首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Measuring the Osmotic Water Permeability Coefficient (Pf) of Spherical Cells: Isolated Plant Protoplasts as an Example
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Measuring the Osmotic Water Permeability Coefficient (Pf) of Spherical Cells: Isolated Plant Protoplasts as an Example

机译:测量球形细胞的渗透水渗透系数(Pf):以分离的植物原生质体为例

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摘要

Studying AQP regulation mechanisms is crucial for the understanding of water relations at both the cellular and the whole plant levels. Presented here is a simple and very efficient method for the determination of the osmotic water permeability coefficient (Pf) in plant protoplasts, applicable in principle also to other spherical cells such as frog oocytes. The first step of the assay is the isolation of protoplasts from the plant tissue of interest by enzymatic digestion into a chamber with an appropriate isotonic solution. The second step consists of an osmotic challenge assay: protoplasts immobilized on the bottom of the chamber are submitted to a constant perfusion starting with an isotonic solution and followed by a hypotonic solution. The cell swelling is video recorded. In the third step, the images are processed offline to yield volume changes, and the time course of the volume changes is correlated with the time course of the change in osmolarity of the chamber perfusion medium, using a curve fitting procedure written in Matlab (the ‘PfFit’), to yield Pf.
机译:研究AQP调节机制对于了解细胞和整个植物的水关系至关重要。本文介绍了一种测定植物原生质体中渗透水渗透系数(Pf)的简单有效的方法,该方法原则上也适用于其他球形细胞,如青蛙卵母细胞。该测定的第一步是通过酶消化用合适的等渗溶液从目的植物组织中分离原生质体。第二步包括渗透攻击试验:将固定在腔室底部的原生质体从等渗溶液开始,然后是低渗溶液,进行恒定灌注。细胞肿胀是视频记录的。在第三步中,将图像离线处理以产生体积变化,并使用Matlab编写的曲线拟合程序将体积变化的时间过程与腔室灌注介质的摩尔渗透压浓度改变的时间过程相关联( 'PfFit'),得到Pf。

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