Fundación Instituto Leloir, Instituto de Investigaciones Bioquímicas de Buenos Aires-Consejo Nacional de Investigaciones Científicas y Técnicas de Argentina, Av. Patricias Argentinas 435, C1405BWE Ciudad de Buenos Aires, Argentina.
Biochim Biophys Acta Gene Regul Mech. 2017 Jan;1860(1):84-94. doi: 10.1016/j.bbagrm.2016.07.001. Epub 2016 Jul 10.
The circadian clock drives rhythms in multiple physiological processes allowing plants to anticipate and adjust to periodic changes in environmental conditions. These physiological rhythms are associated with robust oscillations in the expression of thousands of genes linked to the control of photosynthesis, cell elongation, biotic and abiotic stress responses, developmental processes such as flowering, and the clock itself. Given its pervasive effects on plant physiology, it is not surprising that circadian clock genes have played an important role in the domestication of crop plants and in the improvement of crop productivity. Therefore, identifying the principles governing the dynamics of the circadian gene regulatory network in plants could strongly contribute to further speed up crop improvement. Here we provide an historical as well as a current description of our knowledge of the molecular mechanisms underlying circadian rhythms in plants. This work focuses on the transcriptional and post-transcriptional regulatory layers that control the very core of the circadian clock, and some of its complex interactions with signaling pathways that help synchronize plant growth and development to daily and seasonal changes in the environment. This article is part of a Special Issue entitled: Plant Gene Regulatory Mechanisms and Networks, edited by Dr. Erich Grotewold and Dr. Nathan Springer.
生物钟驱动着多种生理过程的节律,使植物能够预测和适应环境条件的周期性变化。这些生理节律与光合作用、细胞伸长、生物和非生物胁迫反应、开花等发育过程以及生物钟本身相关的数千个基因的表达中强大的波动有关。鉴于其对植物生理学的广泛影响,生物钟基因在作物的驯化和提高作物生产力方面发挥了重要作用也就不足为奇了。因此,确定控制植物生物钟基因调控网络动态的原则可能会极大地促进作物改良的进一步提速。在这里,我们提供了对植物生物钟节律分子机制的历史和当前描述。这项工作侧重于转录和转录后调控层,这些调控层控制生物钟的核心,以及它与信号通路的一些复杂相互作用,这些信号通路有助于使植物的生长和发育与环境中的日常和季节性变化同步。本文是由 Erich Grotewold 博士和 Nathan Springer 博士编辑的特刊“植物基因调控机制和网络”的一部分。