Más Paloma, Alabadí David, Yanovsky Marcelo J, Oyama Tokitaka, Kay Steve A
Department of Cell Biology, Scripps Research Institute, La Jolla, California 92037, USA.
Plant Cell. 2003 Jan;15(1):223-36. doi: 10.1105/tpc.006734.
To examine the role of the TOC1 (TIMING OF CAB EXPRESSION1) gene in the Arabidopsis circadian system, we generated a series of transgenic plants expressing a gradation in TOC1 levels. Silencing of the TOC1 gene causes arrhythmia in constant darkness and in various intensities of red light, whereas in blue light, the clock runs faster in silenced plants than in wild-type plants. Increments in TOC1 gene dosage delayed the pace of the clock, whereas TOC1 overexpression abolished rhythmicity in all light conditions tested. Our results show that TOC1 RNA interference and toc1-2 mutant plants displayed an important reduction in sensitivity to red and far-red light in the control of hypocotyl elongation, whereas increments in TOC1 gene dosage clearly enhanced light sensitivity. Furthermore, the red light-mediated induction of CCA1/LHY expression was decreased in TOC1 RNA interference and toc1-2 mutant plants, indicating a role for TOC1 in the phytochrome regulation of circadian gene expression. We conclude that TOC1 is an important component of the circadian clock in Arabidopsis with a crucial function in the integration of light signals to control circadian and morphogenic responses.
为了研究TOC1(CAB表达时间1)基因在拟南芥生物钟系统中的作用,我们构建了一系列表达不同水平TOC1的转基因植物。TOC1基因沉默会导致在持续黑暗和不同强度红光条件下出现节律紊乱,而在蓝光条件下,沉默植株中的生物钟比野生型植株运行得更快。TOC1基因剂量的增加会延迟生物钟的节奏,而TOC1过表达则会消除所有测试光照条件下的节律性。我们的结果表明,TOC1 RNA干扰和toc1 - 2突变体植株在控制下胚轴伸长时对红光和远红光的敏感性显著降低,而TOC1基因剂量的增加则明显增强了光敏感性。此外,在TOC1 RNA干扰和toc1 - 2突变体植株中,红光介导的CCA1/LHY表达诱导减少,表明TOC1在昼夜节律基因表达的光敏色素调节中发挥作用。我们得出结论,TOC1是拟南芥生物钟的重要组成部分,在整合光信号以控制昼夜节律和形态发生反应方面具有关键作用。