Zhang Xiangbo, Chen Yanhui, Wang Zhi-Yong, Chen Zhangliang, Gu Hongya, Qu Li-Jia
National Laboratory for Protein Engineering and Plant Genetic Engineering, Peking-Yale Joint Research Center for Plant Molecular Genetics and AgroBiotechnology, College of Life Sciences, Peking University, Beijing 100871, China.
Plant J. 2007 Aug;51(3):512-25. doi: 10.1111/j.1365-313X.2007.03156.x. Epub 2007 Jun 21.
Circadian clocks are endogenous auto-regulatory mechanisms that allow organisms, from bacteria to humans, to advantageously time a wide range of activities within 24 h environmental cycles. Here we report the identification and characterization of an MYB-related gene, designated Circadian 1 (CIR1), that is involved in circadian regulation in Arabidopsis. Expression of CIR1 is transiently induced by light and oscillates with a circadian rhythm. The rhythmic expression of CIR1 is controlled by the central oscillator. Constitutive expression of CIR1 resulted in a shorter period length for the rhythms of four central oscillator components, and much lower amplitude for the rhythms of central oscillator components CCA1 and LHY. Furthermore, CIR1 over-expression severely affected the circadian rhythms of its own RNA and those of the slave oscillator EPR1 and effector genes Lhcb and CAT3. Plants that constitutively expressed CIR1 displayed delayed flowering, longer hypocotyls and reduced seed germination in the dark. These results suggest that CIR1 is possibly part of a regulatory feedback loop that controls a subset of the circadian outputs and modulates the central oscillator.
生物钟是一种内源性自动调节机制,它使从细菌到人类的生物体能够在24小时的环境周期内有效地安排各种活动时间。在此,我们报告了一个与MYB相关的基因的鉴定和特征,该基因命名为生物钟1(CIR1),它参与拟南芥的生物钟调节。CIR1的表达受光短暂诱导,并以昼夜节律振荡。CIR1的节律性表达受中央振荡器控制。CIR1的组成型表达导致四个中央振荡器组件的节律周期缩短,中央振荡器组件CCA1和LHY的节律幅度大大降低。此外,CIR1的过表达严重影响其自身RNA以及从属振荡器EPR1和效应基因Lhcb和CAT3的昼夜节律。组成型表达CIR1的植物在黑暗中表现出开花延迟、下胚轴更长和种子萌发减少。这些结果表明,CIR1可能是控制一部分生物钟输出并调节中央振荡器的调节反馈回路的一部分。