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生长中植物的离子频率图谱

Ion Frequency Landscape in Growing Plants.

作者信息

Pietruszka Mariusz, Haduch-Sendecka Aleksandra

机构信息

Department of Plant Physiology, Faculty of Biology and Environment Protection, University of Silesia, Katowice, Poland.

出版信息

PLoS One. 2015 Oct 7;10(10):e0138839. doi: 10.1371/journal.pone.0138839. eCollection 2015.

Abstract

It has been interesting that nearly all of the ion activities that have been analysed thus far have exhibited oscillations that are tightly coupled to growth. Here, we present discrete Fourier transform (DFT) spectra with a finite sampling of tip-growing cells and organs that were obtained from voltage measurements of the elongating coleoptiles of maize in situ. The electromotive force (EMF) oscillations (~ 0.1 μV) were measured in a simple but highly sensitive resistor-inductor circuit (RL circuit), in which the solenoid was initially placed at the tip of the specimen and then was moved thus changing its position in relation to growth (EMF can be measured first at the tip, then at the sub-apical part and finally at the shank). The influx- and efflux-induced oscillations of Ca2+, along with H+, K+ and Cl- were densely sampled (preserving the Nyquist theorem in order to 'grasp the structure' of the pulse), the logarithmic amplitude of pulse spectrum was calculated, and the detected frequencies, which displayed a periodic sequence of pulses, were compared with the literature data. A band of life vital individual pulses was obtained in a single run of the experiment, which not only allowed the fundamental frequencies (and intensities of the processes) to be determined but also permitted the phase relations of the various transport processes in the plasma membrane and tonoplast to be established. A discrete (quantised) frequency spectrum was achieved for a growing plant for the first time, while all of the metabolic and enzymatic functions of the life cell cycle were preserved using this totally non-invasive treatment.

摘要

有趣的是,迄今为止分析的几乎所有离子活性都表现出与生长紧密耦合的振荡。在这里,我们展示了从原位测量玉米伸长胚芽鞘的电压获得的、对顶端生长细胞和器官进行有限采样的离散傅里叶变换(DFT)光谱。在一个简单但高度灵敏的电阻 - 电感电路(RL电路)中测量了电动势(EMF)振荡(约0.1 μV),其中螺线管最初放置在标本顶端,然后移动,从而改变其相对于生长的位置(EMF可以先在顶端测量,然后在亚顶端部分测量,最后在茎部测量)。对Ca2+以及H+、K+和Cl-的流入和流出诱导的振荡进行了密集采样(遵循奈奎斯特定理以“捕捉”脉冲的结构),计算了脉冲频谱的对数幅度,并将显示出周期性脉冲序列的检测频率与文献数据进行了比较。在单次实验运行中获得了一系列生命重要的单个脉冲,这不仅能够确定基频(以及过程的强度),还能确定质膜和液泡膜中各种运输过程的相位关系。首次为生长中的植物获得了离散(量化)频谱,同时使用这种完全非侵入性的处理方法保留了生命细胞周期的所有代谢和酶促功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e539/4596807/ad2eed332508/pone.0138839.g001.jpg

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