Department of Molecular Genetics, Centre for Research in Agricultural Genomics (CRAG) CSIC-IRTA-UAB-UB, Campus UAB, Bellaterra, Barcelona, Spain.
Laboratory of Biochemistry, Institut Químic de Sarrià, Universitat Ramon Llull, Barcelona, Spain.
Physiol Plant. 2020 Jul;169(3):452-466. doi: 10.1111/ppl.13123.
Under photoperiodic conditions, Arabidopsis thaliana seedling growth is inhibited in long days (LDs), but promoted under the extended nights of short days (SDs). This behavior is partly implemented by phytochrome (phy)-imposed oscillations in the abundance of the growth-promoting, phy-interacting bHLH transcription factors PHY-INTERACTING FACTOR 1 (PIF1), PIF3, PIF4 and PIF5 (PIF quartet or PIFq). However, the observation that a pifq mutant is still stimulated to elongate when given a phy-inactivating end-of-day far-red pulse (EODFR), suggests that additional factors are involved in the phy-mediated suppression of growth during the subsequent dark period. Here, by combining growth-analysis of pif7 single- and higher-order mutants with gene expression analysis under SD, LD, SD-EODFR, and LD-EODFR, we show that PIF7 promotes growth during the dark hours of SD, by regulating growth-related gene expression. Interestingly, the relative contribution of PIF7 in promoting growth is stronger under EODFR, whereas PIF3 role is more important under SD, suggesting that PIF7 is a prominent target of phy-suppression. Indeed, we show that phy imposes phosphorylation and inactivation of PIF7 during the light hours in SD, and prevents full dephosphorylation during the night. This repression can be lifted with an EODFR, which correlates with increased PIF7-mediated gene expression and elongation. In addition, our results suggest that PIF7 function might involve heterodimerization with PIF3. Furthermore, our data indicate that a pifqpif7 quintuple mutant is largely insensitive to photoperiod for hypocotyl elongation. Collectively, the data suggest that PIF7, together with the PIFq, is required for the photoperiodic regulation of seasonal growth.
在光周期条件下,拟南芥幼苗的生长在长日照(LDs)下受到抑制,但在短日照的延长夜间(SDs)下得到促进。这种行为部分是通过光敏色素(phy)对促进生长的phy 相互作用 bHLH 转录因子 PHY-INTERACTING FACTOR 1(PIF1)、PIF3、PIF4 和 PIF5(PIF 四重奏或 PIFq)丰度的振荡来实现的。然而,观察到 pifq 突变体在给予抑制 phy 的结束时远红光脉冲(EODFR)时仍被刺激伸长,这表明在随后的暗期,phy 介导的生长抑制还涉及其他因素。在这里,我们通过结合 pif7 单突变体和更高阶突变体的生长分析以及在 SD、LD、SD-EODFR 和 LD-EODFR 下的基因表达分析,表明 PIF7 通过调节生长相关基因的表达,在 SD 的黑暗时间促进生长。有趣的是,在 EODFR 下,PIF7 促进生长的相对贡献更强,而在 SD 下,PIF3 的作用更为重要,这表明 PIF7 是 phy 抑制的一个重要靶点。事实上,我们表明 phy 在 SD 的光照时间内对 PIF7 进行磷酸化和失活,并在夜间阻止其完全去磷酸化。这种抑制可以通过 EODFR 解除,这与增加的 PIF7 介导的基因表达和伸长相关。此外,我们的结果表明 PIF7 功能可能涉及与 PIF3 的异二聚化。此外,我们的数据表明,pifqpif7 五重突变体对下胚轴伸长的光周期基本不敏感。总的来说,数据表明 PIF7 与 PIFq 一起,是季节性生长的光周期调节所必需的。