Institute of Plant Biology, BRC-Biological Research Centre, Szeged, Hungary.
Institute of Biochemistry, BRC-Biological Research Centre, Szeged, Hungary.
Sci Rep. 2023 Jan 23;13(1):1241. doi: 10.1038/s41598-022-27287-4.
Organisms have evolved a circadian clock for the precise timing of their biological processes. Studies primarily on model dicots have shown the complexity of the inner timekeeper responsible for maintaining circadian oscillation in plants and have highlighted that circadian regulation is more than relevant to a wide range of biological processes, especially organ development and timing of flowering. Contribution of the circadian clock to overall plant fitness and yield has also long been known. Nevertheless, the organ- and species-specific functions of the circadian clock and its relation to stress adaptation have only recently been identified. Here we report transcriptional changes of core clock genes of the model monocot Brachypodium distachyon under three different light regimes (18:6 light:dark, 24:0 light and 0:24 dark) in response to mild drought stress in roots and green plant parts. Comparative monitoring of core clock gene expression in roots and green plant parts has shown that both phase and amplitude of expression in the roots of Brachypodium plants differ markedly from those in the green plant parts, even under well-watered conditions. Moreover, circadian clock genes responded to water depletion differently in root and shoot. These results suggest an organ-specific form and functions of the circadian clock in Brachypodium roots.
生物已经进化出一个生物钟,用于精确计时其生物过程。主要针对模式双子叶植物的研究表明,负责维持植物昼夜节律振荡的内部定时机制非常复杂,并强调昼夜节律调节与广泛的生物过程有关,尤其是器官发育和开花时间。生物钟对植物整体适应性和产量的贡献也早已为人所知。然而,生物钟在器官和物种特异性方面的功能及其与应激适应的关系直到最近才被确定。在这里,我们报告了模式单子叶植物短柄草在三种不同光照条件(18:6 光照:黑暗、24:0 光照和 0:24 黑暗)下核心生物钟基因的转录变化,以响应根系和绿色植物部分的轻度干旱胁迫。对短柄草根和绿色植物部分核心生物钟基因表达的比较监测表明,即使在充分供水的条件下,短柄草根中的生物钟基因表达的相位和幅度与绿色植物部分的差异非常显著。此外,昼夜节律钟基因在根和芽中对水分亏缺的反应不同。这些结果表明,生物钟在短柄草根中具有特定的形式和功能。