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首页> 外文期刊>Journal of biological rhythms >Phase Response of the Arabidopsis thaliana Circadian Clock to Light Pulses of Different Wavelengths
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Phase Response of the Arabidopsis thaliana Circadian Clock to Light Pulses of Different Wavelengths

机译:拟南芥生物钟对不同波长光脉冲的相位响应

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摘要

Light is known as one of the most powerful environmental time cues for the circadian system. The quality of light is characterized by its intensity and wavelength. We examined how the phase response of Arabidopsis thaliana depends on the wavelength of the stimulus light and the type of light perturbation. Using transgenic A. thaliana expressing a luciferase gene, we monitored the rhythm of the bioluminescence signal. We stimulated the plants under constant red light using 3 light perturbation treatments: (1) increasing the red light intensity, (2) turning on a blue light while turning off the red light, and (3) turning on a blue light while keeping the red light on. To examine the phase response properties, we generated a phase transition curve (PTC), which plots the phase after the perturbation as a function of the phase before the perturbation. To evaluate the effect of the 3 light perturbation treatments, we simulated PTCs using a mathematical model of the plant circadian clock and fitted the simulated PTCs to the experimentally measured PTCs. Among the 3 treatments, perturbation (3) provided the strongest stimulus. The results indicate that the color of the stimulus light and the type of pulse administration affect the phase response in a complex manner. Moreover, the results suggest the involvement of interaction between red and blue light signaling pathways in resetting of the plant circadian clock.
机译:光是昼夜节律系统最强大的环境时间线索之一。光的质量以强度和波长为特征。我们研究了拟南芥的相位响应如何取决于刺激光的波长和光扰动的类型。使用表达荧光素酶基因的转基因拟南芥,我们监测了生物发光信号的节奏。我们使用3种光扰动处理在恒定的红光下刺激植物:(1)增加红光强度,(2)在关闭红光的同时打开蓝光,和(3)在保持红光的同时打开蓝光红灯亮。为了检查相位响应特性,我们生成了相变曲线(PTC),该曲线绘制了摄动后的相位与摄动前的相位的关系。为了评估3种光扰动处理的效果,我们使用植物生物钟的数学模型对PTC进行了仿真,并将仿真的PTC拟合到实验测量的PTC。在3种治疗方法中,摄动(3)提供了最强的刺激。结果表明,刺激光的颜色和脉冲施加的类型以复杂的方式影响相位响应。此外,结果表明红色和蓝色光信号传导途径之间的相互作用涉及植物生物钟的复位。

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