Yakir Esther, Hilman Dror, Harir Yael, Green Rachel M
Department of Plant Sciences and the Environment, Institute for Life Sciences, Hebrew University, Jerusalem, Israel.
FEBS J. 2007 Jan;274(2):335-45. doi: 10.1111/j.1742-4658.2006.05616.x.
Plants, like many other organisms, have endogenous biological clocks that enable them to organize their physiological, metabolic and developmental processes so that they occur at optimal times. The best studied of these biological clocks are the circadian systems that regulate daily (approximately 24 h) rhythms. At the core of the circadian system in every organism are oscillators responsible for generating circadian rhythms. These oscillators can be entrained (set) by cues from the environment, such as daily changes in light and temperature. Completing the circadian clock model are the output pathways that provide a link between the oscillator and the various biological processes whose rhythms it controls. Over the past few years there has been a tremendous increase in our understanding of the mechanisms of the oscillator and entrainment pathways in plants and many useful reviews on the subject. In this review we focus on the output pathways by which the oscillator regulates rhythmic plant processes. In the first part of the review we describe the role of the circadian system in regulation at all stages of a plant's development, from germination and growth to reproductive development as well as in multiple cellular processes. Indeed, the importance of a circadian clock for plants can be gauged by the fact that so many facets of plant development are under its control. In the second part of the review we describe what is known about the mechanisms by which the circadian system regulates these output processes.
与许多其他生物一样,植物具有内源性生物钟,使它们能够组织其生理、代谢和发育过程,从而在最佳时间发生。这些生物钟中研究得最透彻的是调节每日(约24小时)节律的昼夜节律系统。每个生物体的昼夜节律系统的核心是负责产生昼夜节律的振荡器。这些振荡器可以被来自环境的线索(如光照和温度的每日变化)所调节(设定)。昼夜节律时钟模型的最后一部分是输出途径,它在振荡器和它所控制的各种节律性生物过程之间提供联系。在过去几年里,我们对植物中振荡器和调节途径机制的理解有了极大的提高,并且有许多关于这个主题的有用综述。在本综述中,我们关注振荡器调节植物节律性过程的输出途径。在综述的第一部分,我们描述了昼夜节律系统在植物从发芽、生长到生殖发育的所有发育阶段以及多个细胞过程中的调节作用。事实上,昼夜节律时钟对植物的重要性可以从植物发育的诸多方面都受其控制这一事实来衡量。在综述的第二部分,我们描述了关于昼夜节律系统调节这些输出过程的机制的已知情况。