Siddiqui Hamad, Khan Safina, Rhodes Bruce M, Devlin Paul F
School of Biological Sciences, Royal Holloway University of London Egham, UK.
Front Plant Sci. 2016 Feb 22;7:175. doi: 10.3389/fpls.2016.00175. eCollection 2016.
FHY3 and FAR1 are positively acting transcription factors that directly regulate expression of a number of target genes in Arabidopsis thaliana. Here, we looked at the regulation of one specific target gene, ELF4. We demonstrate that the action of FHY3 and FAR1 in upregulation of ELF4 is light dependent. Furthermore, although FHY3 and FAR1 have been exclusively characterized as components of the phytochrome A signaling pathway because of their importance in regulating expression of phyA nuclear importers, we show that, as transcription factors in their own right, FHY3 and FAR1 act downstream of light stable phytochromes, phyB, phyD, and phyE. We demonstrate that light stable phytochrome acts in a red/far-red reversible manner to regulate the level of FHY3 protein. We also observed that ELF4 shows specific FHY3 and FAR1-mediated light induction in the evening and we show that regulation by light stable phytochromes at this time is important as it allows the plant to maintain normal ELF4 expression beyond dusk when the day length shortens, something which would not be possible through light labile phytochrome action. Without FHY3 and FAR1, ELF4 expression falls rapidly at dusk and in short days this results in an early drop in ELF4 expression, accompanied by a de-repression of an ELF4 target gene later in the night. Our results, therefore, demonstrate an important role for FHY3 and FAR1 as mediators of light stable phytochrome signaling.
FHY3和FAR1是正向作用的转录因子,可直接调控拟南芥中多个靶基因的表达。在此,我们研究了一个特定靶基因ELF4的调控机制。我们证明FHY3和FAR1对ELF4的上调作用依赖于光。此外,尽管FHY3和FAR1由于在调控phyA核输入蛋白的表达中起重要作用而被专门鉴定为光敏色素A信号通路的组成部分,但我们表明,就其本身作为转录因子而言,FHY3和FAR1在光稳定的光敏色素phyB、phyD和phyE下游起作用。我们证明光稳定的光敏色素以红/远红可逆的方式调节FHY3蛋白的水平。我们还观察到ELF4在傍晚表现出特定的FHY3和FAR1介导的光诱导,并且我们表明此时光稳定的光敏色素的调节很重要,因为它使植物在白天长度缩短时能够在黄昏后维持正常的ELF4表达,而这通过光不稳定的光敏色素作用是不可能实现的。没有FHY3和FAR1,ELF4的表达在黄昏时迅速下降,在短日照条件下,这会导致ELF4表达提前下降,并在夜间后期伴随着ELF4靶基因的去抑制。因此,我们的结果证明了FHY3和FAR1作为光稳定的光敏色素信号传导介质的重要作用。