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拟南芥完整保卫细胞中慢阴离子电流的药理学特性。将不连续单电极电压钳应用于不同物种。

Pharmacological properties of slow anion currents in intact guard cells of Arabidopsis. Application of the discontinuous single-electrode voltage-clamp to different species.

作者信息

Forestier C, Bouteau F, Leonhardt N, Vavasseur A

机构信息

CEA Cadarache, DSV-DEVM, Laboratoire de Bioénergétique Cellulaire, BP1, F-13108, St Paul-lez-Durance, Cedex France.

出版信息

Pflugers Arch. 1998 Nov;436(6):920-7. doi: 10.1007/s004240050724.

Abstract

More electrophysiological studies have been carried out on guard cells than on any other cell type of vascular plants. The characterization of their ion channels has been achieved using mainly the whole-cell patch-clamp technique applied to guard-cell protoplasts. The aim of this study was to obtain recordings of ion channel currents in intact guard cells and especially of slow anion channels of Arabidopsis thaliana, a species of fundamental genetic interest. Application of the discontinuous single-electrode voltage-clamp technique enabled the first characterization of K+ currents in Commelina communis and of slow anion currents in C. communis and A. thaliana in intact guard cells to be made. Inward K+ channels from A. thaliana were inhibited by external application of tetraethylammonium (TEA) or Ca2+. In the presence of K+ channel blockers, slow anion channel currents were elicited in almost all guard cells tested and were confirmed by the application of anion channel blockers. In A. thaliana, only anthracene-9 carboxylic acid was able to inhibit slow anion currents, to promote stomatal opening in the dark and to reverse the effect of 25 microM abscisic acid under light. Use of a single microelectrode and preservation of cell integrity make this technique well suited for the study of ion channel regulation in species that have guard cell protoplasts with which it is difficult to form good seals.

摘要

对保卫细胞进行的电生理研究比对维管植物的任何其他细胞类型都要多。其离子通道的表征主要是通过应用于保卫细胞原生质体的全细胞膜片钳技术实现的。本研究的目的是获取完整保卫细胞中离子通道电流的记录,特别是具有重要遗传意义的拟南芥慢阴离子通道的记录。应用不连续单电极电压钳技术首次对鸭跖草完整保卫细胞中的钾离子电流以及鸭跖草和拟南芥中的慢阴离子电流进行了表征。拟南芥的内向钾离子通道可被外部施加的四乙铵(TEA)或钙离子抑制。在存在钾离子通道阻滞剂的情况下,几乎所有测试的保卫细胞中都能诱发出慢阴离子通道电流,并通过应用阴离子通道阻滞剂得到证实。在拟南芥中,只有蒽-9-羧酸能够抑制慢阴离子电流,促进黑暗中的气孔开放,并在光照下逆转25微摩尔脱落酸的作用。使用单个微电极并保持细胞完整性使得该技术非常适合研究那些难以与保卫细胞原生质体形成良好封接的物种中的离子通道调节。

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