Hotta Carlos T, Gardner Michael J, Hubbard Katharine E, Baek Seong Jin, Dalchau Neil, Suhita Dontamala, Dodd Antony N, Webb Alex A R
Department of Plant Sciences, University of Cambridge, Downing Street, Cambridge, CB2 3EA, UK.
Plant Cell Environ. 2007 Mar;30(3):333-349. doi: 10.1111/j.1365-3040.2006.01627.x.
Circadian clocks are signalling networks that enhance an organism's relationship with the rhythmic environment. The plant circadian clock modulates a wide range of physiological and biochemical events, such as stomatal and organ movements, photosynthesis and induction of flowering. Environmental signals regulate the phase and period of the plant circadian clock, which results in an approximate synchronization of clock outputs with external events. One of the consequences of circadian control is that stimuli of the same strength applied at different times of the day can result in responses of different intensities. This is known as 'gating'. Gating of a signal may allow plants to better process and react to the wide range and intensities of environmental signals to which they are constantly subjected. Light signalling, stomatal movements and low-temperature responses are examples of signalling pathways that are gated by the circadian clock. In this review, we describe the many levels at which the circadian clock interacts with responses to the environment. We discuss how environmental rhythms of temperature and light intensity entrain the circadian clock, how photoperiodism may be regulated by the relationship between environmental rhythms and the phasing of clock outputs, and how gating modulates the sensitivity of the clock and other responses to environmental and physiological signals. Finally, we describe evidence that the circadian clock can increase plant fitness.
生物钟是增强生物体与节律性环境关系的信号网络。植物生物钟调节广泛的生理和生化事件,如气孔和器官运动、光合作用以及开花诱导。环境信号调节植物生物钟的相位和周期,从而使生物钟输出与外部事件大致同步。昼夜节律控制的一个结果是,在一天的不同时间施加相同强度的刺激可能会导致不同强度的反应。这被称为 “门控”。信号的门控可能使植物更好地处理和应对它们不断受到的各种环境信号及其强度。光信号传导、气孔运动和低温反应是受生物钟门控的信号通路的例子。在这篇综述中,我们描述了生物钟与环境反应相互作用的多个层面。我们讨论温度和光照强度的环境节律如何校准生物钟,光周期现象如何由环境节律与生物钟输出相位之间的关系来调节,以及门控如何调节生物钟和其他对环境及生理信号反应的敏感性。最后,我们描述了生物钟可以提高植物适应性的证据。