Plant Development Group - Institute for Plant Biochemistry and Photosynthesis, Consejo Superior de Investigaciones Científicas, Universidad de Sevilla, 41092 Seville, Spain.
Department of Plant Biochemistry and Molecular Biology, Universidad de Sevilla, 41012 Seville, Spain.
Plant Cell. 2024 May 29;36(6):2086-2102. doi: 10.1093/plcell/koae090.
How does a plant detect the changing seasons and make important developmental decisions accordingly? How do they incorporate daylength information into their routine physiological processes? Photoperiodism, or the capacity to measure the daylength, is a crucial aspect of plant development that helps plants determine the best time of the year to make vital decisions, such as flowering. The protein CONSTANS (CO) constitutes the central regulator of this sensing mechanism, not only activating florigen production in the leaves but also participating in many physiological aspects in which seasonality is important. Recent discoveries place CO in the center of a gene network that can determine the length of the day and confer seasonal input to aspects of plant development and physiology as important as senescence, seed size, or circadian rhythms. In this review, we discuss the importance of CO protein structure, function, and evolutionary mechanisms that embryophytes have developed to incorporate annual information into their physiology.
植物如何感知季节变化并据此做出重要的发育决策?它们如何将日照长度信息纳入其常规生理过程?光周期现象,即衡量日照长度的能力,是植物发育的一个关键方面,它帮助植物确定一年中最佳的时间来做出重要决策,例如开花。CONSTANS(CO)蛋白构成了这种感应机制的中央调节剂,不仅激活叶片中花生成的产生,还参与许多生理方面,其中季节性很重要。最近的发现将 CO 置于一个基因网络的中心,该网络可以确定一天的长度,并将季节性输入赋予植物发育和生理的各个方面,如衰老、种子大小或昼夜节律。在这篇综述中,我们讨论了 CO 蛋白结构、功能和进化机制的重要性,这些机制使植物能够将年度信息纳入其生理过程中。