Department of Molecular Biosciences and The Institute for Cellular and Molecular Biology, The University of Texas at Austin, Austin, TX 78712, USA.
Basic Forestry and Plant Proteomics Research Center, Fujian Agriculture and Forestry University, Fuzhou 350002, China.
Plant Physiol. 2024 Apr 30;195(1):213-231. doi: 10.1093/plphys/kiae110.
In addition to providing the radiant energy that drives photosynthesis, sunlight carries signals that enable plants to grow, develop and adapt optimally to the prevailing environment. Here we trace the path of research that has led to our current understanding of the cellular and molecular mechanisms underlying the plant's capacity to perceive and transduce these signals into appropriate growth and developmental responses. Because a fully comprehensive review was not possible, we have restricted our coverage to the phytochrome and cryptochrome classes of photosensory receptors, while recognizing that the phototropin and UV classes also contribute importantly to the full scope of light-signal monitoring by the plant.
除了提供驱动光合作用的辐射能外,阳光还携带信号,使植物能够生长、发育并最佳地适应环境。在这里,我们追溯了研究的轨迹,这些研究使我们对植物感知和转导这些信号为适当的生长和发育反应的细胞和分子机制有了当前的理解。由于不可能进行全面的综述,我们将报道范围限制在光敏色素和隐花色素这两类感光受体,同时认识到向光素和 UV 类也对植物全面监测光信号有重要贡献。