Stoelzle Sonja, Kagawa Takatoshi, Wada Masamitsu, Hedrich Rainer, Dietrich Petra
Department of Molecular Plant Physiology and Biophysics, Julius von Sachs Institute of Biosciences, Julius-von-Sachs-Platz 2, 97082 Würzburg, Germany.
Proc Natl Acad Sci U S A. 2003 Feb 4;100(3):1456-61. doi: 10.1073/pnas.0333408100. Epub 2003 Jan 22.
Light is a central regulator of plant growth and development. Among the processes triggered by blue and UV-A light, phototropism, stomatal movement, and chloroplast orientation rely on the activation of blue-light receptors known as phototropins. So far, these photoreceptors constitute a class of light receptor kinases unique to the plant kingdom. In Arabidopsis thaliana, the two members phot1 and phot2 have been shown to display partially overlapping functions. Up to now little is known about the signaling cascade, which links these phototropins to the physiological responses downstream of blue-light perception. Here, we show that on illumination with blue light, but not red light, voltage-dependent and calcium-permeable channels activate in the plasma membrane of mesophyll cells. Blue-light stimulation in the presence of the photosynthetic electron transport inhibitor, 3-(3,4-dichlorophenyl)-1,1-dimethylurea, indicates that blue-light receptors rather than photosynthesis control channel activity. Sensitivity toward the protein kinase inhibitor K252a further pointed to the possible involvement of light receptor kinases. In support of this hypothesis, in the photoreceptor mutant phot1-5, blue-light induction of calcium currents was dramatically reduced and was eliminated in the double mutant phot1-5 phot2-1. By contrast, in cry1-304 cry2-1, an Arabidopsis mutant lacking another class of plant blue-light receptors, the channel remained sensitive to blue light. We thus conclude that blue light triggers calcium fluxes via the phototropin-activated calcium-permeable channel.
光是植物生长和发育的核心调节因子。在蓝光和UV-A光触发的过程中,向光性、气孔运动和叶绿体定向依赖于被称为向光素的蓝光受体的激活。到目前为止,这些光感受器构成了植物界特有的一类光受体激酶。在拟南芥中,两个成员phot1和phot2已被证明具有部分重叠的功能。到目前为止,对于将这些向光素与蓝光感知下游的生理反应联系起来的信号级联知之甚少。在这里,我们表明,在蓝光而非红光照射下,电压依赖性和钙通透性通道在叶肉细胞质膜中被激活。在光合电子传递抑制剂3-(3,4-二氯苯基)-1,1-二甲基脲存在下的蓝光刺激表明,是蓝光受体而非光合作用控制通道活性。对蛋白激酶抑制剂K252a的敏感性进一步表明光受体激酶可能参与其中。支持这一假设的是,在光感受器突变体phot1-5中,钙电流的蓝光诱导显著降低,而在双突变体phot1-5 phot2-1中则完全消除。相比之下,在缺乏另一类植物蓝光受体的拟南芥突变体cry1-304 cry2-1中,该通道对蓝光仍保持敏感。因此,我们得出结论,蓝光通过向光素激活的钙通透性通道触发钙通量。