Electrochemical potential gradients of H+, K+, Ca2+, and Cl- across the tonoplast of the green alga Eremosphaera viridis

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Abstract

Using ion-selective microelectrodes, we measured the activity of H+, K+, Ca2+, and Cl and the electrical potential both in the vacuole and in the cytoplasm of the unicellular green alga Eremosphaera viridis to obtain comparable values of the named parameters from the same object under identical conditions. The cytosol had a pH of 7.3, and activities of the other ions were 130 mM K+, 160 mM Ca2+, and 2.2 mM Cl-. We observed only small and transient light-dependent changes of the cytosolic Ca2+ activity. The vacuolar K+ activity did not differ significantly from the cytosolic one. The Ca2+ activity inside the vacuole was approximately 200 μM, the pH was 5.0, and the Cl- activity was 6.2 mM. The concentrations of K+, Ca2+, and Cl- in cell extracts were measured by induction-coupled plasma spectroscopy and anion chromatography. This confirmed the vacuolar activities for K+ and Cl- obtained with ion-selective microelectrodes and indicated that approximately 60% of the vacuolar Ca2+ was buffered. The tonoplast potential was vanishingly low (≤±2 mV). There was no detectable electrochemical potential gradient for K+ across the tonoplast, but there was, however, an obvious electrochemical potential gradient for Cl- (-26 mV), indicating an active accumulation of Cl- inside the vacuole.

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Bethmann, B., Thaler, M., Simonis, W., & Schönknecht, G. (1995). Electrochemical potential gradients of H+, K+, Ca2+, and Cl- across the tonoplast of the green alga Eremosphaera viridis. Plant Physiology, 109(4), 1317–1326. https://doi.org/10.1104/pp.109.4.1317

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