首页> 美国卫生研究院文献>Journal of Experimental Botany >PIF1 promotes phytochrome-regulated growth under photoperiodic conditions in Arabidopsis together with PIF3 PIF4 and PIF5
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PIF1 promotes phytochrome-regulated growth under photoperiodic conditions in Arabidopsis together with PIF3 PIF4 and PIF5

机译:PIF1与PIF3PIF4和PIF5一起在拟南芥的光周期条件下促进植物色素调节的生长

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摘要

Seedlings growing under diurnal conditions display maximal growth at the end of the night in short-day (SD) photoperiods. Current evidence indicates that this behaviour involves the action of PHYTOCHROME-INTERACTING FACTOR 3 (PIF3) together with PIF4 and PIF5, through direct regulation of growth-related genes at dawn coinciding with a PIF3 accumulation peak generated by phytochrome-imposed oscillations in protein abundance. Here, to assess how alterations in PIF3 levels impact seedling growth, the night-specific accumulation of PIF3 was modulated by releasing SD-grown seedlings into continuous light, or by exposing them to a phytochrome-inactivating end-of-day far-red pulse (EOD-FRp). The data show a strong direct correlation between PIF3 accumulation, PIF3-regulated induction of growth-related genes, and hypocotyl elongation, and suggest that growth promotion in SD conditions involves factors other than PIF3, PIF4, and PIF5. Using a pif1 mutant, evidence is provided that PIF1 also contributes to inducing hypocotyl elongation during the dark period under diurnal conditions. PIF1 displayed constitutive transcript levels in SD conditions, suggesting that phytochrome-imposed oscillations in PIF1 protein abundance determine its accumulation and action during the night, similar to PIF3 and in contrast to PIF4 and PIF5, which oscillate diurnally due to a combination of circadian clock-regulated transcription and light control of protein accumulation. Furthermore, using single and higher order pif mutants, the relative contribution of each member of the PIF quartet to the regulation of morphogenesis and the expression of selected growth marker genes under SD conditions, or under SD conditions supplemented with an EOD-FRp, is defined. Collectively, the data indicate that PIF1, PIF3, PIF4, and PIF5 act together to promote and optimize growth under photoperiodic conditions.
机译:在昼夜条件下生长的幼苗在短日(SD)光周期的夜晚结束时显示出最大的生长。目前的证据表明,这种行为涉及到植物色素相互作用因子3(PIF3)以及PIF4和PIF5的作用,通过黎明时对生长相关基因的直接调节与由植物色素施加的蛋白质丰度振荡产生的PIF3积累峰相吻合。在这里,为了评估PIF3水平的变化如何影响幼苗生长,通过将SD生长的幼苗释放到连续光照下,或将其暴露于灭活植物色素的日末远红外脉冲下,来调节PIF3的夜间特异性积累(EOD-FRp)。数据显示PIF3积累,PIF3调节的与生长相关的基因的诱导和下胚轴伸长之间有很强的直接相关性,并表明SD条件下的生长促进涉及PIF3,PIF4和PIF5以外的因素。使用pif1突变体,提供了证据,证明PIF1在昼夜条件下的黑暗时期也有助于诱导下胚轴伸长。 PIF1在SD条件下显示本构转录水平,表明PIF1蛋白丰度中的植物色素施加的振荡决定了其在夜间的积累和作用,与PIF3相似,而与PIF4和PIF5相反,后者由于昼夜节律的组合而昼夜振荡调节蛋白质积累的转录和光控制。此外,在SD条件下或在添加EOD-FRp的SD条件下,使用单级和更高阶的pif突变体,定义了PIF四重奏的每个成员对形态形成和所选生长标记基因表达的调控的相对贡献。 。总体而言,数据表明PIF1,PIF3,PIF4和PIF5在光周期条件下共同促进和优化生长。

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