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首页> 外文期刊>Frontiers in Plant Science >Photosynthetic Entrainment of the Circadian Clock Facilitates Plant Growth under Environmental Fluctuations: Perspectives from an Integrated Model of Phase Oscillator and Phloem Transportation
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Photosynthetic Entrainment of the Circadian Clock Facilitates Plant Growth under Environmental Fluctuations: Perspectives from an Integrated Model of Phase Oscillator and Phloem Transportation

机译:昼夜节律时钟的光合作用促进植物生长在环境波动下:相位振荡器和韧皮部运输的集成模型的观点。

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摘要

Plants need to avoid carbon starvation and resultant growth inhibition under fluctuating light environments to ensure optimal growth and reproduction. As diel patterns of carbon metabolism are influenced by the circadian clock, appropriate regulation of the clock is essential for plants to properly manage their carbon resources. For proper adjustment of the circadian phase, higher plants utilize environmental signals such as light or temperature and metabolic signals such as photosynthetic products; the importance of the latter as phase regulators has been recently elucidated. A mutant of Arabidopsis thaliana that is deficient in phase response to sugar has been shown, under fluctuating light conditions, to be unable to adjust starch turnover and to realize carbon homeostasis. Whereas, the effects of light entrainment on growth and survival of higher plants are well studied, the impact of phase regulation by sugar remains unknown. Here we show that endogenous sugar entrainment facilitates plant growth. We integrated two mathematical models, one describing the dynamics of carbon metabolism in A. thaliana source leaves and the other growth of sink tissues dependent on sucrose translocation from the source. The integrated model predicted that sugar-sensitive plants grow faster than sugar-insensitive plants under constant as well as changing photoperiod conditions. We found that sugar entrainment enables efficient carbon investment for growth by stabilizing sucrose supply to sink tissues. Our results highlight the importance of clock entrainment by both exogenous and endogenous signals for optimizing growth and increasing fitness.
机译:植物需要在波动的光照环境下避免碳饥饿和由此产生的生长抑制,以确保最佳的生长和繁殖。由于昼夜节律时钟会影响碳代谢的diel模式,因此适当调节时钟对植物正确管理其碳资源至关重要。为了适当调整昼夜节律,高等植物利用环境信号(例如光或温度)和代谢信号(例如光合产物);最近已经阐明了后者作为相位调节器的重要性。已经显示,在波动的光照条件下,对糖的相位响应不足的拟南芥突变体不能调节淀粉的转化并不能实现碳稳态。尽管对光的夹带对高等植物生长和存活的影响进行了很好的研究,但糖的相位调节的影响仍然未知。在这里,我们表明内源糖夹带促进植物生长。我们集成了两个数学模型,一个描述了拟南芥来源叶片中碳代谢的动力学,另一个描述了取决于来源中蔗糖易位的水槽组织的生长。集成模型预测,在恒定以及变化的光周期条件下,对糖敏感的植物比对糖不敏感的植物生长更快。我们发现,糖的夹带通过稳定蔗糖供应到下沉的组织而使有效的碳投资得以增长。我们的结果强调了通过外源和内源信号进行时钟夹带对于优化生长和提高适应性的重要性。

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