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高等植物细胞跨膜电位测量与盐分吸收的关系

Transmembrane potential measurements of cells of higher plants as related to salt uptake.

作者信息

ETHERTON B, HIGINBOTHAM N

出版信息

Science. 1960 Feb 12;131(3398):409-10. doi: 10.1126/science.131.3398.409.

Abstract

Measurements of the difference in electropotential between the interior of the cell and the external solution have been made for the first time in cells of several crop plants (1). The interiors of cells of Avena, Pisum, and Zea seedling tissues all have potentials of about -80 to -115 mv relative to that of an external solution of 0.1 mmole of KC1 per liter, bathing the tissue. The potential difference of Avena coleoptiles varies with the concentration of external KC1 and is depressed by 2,4-dinitrophenol. The potential difference occurs between the cytoplasmic layer and the exterior; the potential of the vacuole does not appear to be significantly different from that of the cytoplasm. Obviously a relatively large cation accumulation ratio could be accounted for in plant cells by this large potential without invoking a chemical cation transport scheme.

摘要

首次在几种农作物的细胞中测量了细胞内部与外部溶液之间的电位差(1)。燕麦、豌豆和玉米幼苗组织细胞的内部相对于每升含有0.1毫摩尔氯化钾的外部溶液,其电位均约为-80至-115毫伏,该外部溶液浸泡着组织。燕麦胚芽鞘的电位差随外部氯化钾浓度的变化而变化,并被2,4-二硝基苯酚降低。电位差出现在细胞质层与外部之间;液泡的电位似乎与细胞质的电位没有显著差异。显然,在不引入化学阳离子转运机制的情况下,这种较大的电位可以解释植物细胞中相对较大的阳离子积累率。

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