA的响应能力没有影响,这意味着LONG1和GA信号之间的相互作用并不是豌豆中光-GA相互作用的分子框架的重要组成部分。

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