Department of Plant and Microbial Biology, University of Minnesota, St. Paul, Minnesota 55108, USA.
Plant Physiol. 2022 Sep 28;190(2):968-980. doi: 10.1093/plphys/kiac337.
The plant circadian clock coordinates developmental, physiological, and metabolic processes with diel changes in light and temperature throughout the year. The balance between the persistence and plasticity of the clock in response to predictable and unpredictable environmental changes may be key to the clock's adaptive nature across temporal and spatial scales. Studies under controlled conditions have uncovered critical signaling pathways involved in light and temperature perception by the clock; however, they don't account for the natural lag of temperature behind photoperiod. Studies in natural environments provide key insights into the clock's adaptive advantage under more complex natural settings. Here, we discuss the role of the circadian clock in light and temperature perception and signaling, how the clock integrates these signals for a coordinated and adaptive response, and the adaptive advantage conferred by the clock across time and space in natural environments.
植物生物钟全年通过光和温度的昼夜变化来协调发育、生理和代谢过程。生物钟对可预测和不可预测的环境变化的持久性和可塑性之间的平衡,可能是生物钟在时间和空间尺度上具有适应性的关键。在受控条件下进行的研究揭示了生物钟参与光和温度感知的关键信号通路;然而,它们并没有考虑到温度相对于光周期的自然滞后。在自然环境中的研究为生物钟在更复杂的自然环境下的适应性优势提供了关键的见解。在这里,我们讨论了生物钟在光和温度感知和信号转导中的作用,生物钟如何整合这些信号以做出协调和适应性的反应,以及生物钟在自然环境中跨越时间和空间带来的适应性优势。