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polyamine uptake transporter 2 (put2) and decaying seeds enhance phyA-mediated germination by overcoming PIF1 repression of germination

机译:多胺吸收转运蛋白2(put2)和腐烂种子通过克服PIF1抑制发芽来增强phyA介导的发芽

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摘要

Red light promotes germination after activating phytochrome phyB, which destabilizes the germination repressor PIF1. Early upon seed imbibition, canopy light, unfavorable for photosynthesis, represses germination by stabilizing PIF1 after inactivating phyB. Paradoxically, later upon imbibition, canopy light stimulates germination after activating phytochrome phyA. phyA-mediated germination is poorly understood and, intriguingly, is inefficient, compared to phyB-mediated germination, raising the question of its physiological significance. A genetic screen identified polyamine uptake transporter 2 (put2) mutants that overaccumulate polyamines, a class of antioxidant polycations implicated in numerous cellular functions, which we found promote phyA-mediated germination. In WT seeds, our data suggest that canopy light represses polyamines accumulation through PIF1 while red light promotes polyamines accumulation. We show that canopy light also downregulates PIF1 levels, through phyA; however, PIF1 reaccumulates rapidly, which limits phyA-mediated germination. High polyamines levels in decaying seeds bypass PIF1 repression of germination and stimulate phyA-mediated germination, suggesting an adaptive mechanism promoting survival when viability is compromised.
机译:激活植物色素phyB后,红光促进发芽,这会破坏发芽阻遏物PIF1的稳定性。种子吸尽后,不利于光合作用的冠层光通过在phyB灭活后稳定PIF1来抑制发芽。矛盾的是,在吸收之后,冠层光在激活植物色素phyA后刺激发芽。与phyB介导的萌发相比,phyA介导的萌发了解甚少,并且有趣的是效率低下,这引发了其生理意义的问题。遗传筛选确定了多胺吸收转运蛋白2(put2)突变体,这些突变体使多胺过度积累,多胺是一类涉及许多细胞功能的抗氧化剂聚阳离子,我们发现它们促进了phyA介导的发芽。在野生型种子中,我们的数据表明,冠层光通过PIF1抑制多胺的积累,而红光则促进多胺的积累。我们显示冠层光也通过phyA下调了PIF1的水平。但是,PIF1快速重新积累,从而限制了phyA介导的发芽。腐烂种子中的高多胺水平绕过了PIF1对发芽的抑制,并刺激了phyA介导的发芽,表明当生存力受到损害时,一种能促进存活的适应性机制。

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