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Patch Clamp Studies on Root Cell Vacuoles of a Salt-Tolerant and a Salt-Sensitive Plantago Species

机译:耐盐和对盐敏感的车前草属植物根细胞液泡的膜片钳研究

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摘要

Plantago media L. and Plantago maritima L. differ in their strategy toward salt stress, a major difference being the uptake and distribution of ions. Patch clamp techniques were applied to root cell vacuoles to study the tonoplast channel characteristics. In both species the major channel found was a 60 to 70 picosiemens channel with a low ion selectivity. The conductance of this channel for Na+ was the same as for K+, PK+/PNa+ = 1, whereas the cation/anion selectivity (PK+/Pc1) was about 5. Gating characteristics were voltage and calcium dependent. An additional smaller channel of 25 picosiemens was present in P. maritima. In the whole vacuole configuration, the summation of the single channel currents resulted in slowly activated inward currents (t½ = 1.2 second). Inwardly directed, ATP-dependent currents could be measured against a ΔpH gradient of 1.5 units over the tonoplast. This observation strongly indicated the physiological intactness of the used vacuoles. The open probability of the tonoplast channels dramatically decreased when plants were grown on NaCl, although single channel conductance and selectivity were not altered.
机译:车前草属植物和车前草属植物对盐胁迫的策略不同,主要区别在于离子的吸收和分布。膜片钳技术应用于根细胞液泡,以研究液泡膜通道特性。在这两个物种中,发现的主要通道是60至70微微西门子通道,且离子选择性低。 Na + 的此通道的电导与K + 的相同,PK + / PNa + =如图1所示,而阳离子/阴离子选择性(PK + / Pc1 -)约为5。门控特性取决于电压和钙。滨海假单胞菌中还存在一个较小的25微微西门子的通道。在整个液泡结构中,单通道电流的总和导致缓慢激活的向内电流(t 1/2 = 1.2秒)。向内定向,可以在液泡膜上相对于1.5个单位的ΔpH梯度测量ATP依赖性电流。该观察结果强烈表明所用液泡的生理完整性。当植物在NaCl上生长时,液泡膜通道的开放概率大大降低,尽管单通道电导率和选择性没有改变。

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