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Functional interaction of phytochrome B and cryptochrome 2

机译:植物色素B和隐花色素2的功能相互作用

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Light is a crucial environmental signal that controls many photo-morphogenic and circadian responses in plants'. Perception and transduction of light is achieved by at least two principal groups of photoreceptors, phytochromes and cryptochromes. Phyto-chromes are red/far-red light-absorbing receptors encoded by a gene family of five members (phyA to phyE) in Arabidopsis. Cryptochrome 1 (cry1), cryptochrome 2 (cry2) and phototropin are the blue/ultraviolet-A light receptors that have been characterized in Arabidopsis. Previous studies showed that modulation of many physiological responses in plants is achieved by genetic interactions between different photoreceptors; however, little is known about the nature of these interactions and their roles in the signal transduction pathway. Here we show the genetic inter- action that occurs between the Arabidopsis photoreceptors phyB and cry2 in the control of flowering time, hypocotyl elongation and circadian period by the clock. PhyB interacts directly with cry2 as observed in co-immunoprecipitation experiments with transgenic Arabidopsis plants overexpressing cry2. Using fluorescent resonance energy transfer microscopy, we show that phyB and cry2 interact in nuclear speckles that are formed in a light-dependent fashion.
机译:光是至关重要的环境信号,它控制着植物中许多光形态发生和昼夜节律的响应。通过至少两个主要的感光体,植物色素和隐色染料实现光的感知和传导。植物色素是由拟南芥中五个成员(phyA至phyE)的基因家族编码的红色/远红色光吸收受体。隐花色素1(cry1),隐花色素2(cry2)和光蛋白是在拟南芥中表征的蓝色/紫外线A光受体。先前的研究表明,植物中许多生理反应的调节是通过不同光感受器之间的遗传相互作用实现的。然而,对于这些相互作用的性质及其在信号转导途径中的作用知之甚少。在这里,我们显示了拟南芥光感受器phyB和cry2之间通过时钟控制开花时间,下胚轴伸长和昼夜节律之间的遗传相互作用。 PhyB直接与cry2相互作用,如在过度表达cry2的转基因拟南芥植物的共免疫沉淀实验中观察到的。使用荧光共振能量转移显微镜,我们显示phyB和cry2在以光依赖方式形成的核斑点中相互作用。

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