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Arabidopsis COP1 shapes the temporal pattern of CO accumulation conferring a photoperiodic flowering response

机译:拟南芥COP1塑造了CO积累的时间模式赋予了光周期开花响应

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摘要

The transcriptional regulator CONSTANS (CO) promotes flowering of Arabidopsis under long summer days (LDs) but not under short winter days (SDs). Post-translational regulation of CO is crucial for this response by stabilizing the protein at the end of a LD, whereas promoting its degradation throughout the night under LD and SD. We show that mutations in CONSTITUTIVE PHOTOMORPHOGENIC 1 (COP1), a component of a ubiquitin ligase, cause extreme early flowering under SDs, and that this is largely dependent on CO activity. Furthermore, transcription of the CO target gene FT is increased in cop1 mutants and decreased in plants overexpressing COP1 in phloem companion cells. COP1 and CO interact in vivo and in vitro through the C-terminal region of CO. COP1 promotes CO degradation mainly in the dark, so that in cop1 mutants CO protein but not CO mRNA abundance is dramatically increased during the night. However, in the morning CO degradation occurs independently of COP1 by a phytochrome B-dependent mechanism. Thus, COP1 contributes to day length perception by reducing the abundance of CO during the night and thereby delaying flowering under SDs.
机译:转录调节子CONSTANS(CO)在长夏季(LDs)下促进拟南芥开花,而在短冬(SDs)下则不促进拟南芥开花。通过在LD末端稳定蛋白质,而在LD和SD下整夜促进其降解,CO的翻译后调节对此反应至关重要。我们显示,在组成型光生化基因1(COP1),泛素连接酶的一个组成部分中的突变会导致SD下的极端早期开花,并且这很大程度上取决于CO的活性。此外,CO靶基因FT的转录在cop1突变体中增加,而在韧皮部陪伴细胞中过表达COP1的植物中降低。 COP1和CO通过CO的C端在体内外相互作用。COP1主要在黑暗中促进CO降解,因此在cop1突变体中,夜间CO蛋白而不是CO mRNA的丰度大大增加。但是,在早晨,CO降解是通过植物色素B依赖性机制独立于COP1发生的。因此,COP1通过减少夜间的CO含量,从而延迟了SD下的开花,从而促进了白天的感知。

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