Kühn Nathalie, Ormeño-Núñez Juan, Jaque-Zamora Gonzalo, Pérez Francisco J
Universidad de Chile, Fac. Ciencias, Lab. Bioquímica Vegetal, Casilla 653, Santiago, Chile.
J Plant Physiol. 2009 Jul 15;166(11):1172-80. doi: 10.1016/j.jplph.2009.01.005. Epub 2009 Feb 20.
Despite the crucial role that phytochromes (Phys) play in light perception and in the entrainment of the circadian clock to local time, the photoperiodic regulation of PHYA and PHYB gene expression has been poorly studied, especially in woody perennials. Here the dynamic of Vitis vinifera PHYA (VvPHYA) and PHYB (VvPHYB) transcript accumulation was studied in field-grown grapevine leaves throughout daily cycles under decreasing natural photoperiods. Given that in grapevine the entrance of buds into endodormancy (ED) is a photoperiod-driven process, increases in BR(50) values, a parameter that measures the depth of dormancy in single bud cuttings assays was used to determine the critical daylength at which grapevine discriminates between long day (LD) and short day (SD) photoperiod. Therefore, we monitored the daily expression profile of VvPHYA and VvPHYB transcripts before, during and after the defined critical daylength. Results showed that under LD photoperiod (21 December, daylength 14 h 40 min) the abundance of both transcripts oscillated with diurnal rhythms, attaining maximum and minimum levels before dawn and after dusk, respectively. However, under SD photoperiod (12 April, daylength 11 h 40 min) the rhythmic expression disappeared, and both transcripts expressed uniformly at high levels. Our results showing that photoperiod regulates VvPHYA and VvPHYB gene expression, contrast with those reported in Arabidopsis and in other herbaceous plants in which PHYA and PHYB gene expression is regulated by the circadian clock.
尽管光敏色素(Phys)在光感知以及使生物钟与当地时间同步方面发挥着关键作用,但关于PHYA和PHYB基因表达的光周期调控研究较少,尤其是在木本多年生植物中。本文研究了田间种植的葡萄叶片中葡萄(Vitis vinifera)光敏色素A(VvPHYA)和光敏色素B(VvPHYB)转录本积累在自然光周期逐渐缩短的每日周期中的动态变化。鉴于在葡萄中,芽进入内休眠(ED)是一个受光周期驱动的过程,BR(50)值的增加(该参数用于测量单芽插条试验中的休眠深度)被用来确定葡萄区分长日照(LD)和短日照(SD)光周期的临界日长。因此,我们监测了在确定的临界日长之前、期间和之后VvPHYA和VvPHYB转录本的每日表达谱。结果表明,在长日照光周期(12月21日,日长14小时40分钟)下两种转录本的丰度都以昼夜节律振荡,分别在黎明前和黄昏后达到最高和最低水平。然而,在短日照光周期(4月12日,日长11小时40分钟)下,节律性表达消失,两种转录本均以高水平均匀表达。我们的结果表明光周期调节VvPHYA和VvPHYB基因表达,这与拟南芥和其他草本植物中报道的结果相反,在这些植物中PHYA和PHYB基因表达受生物钟调控。