Department of Plant Physiology, Umeå Plant Science Centre, Umeå University, 90187 Umeå, Sweden.
Plant Mol Biol. 2010 May;73(1-2):143-56. doi: 10.1007/s11103-010-9619-2. Epub 2010 Mar 13.
In many temperate woody species, dormancy is induced by short photoperiods. Earlier studies have shown that the photoreceptor phytochrome A (phyA) promotes growth. Specifically, Populus plants that over-express the oat PHYA gene (oatPHYAox) show daylength-independent growth and do not become dormant. However, we show that oatPHYAox plants could be induced to set bud and become cold hardy by exposure to a shorter, non-24 h diurnal cycle that significantly alters the relative position between endogenous rhythms and perceived light/dark cycles. Furthermore, we describe studies in which the expression of endogenous Populus tremula x P. tremuloides PHYTOCHROME A (PttPHYA) was reduced in Populus trees by antisense inhibition. The antisense plants showed altered photoperiodic requirements, resulting in earlier growth cessation and bud formation in response to daylength shortening, an effect that was explained by an altered innate period that leads to phase changes of clock-associated genes such as PttCO2. Moreover, gene expression studies following far-red light pulses show a phyA-mediated repression of PttLHY1 and an induction of PttFKF1 and PttFT. We conclude that the level of PttPHYA expression strongly influences seasonally regulated growth in Populus and is central to co-ordination between internal clock-regulated rhythms and external light/dark cycles through its dual effect on the pace of clock rhythms and in light signaling.
在许多温带木本植物中,休眠是由短日照诱导的。早期的研究表明,感光色素phyA 促进生长。具体来说,过量表达燕麦 PHYA 基因(oatPHYAox)的杨树植物表现出与日照长度无关的生长,并且不会休眠。然而,我们表明,通过暴露于较短的非 24 小时昼夜周期,oatPHYAox 植物可以被诱导出芽并变得耐寒,这显著改变了内源性节律和感知的光/暗周期之间的相对位置。此外,我们描述了通过反义抑制降低杨树中内源 Populus tremula x P. tremuloides PHYTOCHROME A(PttPHYA)表达的研究。反义植物表现出改变的光周期需求,导致对日照缩短的生长停止和芽形成更早,这种效应可以通过改变内在周期来解释,内在周期导致时钟相关基因(如 PttCO2)的相位变化。此外,远红光脉冲后的基因表达研究表明 phyA 介导的 PttLHY1 抑制和 PttFKF1 和 PttFT 的诱导。我们得出结论,PttPHYA 表达水平强烈影响杨树季节性调节的生长,并且通过其对时钟节律速度和光信号的双重影响,是内部时钟调节节律和外部光/暗周期之间协调的核心。