Haga Ken, Sakai Tatsuya
Department of Applied Chemistry, Faculty of Fundamental Engineering, Nippon Institute of Technology, 4-1 Gakuendai, Miyashiro-cho, Minamisaitama-gun, Saitama 345-8501, Japan.
Graduate School of Science and Technology, Niigata University, 8050 Ikarashi 2-no-cho, Nishi-ku, Niigata 950-2181, Japan.
J Exp Bot. 2023 Mar 28;74(6):1758-1769. doi: 10.1093/jxb/erad015.
Plants recognize the direction of a light source and exhibit phototropic responses. Physiological studies have predicted that differences in the light intensity received by the cells on the irradiated and shaded sides of a coleoptile or hypocotyl cause differences in the amounts of photoproduct. This hypothetical photoproduct appears to regulate a signaling pathway that controls cell elongation in which cells under lower light intensity elongate more than those under higher light intensity. This results in a bending growth toward a light source and has been proposed as the photoproduct-gradient model of phototropism. In this review, we summarize recent findings on the photosensory adaptation mechanisms involving a blue-light photoreceptor, phototropin1 (phot1), ROOT PHOTOTROPISM2, NONPHOTOTROPIC HYPOCOTYL3 (NPH3), and another photoreceptor family, the phytochromes. The current evidence demonstrates that, in addition to the transition of the phot1-NPH3 photoreceptor complexes to their active state, the presence of a certain population of the phot1-NPH3 complexes showing a steady state, even in a light environment, is essential for recognition of the light source direction in phototropism. This is consistent with the photoproduct-gradient model, and a dissociation state of the phot1-NPH3 complex would be considered an entity of the hypothetical photoproduct in this model.
植物能够识别光源方向并表现出向光性反应。生理学研究预测,胚芽鞘或下胚轴受光面和背光面细胞所接收的光强度差异会导致光产物量的差异。这种假设的光产物似乎调节着一种信号通路,该信号通路控制细胞伸长,其中光强度较低的细胞比光强度较高的细胞伸长更多。这导致向光源方向弯曲生长,并被提出作为向光性的光产物梯度模型。在本综述中,我们总结了关于涉及蓝光光感受器向光素1(phot1)、根向光性2、非向光性下胚轴3(NPH3)以及另一个光感受器家族——植物色素的光感适应机制的最新研究发现。目前的证据表明,除了phot1 - NPH3光感受器复合物转变为其活性状态外,即使在光照环境下,存在一定数量处于稳态的phot1 - NPH3复合物对于向光性中光源方向的识别也是必不可少的。这与光产物梯度模型一致,并且在该模型中,phot1 - NPH3复合物的解离状态将被视为假设光产物的一种形式。