利用DISBAC2(3)荧光测定拟南芥原根的相对膜电位

Shiv Mani Dubey, Matyáš Fendrych, Nelson Bc Serre
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引用次数: 0

摘要

植物体内显微镜与高频成像允许观察和表征植物对刺激的动态反应。它提供了在给定时间点无法通过成像观察到的反应。这种方法特别适合于观察快速的细胞事件,如膜电位变化。经典的膜电位测量探针刺穿给出定量和精确的测量。然而,它是侵入性的,需要专门的设备,并且一次只能测量一个细胞。为了规避这些限制,我们开发了一种方法,利用电压报告基因DISBAC2的荧光来相对量化拟南芥根的膜电位变化(3)。在本方案中,我们描述了如何准备琼脂培养基和微流体实验,并详细介绍了图像分析。我们以植物激素生长素诱导的质膜快速去极化为例来说明该方法。使用DISBAC2(3)荧光测量相对膜电位增加了测量的时空分辨率,并且是非侵入性的,适合于生长根的实时成像。利用更灵活的方法研究膜电位可以有效地将成熟的电生理学文献和新的分子知识结合起来,从而更好地理解植物的行为。非侵入性方法相对定量植物根系膜电位。方法适用于在琼脂或液体培养基中成像幼苗根。简单的量化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Relative Membrane Potential Measurements Using DISBAC2(3) Fluorescence in Arabidopsis thaliana Primary Roots.

In vivo microscopy of plants with high-frequency imaging allows observation and characterization of the dynamic responses of plants to stimuli. It provides access to responses that could not be observed by imaging at a given time point. Such methods are particularly suitable for the observation of fast cellular events such as membrane potential changes. Classical measurement of membrane potential by probe impaling gives quantitative and precise measurements. However, it is invasive, requires specialized equipment, and only allows measurement of one cell at a time. To circumvent some of these limitations, we developed a method to relatively quantify membrane potential variations in Arabidopsis thaliana roots using the fluorescence of the voltage reporter DISBAC2(3). In this protocol, we describe how to prepare experiments for agar media and microfluidics, and we detail the image analysis. We take an example of the rapid plasma membrane depolarization induced by the phytohormone auxin to illustrate the method. Relative membrane potential measurements using DISBAC2(3) fluorescence increase the spatio-temporal resolution of the measurements and are non-invasive and suitable for live imaging of growing roots. Studying membrane potential with a more flexible method allows to efficiently combine mature electrophysiology literature and new molecular knowledge to achieve a better understanding of plant behaviors. Key features Non-invasive method to relatively quantify membrane potential in plant roots. Method suitable for imaging seedlings root in agar or liquid medium. Straightforward quantification.

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