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Na+/H+ and K+/H+ Antiport in Root Membrane Vesicles Isolated from the Halophyte Atriplex and the Glycophyte Cotton 1

机译:Na + / H +和K + / H +在从盐生植物滨藜和糖藻棉花分离的根膜囊泡中的反转运1

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摘要

Proton fluxes have been followed into and out of membrane vesicles isolated from the roots of the halophyte Atriplex nummularia and the glycophyte Gossypium hirsutum, with the aid of the ΔpH probe [14C]methylamine. Evidence is presented for the operation of Na+/H+ and K+/H+ antiporters in the membranes of both plants. Cation supply after a pH gradient has been set up across the vesicle membrane (either as a result of providing ATP to the H+-ATPase or by imposing an artificial pH gradient) brings about dissipation of the ΔpH, but does not depolarize the membrane potential as observed in similar experiments, but in the absence of Cl−, using the ΔΨ probe SCN−. Cation/H+ exchange is thus indicated. This exchange is not due to nonspecific electric coupling, nor to competition for anionic adsorption sites on the membrane, nor to inhibition of the H+-ATPase; coupling of the opposed cation and H+ fluxes by a membrane component is the most likely explanation. Saturation kinetics have been observed for both Na+/H+ and K+/H+ antiport in Atriplex. Moreover, additive effects are obtained when Na+ is supplied together with saturating concentrations of K+, and vice versa, suggesting that separate antiporters for Na+ and for K+ may be operating. In the case of both Atriplex and Gossypium evidence was obtained suggesting the presence of antiporters in both plasmalemma and tonoplast.
机译:借助ΔpH探针[14C]甲胺,质子通量被跟踪到从盐生植物滨藜属植物和糖生植物陆地棉分离的膜小泡中出来。提供了在两种植物的膜中Na + / H +和K + / H +反转运蛋白运行的证据。在整个囊泡膜上建立了pH梯度后(通过为H + -ATPase提供ATP或通过施加人工pH梯度而产生),阳离子供应会导致ΔpH的耗散,但不会使膜电位消极化,因为使用ΔΨ探针SCN-在类似的实验中观察到但没有Cl-的情况。因此表明阳离子/ H +交换。这种交换不是由于非特异性电耦合,也不是由于膜上阴离子吸附位的竞争,也不是由于H + -ATPase的抑制。相对的阳离子和H +通量通过膜成分的耦合是最可能的解释。已在Atriplex中观察到Na + / H +和K + / H +反端口的饱和动力学。此外,当将Na +与饱和K +浓度一起提供时,会获得累加效果,反之亦然,这表明Na +和K +的单独反向转运蛋白可能正在起作用。在Atriplex和Gossypium的情况下,都获得了证据表明血浆质膜和液泡膜中都存在反向转运蛋白。

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