Anderson S L, Somers D E, Millar A J, Hanson K, Chory J, Kay S A
National Science Foundation Center for Biological Timing, Department of Cell Biology, Scripps Research Institute, La Jolla, California 92037, USA.
Plant Cell. 1997 Oct;9(10):1727-43. doi: 10.1105/tpc.9.10.1727.
In higher plants, environmental cues such as light signals are integrated with circadian clock signals to control precisely the daily rhythms observed for many biological functions. We have used a fusion of the promoter of a chlorophyll a/b binding protein gene, CAB2, with firefly luciferase (cab2::luc) to monitor the detailed kinetics of transcription in response to photoreceptor activation in Arabidopsis. Using this marker in phototransduction and circadian-dysfunctional mutants, we studied how signals from phytochrome and the circadian clock are integrated for the regulation of CAB2 transcription. Results from these mutant studies demonstrate that similar expression features, namely, the acute and circadian responses, are present in both etiolated and green seedlings and that the acute and circadian responses are genetically separable. We also demonstrate that persistent Pfr signaling occurs in red light-pulsed etiolated seedlings, which suggests that the circadian clock antagonizes Pfr-mediated signal transduction. Based on these genetic studies, we propose a model for the regulation of CAB2 transcription in which individual photoreceptors and phototransduction components have been assigned to specific pathways for the regulation of discrete kinetic components of the CAB2 expression pattern.
在高等植物中,诸如光信号等环境线索与生物钟信号整合在一起,以精确控制许多生物学功能所呈现的日常节律。我们利用叶绿素a/b结合蛋白基因CAB2的启动子与萤火虫荧光素酶的融合体(cab2::luc)来监测拟南芥中响应光感受器激活的转录详细动力学。利用这个标记物在光转导和生物钟功能失调的突变体中,我们研究了来自光敏色素和生物钟的信号是如何整合以调控CAB2转录的。这些突变体研究的结果表明,类似的表达特征,即急性和昼夜节律响应,在黄化苗和绿色幼苗中均存在,并且急性和昼夜节律响应在遗传上是可分离的。我们还证明,在红光脉冲处理的黄化苗中存在持续的Pfr信号,这表明生物钟拮抗Pfr介导的信号转导。基于这些遗传学研究,我们提出了一个CAB2转录调控模型,其中单个光感受器和光转导组分已被分配到特定途径,用于调控CAB2表达模式的离散动力学组分。