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PIL5 a Phytochrome-Interacting Basic Helix-Loop-Helix Protein Is a Key Negative Regulator of Seed Germination in Arabidopsis thaliana

机译:PIL5一种与植物色素相互作用的基本螺旋-螺旋-螺旋蛋白是拟南芥种子萌发的关键负调控因子。

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摘要

The first decision made by an angiosperm seed, whether to germinate or not, is based on integration of various environmental signals such as water and light. The phytochromes (Phys) act as red and far-red light (Pfr) photoreceptors to mediate light signaling through yet uncharacterized pathways. We report here that the PIF3-like 5 (PIL5) protein, a basic helix-loop-helix transcription factor, is a key negative regulator of phytochrome-mediated seed germination. PIL5 preferentially interacts with the Pfr forms of Phytochrome A (PhyA) and Phytochrome B (PhyB). Analyses of a pil5 mutant in conjunction with phyA and phyB mutants, a pif3 pil5 double mutant, and PIL5 overexpression lines indicate that PIL5 is a negative factor in Phy-mediated promotion of seed germination, inhibition of hypocotyl negative gravitropism, and inhibition of hypocotyl elongation. Our data identify PIL5 as the first Phy-interacting protein that regulates seed germination.
机译:被子植物种子是否发芽的第一个决定是基于各种环境信号(例如水和光)的整合。植物色素(Phys)充当红色和远红色光(Pfr)感光体,通过尚未表征的途径介导光信号。我们在这里报告说,PIF3样5(PIL5)蛋白,一种基本的螺旋-环-螺旋转录因子,是植物色素介导的种子发芽的关键负调控因子。 PIL5优先与Pfr形式的植物色素A(PhyA)和植物色素B(PhyB)相互作用。对pil5突变体与phyA和phyB突变体,pif3 pil5双突变体和PIL5过表达株系的分析表明,PIL5是Phy介导的种子萌发促进,抑制下胚轴负重力和抑制下胚轴伸长的负因子。 。我们的数据确定PIL5是第一个调节种子发芽的Phy相互作用蛋白。

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