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The circadian oscillator gene GIGANTEA mediates a long-term response of the Arabidopsis thaliana circadian clock to sucrose

机译:昼夜节律振荡器基因GIGANTEA介导拟南芥昼夜节律时钟对蔗糖的长期响应

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摘要

Circadian clocks are 24-h timing devices that phase cellular responses; coordinate growth, physiology, and metabolism; and anticipate the day–night cycle. Here we report sensitivity of the Arabidopsis thaliana circadian oscillator to sucrose, providing evidence that plant metabolism can regulate circadian function. We found that the Arabidopsis circadian system is particularly sensitive to sucrose in the dark. These data suggest that there is a feedback between the molecular components that comprise the circadian oscillator and plant metabolism, with the circadian clock both regulating and being regulated by metabolism. We used also simulations within a three-loop mathematical model of the Arabidopsis circadian oscillator to identify components of the circadian clock sensitive to sucrose. The mathematical studies identified GIGANTEA (GI) as being associated with sucrose sensing. Experimental validation of this prediction demonstrated that GI is required for the full response of the circadian clock to sucrose. We demonstrate that GI acts as part of the sucrose-signaling network and propose this role permits metabolic input into circadian timing in Arabidopsis.
机译:昼夜节律时钟是对细胞反应进行相位调节的24小时计时设备。协调生长,生理和新陈代谢;并预测昼夜周期。在这里,我们报告拟南芥拟南芥昼夜节律振荡器对蔗糖的敏感性,提供证据表明植物代谢可以调节昼夜节律功能。我们发现拟南芥的昼夜节律系统对黑暗中的蔗糖特别敏感。这些数据表明,构成昼夜节律的分子成分与植物新陈代谢之间存在反馈,其中昼夜节律既调节又受新陈代谢调节。我们还在拟南芥生物钟振荡器的三回路数学模型中使用了模拟,以识别对蔗糖敏感的生物钟的组成部分。数学研究确定GIGANTEA(GI)与蔗糖感测有关。该预测的实验验证表明,对于昼夜节律时钟对蔗糖的完全反应,需要胃肠道。我们证明了胃肠道作为蔗糖信号网络的一部分,并提议这一作用允许代谢输入拟南芥中的昼夜节律。

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