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一种用于植物细胞内测量的改进型钠选择性微电极。

An improved Na+-selective microelectrode for intracellular measurements in plant cells.

作者信息

Carden D E, Diamond D, Miller A J

机构信息

Biochemistry and Physiology Department, IACR-Rothamsted, Harpenden, Hertfordshire, UK.

出版信息

J Exp Bot. 2001 Jun;52(359):1353-9.

Abstract

The high background K+ concentration in plant cells is a problem for intracellular measurements of Na+ using ion-selective microelectrodes. The discrimination between Na+ and K+ of the microelectrode ionophore molecule limits the usefulness of this technique. A new Na+-selective microelectrode with an ionophore incorporating a tetramethoxyethyl ester derivative of p-t-butyl calix[4]arene has been developed. Microelectrodes made with this new sensor have superior selectivity for Na+ over K+ resulting in a lower limit of detection when compared with microelectrodes made using a commercially available ionophore (ETH227). Both types of microelectrodes were insensitive to changes in ionic strength and physiological ranges of pH, but only the calixarene-based electrodes showed no protein interference. To test the suitability of the calixarene-based microelectrodes for measurements in plants, they were used to measure Na+ in epidermal cells in the zone 10-20 mm from the root apex of barley (Hordeum vulgare L.). Seedlings were grown in a nutrient solution containing 200 mM NaCl for 1-6 d. The range of intracellular Na+ activity (a(Na)) measured varied from < or =0.1 mM (limit of detection) to over 100 mM, and these values increased significantly with time. The membrane potential (E(m)) of these cells was variable, but the values became significantly more negative with time, although there was no significant correlation between E(m) and a(Na). These intracellular measurements could not be separated into distinct populations that might be representative of subcellular compartments.

摘要

植物细胞中高背景钾离子浓度对于使用离子选择性微电极进行细胞内钠离子测量来说是个问题。微电极离子载体分子对钠离子和钾离子的区分能力限制了这项技术的实用性。一种新型的钠离子选择性微电极已经研发出来,其离子载体包含对叔丁基杯[4]芳烃的四甲氧基乙酯衍生物。用这种新型传感器制作的微电极对钠离子的选择性优于钾离子,与使用市售离子载体(ETH227)制作的微电极相比,检测下限更低。这两种类型的微电极对离子强度和生理pH范围的变化均不敏感,但只有基于杯芳烃的电极未表现出蛋白质干扰。为了测试基于杯芳烃的微电极在植物测量中的适用性,将其用于测量大麦(Hordeum vulgare L.)根尖10 - 20毫米区域表皮细胞中的钠离子。幼苗在含有200 mM氯化钠的营养液中培养1 - 6天。测量的细胞内钠离子活性(a(Na))范围从≤0.1 mM(检测下限)到超过100 mM,并且这些值随时间显著增加。这些细胞的膜电位(E(m))是可变的,但随着时间推移其值变得显著更负,尽管E(m)与a(Na)之间没有显著相关性。这些细胞内测量结果无法分为可能代表亚细胞区室的不同群体。

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