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Mechanical and electrical anisotropy in Mimosa pudica pulvini

机译:Mimosa pudica平台中的机电各向异性

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摘要

Thigmonastic or seismonastic movements in Mimosa pudica, such as the response to touch, appear to be regulated by electrical, hydrodynamical and chemical signal transduction. The pulvinus of Mimosa pudica shows elastic properties, and we found that electrically or mechanically induced movements of the petiole were accompanied by a change of the pulvinus shape. As the petiole falls, the volume of the lower part of the pulvinus decreases and the volume of the upper part increases due to the redistribution of water between the upper and lower parts of the pulvinus. This hydroelastic process is reversible. During the relaxation of the petiole, the volume of the lower part of the pulvinus increases and the volume of the upper part decreases. Redistribution of ions between the upper and lower parts of a pulvinus causes fast transport of water through aquaporins and causes a fast change in the volume of the motor cells. Here, the biologically closed electrochemical circuits in electrically and mechanically anisotropic pulvini of Mimosa pudica are analyzed using the charged capacitor method for electrostimulation at different voltages. Changing the polarity of electrodes leads to a strong rectification effect in a pulvinus and to different kinetics of a capacitor discharge if the applied initial voltage is 0.5 V or higher. The electrical properties of Mimosa pudica's pulvini were investigated and the equivalent electrical circuit within the pulvinus was proposed to explain the experimental data. The detailed mechanism of seismonastic movements in Mimosa pudica is discussed.
机译:含羞草的触觉或震颤运动,例如对触摸的反应,似乎受到电,流体动力学和化学信号转导的调节。含羞草的果皮具有弹性,我们发现叶柄的电或机械诱导运动伴随着果皮形状的变化。当叶柄掉落时,由于水在上部和下部之间的重新分布,所以下部的体积减小,上部的体积增大。这种水弹性过程是可逆的。在叶柄松弛期间,肺下部的体积增大,而上部的体积减小。离子在肺泡上部和下部之间的重新分布会导致水快速通过水通道蛋白传输,并导致运动细胞体积快速变化。在此,使用带电电容器法在不同电压下电刺激含羞草的电和机械各向异性藻中的生物闭合电化学回路。如果施加的初始电压为0.5 V或更高,则改变电极的极性会在肺部产生强烈的整流作用,并导致电容器放电的动力学不同。研究了含羞草的电特性,并提出了其内部的等效电路来解释实验数据。讨论了含羞草地震活动的详细机制。

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