Johansson Mikael, Staiger Dorothee
Molecular Cell Physiology, Faculty for Biology, Bielefeld University, Germany.
Molecular Cell Physiology, Faculty for Biology, Bielefeld University, Germany
J Exp Bot. 2015 Feb;66(3):719-30. doi: 10.1093/jxb/eru441. Epub 2014 Nov 4.
Plants precisely time the onset of flowering to ensure reproductive success. A major factor in seasonal control of flowering time is the photoperiod. The length of the daily light period is measured by the circadian clock in leaves, and a signal is conveyed to the shoot apex to initiate floral transition accordingly. In the last two decades, the molecular players in the photoperiodic pathway have been identified in Arabidopsis thaliana. Moreover, the intricate connections between the circadian clockwork and components of the photoperiodic pathway have been unravelled. In particular, the molecular basis of time-of-day-dependent sensitivity to floral stimuli, as predicted by Bünning and Pittendrigh, has been elucidated. This review covers recent insights into the molecular mechanisms underlying clock regulation of photoperiodic responses and the integration of the photoperiodic pathway into the flowering time network in Arabidopsis. Furthermore, examples of conservation and divergence in photoperiodic flower induction in other plant species are discussed.
植物精确地控制开花时间以确保繁殖成功。光周期是季节性控制开花时间的一个主要因素。叶片中的生物钟会测量每日光照期的长度,并将信号传递到茎尖,从而相应地启动花期转变。在过去二十年中,拟南芥中光周期途径的分子参与者已被确定。此外,生物钟机制与光周期途径各组分之间的复杂联系也已被揭示。特别是,如比宁和皮特恩德里希所预测的,已阐明了对花刺激的日依赖性敏感性的分子基础。本综述涵盖了对拟南芥中光周期反应的生物钟调节以及光周期途径融入开花时间网络的分子机制的最新见解。此外,还讨论了其他植物物种在光周期诱导开花方面的保守性和差异性实例。