JWGU Frankfurt am Main, CEF Macromolecular Complexes, Centre of Membrane Proteomics, Department of Biosciences, Frankfurt, Germany.
Plant Biol (Stuttg). 2011 Mar;13(2):349-61. doi: 10.1111/j.1438-8677.2010.00377.x.
Blue light modulates many processes in plants and plant cells. It influences global and long-term responses, such as seedling development and phototropism, and induces short-term adaptations like stomatal opening and chloroplast movement. Three genes were identified as important for the latter process, namely PHOT1, PHOT2 and CHUP1. The former two phototropin blue light receptors act in perception of the blue light signal. The protein CHUP1 is localised to the outer envelope membrane of chloroplasts and is involved in chloroplast movement. To explore whether short-term reactions required for chloroplast movement are under transcriptional control, we analysed the transcriptome in wild-type Arabidopsis thaliana, phot1, phot2 and chup1 with different blue light treatments for 5 or 30 min. Blue light-induced changes in transcription depended on illumination time and intensity. Illumination with 100 μmol·m(-2) · s(-1) blue light induced down-regulation of several genes and might point to cascades that could be important for sensing low levels of blue light. Analysis of the transcriptome of the mutants in response to the different light regimes suggests that the transcriptional response to blue light in the wild-type can be attributed to phot1 rather than phot2, suggesting that blue light-induced alteration of expression is a function of phot1. In contrast, the blue light response at the transcriptional level of chup1 plants was unique, and confirmed the higher light sensitivity of this mutant.
蓝光调节植物和植物细胞中的许多过程。它影响全局和长期的反应,如幼苗发育和向光性,以及诱导短期适应,如气孔开放和叶绿体运动。已经确定了三个对后一过程很重要的基因,即 PHOT1、PHOT2 和 CHUP1。前两个光受体在蓝光信号的感知中起作用。蛋白质 CHUP1 定位于叶绿体的外被膜上,参与叶绿体的运动。为了探究叶绿体运动所需的短期反应是否受转录控制,我们用不同的蓝光处理分析了野生型拟南芥、phot1、phot2 和 chup1 中的转录组,处理时间为 5 或 30 分钟。蓝光诱导的转录变化取决于光照时间和强度。用 100 μmol·m(-2)·s(-1) 的蓝光照射会下调几个基因,这可能表明对于低水平蓝光的感应,存在重要的级联反应。对不同光照条件下突变体的转录组分析表明,野生型对蓝光的转录反应归因于 phot1,而不是 phot2,这表明蓝光诱导的表达改变是 phot1 的功能。相比之下,chup1 植物在转录水平上对蓝光的反应是独特的,这证实了该突变体对光的敏感性更高。