A molecular framework for light and gibberellin control of cell elongation

光形态发生 下胚轴 拟南芥 光敏色素 黄化 赤霉素 细胞生物学 转录因子 抑制因子 拟南芥 生物 避光 化学 植物 遗传学 基因 突变体 生物化学 红灯
作者
Miguel de Lucas,Jean‐Michel Davière,Mariana Rodríguez-Falcón,Mariela Pontín,Juan Manuel Iglesias‐Pedraz,Séverine Lorrain,Christian Fankhauser,Miguel Á. Blázquez,Elena Titarenko,Salomé Prat
出处
期刊:Nature [Nature Portfolio]
卷期号:451 (7177): 480-484 被引量:1201
标识
DOI:10.1038/nature06520
摘要

Cell elongation during seedling development is antagonistically regulated by light and gibberellins (GAs). Light induces photomorphogenesis, leading to inhibition of hypocotyl growth, whereas GAs promote etiolated growth, characterized by increased hypocotyl elongation. The mechanism underlying this antagonistic interaction remains unclear. Here we report on the central role of the Arabidopsis thaliana nuclear transcription factor PIF4 (encoded by PHYTOCHROME INTERACTING FACTOR 4) in the positive control of genes mediating cell elongation and show that this factor is negatively regulated by the light photoreceptor phyB (ref. 4) and by DELLA proteins that have a key repressor function in GA signalling. Our results demonstrate that PIF4 is destabilized by phyB in the light and that DELLAs block PIF4 transcriptional activity by binding the DNA-recognition domain of this factor. We show that GAs abrogate such repression by promoting DELLA destabilization, and therefore cause a concomitant accumulation of free PIF4 in the nucleus. Consistent with this model, intermediate hypocotyl lengths were observed in transgenic plants over-accumulating both DELLAs and PIF4. Destabilization of this factor by phyB, together with its inactivation by DELLAs, constitutes a protein interaction framework that explains how plants integrate both light and GA signals to optimize growth and development in response to changing environments.
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