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质膜电子传递与介质中 pH 值下降的关系。

Relationship between Electron Transport across the Plasmalemma and a pH Decrease in the Bulk Medium.

机构信息

Department of Botany, University of Massachusetts, Amherst, Massachusetts 01003.

出版信息

Plant Physiol. 1992 Mar;98(3):988-94. doi: 10.1104/pp.98.3.988.

Abstract

The hypothesis is tested that acidification of the bulk medium during transplasmalemma electron transport to ferricyanide is due solely to a requirement for charge balance. According to this hypothesis, reduction of the trivalent anion, ferricyanide, to the tetravalent anion, ferrocyanide, results in a charge difference that is balanced by protons. A coulometric device is used that rapidly and efficiently reoxidizes ferrocyanide to ferricyanide, thus maintaining a constant charge in the bulk medium. Oat (Avena sativa L. cv Garry) mesophyll protoplasts are chosen as experimental material to facilitate ferricyanide reduction and the concomitant ferrocyanide reoxidation by the coulometric device. The kinetics of ferricyanide reduction and proton excretion by protoplasts are similar to those of other cell types and tissues. Rates of net proton excretion are identical regardless of whether the ferrocyanide is simultaneously reoxidized. We conclude that acidification may occur during transplasmalemma electron transport when there is no change in negative charge of the bulk medium.

摘要

该假说的假设是,在跨质膜电子传递到铁氰化物的过程中,基质介质的酸化仅归因于电荷平衡的要求。根据这一假说,三价阴离子铁氰化物还原为四价阴离子亚铁氰化物会导致电荷差异,该差异由质子平衡。使用库仑计装置,该装置迅速有效地将亚铁氰化物氧化回铁氰化物,从而在基质介质中保持恒定的电荷。选择燕麦(燕麦属 L. cv Garry)叶肉原生质体作为实验材料,以促进铁氰化物的还原以及库仑计装置同时还原亚铁氰化物。铁氰化物还原和质子排泄的动力学与其他细胞类型和组织相似。净质子排泄速率相同,无论亚铁氰化物是否同时被氧化。我们得出结论,当基质介质的负电荷没有变化时,跨质膜电子传递过程中可能会发生酸化。

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Redox activity at the surface of oat root cells.燕麦根细胞表面的氧化还原活性。
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