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Time Sensors: Circadian Rhythms in Biologically Closed Electrochemical Circuits of Plants

机译:时间传感器:植物生物封闭电化学电路中的昼夜节律

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The circadian clock regulates a wide range of electrophysiological and developmental processes in plants. Here, we discuss the direct influence of a circadian clock on biologically closed electrochemical circuits in vivo. These circuits in the leaves of C. miniata (Kaffir lily), Aloe vera and Mimosa pudica, which regulate their physiology, were analyzed using the charge stimulation method. The electrostimulation was provided with different voltages and electrical charges. Phytosensors memorize daytime and nighttime. Even at continuous light or darkness, plants recognize nighttime or daytime and change the electrical input resistance. The circadian clock can be maintained endogenously and has electrochemical oscillators, which can activate voltage gated ion channels in biologically closed electrochemical circuits. The activation of voltage-gated channels depends on the applied voltage, electrical charge, and the speed of transmission of electrical energy from the electrostimulator to plants.
机译:昼夜节奏调节植物中的各种电生理和发育过程。在这里,我们讨论了昼夜节拍对体内生物封闭电化学电路的直接影响。使用电荷刺激方法分析了调节其生理学的C. miniata(Kaffir Lily),芦荟维拉和含羞草pudica的这些电路。电刺激提供不同的电压和电荷。植物传感器记住白天和夜间。即使在连续光或黑暗中,植物也识别夜间或白天,并改变电输入电阻。昼夜节点可以内源地保持并且具有电化学振荡器,其可以激活生物封闭的电化学电路中的电压门控离子通道。电压门控通道的激活取决于施加的电压,电荷和从电刺激器到植物的电能传递速度。

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