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拟南芥中控制CAB基因转录的网络中昼夜节律和光转导途径的整合。

Integration of circadian and phototransduction pathways in the network controlling CAB gene transcription in Arabidopsis.

作者信息

Millar A J, Kay S A

机构信息

National Science Foundation Center for Biological Timing, Department of Biology, University of Virginia, Charlottesville 22903, USA.

出版信息

Proc Natl Acad Sci U S A. 1996 Dec 24;93(26):15491-6. doi: 10.1073/pnas.93.26.15491.

Abstract

The transcription of CAB genes, encoding the chlorophyll a/b-binding proteins, is rapidly induced in dark-grown Arabidopsis seedlings following a light pulse. The transient induction is followed by several cycles of a circadian rhythm. Seedlings transferred to continuous light are known to exhibit a robust circadian rhythm of CAB expression. The precise waveform of CAB expression in light-dark cycles, however, reflects a regulatory network that integrates information from photoreceptors, from the circadian clock and possibly from a developmental program. We have used the luciferase reporter system to investigate CAB expression with high time resolution. We demonstrate that CAB expression in light-grown plants exhibits a transient induction following light onset, similar to the response in dark-grown seedlings. The circadian rhythm modulates the magnitude and the kinetics of the response to light, such that the CAB promoter is not light responsive during the subjective night. A signaling pathway from the circadian oscillator must therefore antagonize the phototransduction pathways controlling the CAB promoter. We have further demonstrated that the phase of maximal CAB expression is delayed in light-dark cycles with long photoperiods, due to the entrainment of the circadian oscillator. Under short photoperiods, this pattern of entrainment ensures that dawn coincides with a phase of high light responsiveness, whereas under long photoperiods, the light response at dawn is reduced.

摘要

编码叶绿素a/b结合蛋白的CAB基因的转录,在黑暗中生长的拟南芥幼苗经光脉冲处理后会迅速被诱导。这种短暂的诱导之后会出现几个昼夜节律循环。已知转移到持续光照下的幼苗会表现出CAB表达的稳健昼夜节律。然而,在明暗周期中CAB表达的精确波形反映了一个整合来自光感受器、昼夜节律钟以及可能来自发育程序信息的调控网络。我们使用荧光素酶报告系统以高时间分辨率研究CAB表达。我们证明,光照下生长的植物中CAB的表达在光照开始后会出现短暂诱导,这与黑暗中生长的幼苗的反应类似。昼夜节律调节对光反应的幅度和动力学,使得CAB启动子在主观夜间对光无反应。因此,来自昼夜节律振荡器的信号通路必须拮抗控制CAB启动子的光转导通路。我们进一步证明,由于昼夜节律振荡器的同步,在长光周期的明暗周期中,CAB最大表达的相位会延迟。在短光周期下,这种同步模式确保黎明与高光反应性阶段重合,而在长光周期下,黎明时的光反应会降低。

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