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洋葱表皮细胞气孔运动的机制。

The mechanism of stomatal movement in Allium cepa L.

机构信息

Institut für Botanik und Mikrobiologie der Technischen Universität München, Arcisstr. 21, D-8000, München 2, Federal Republic of Germany.

出版信息

Planta. 1977 Jan;136(1):37-43. doi: 10.1007/BF00387922.

Abstract

In the guard cells of Allium cepa leaves, no starch was found either when the stomata were open or closed. The lack of other soluble polysaccharides that could be hydrolyzed during the opening reaction of the stomata (Schnabl, Planta 1977, in press) leads to the question, how is the osmotic effect, which is the basis of the stomatal movement, achieved in Allium? It is shown in this paper, by histochemical and microprobe analyses, that in Allium - as in other plant species-the K(+) concentration of the guard cells increases during stomatal opening. The charges of the K(+) ions in the guard cells seem to be fully compensated by imported Cl(-) ions. This could mean that if starch is present in the guard cells, as in the majority of plant species, its major role in the mechanism of stomatal movement is to deliver the cuunteranions for the imported K(+) ions.

摘要

在洋葱叶片的保卫细胞中,气孔开放或关闭时都没有发现淀粉。在气孔开放反应中可以水解的其他可溶性多糖(Schnabl,Planta 1977,即将出版)的缺乏,使得这样一个问题产生:在洋葱中,作为气孔运动基础的渗透效应是如何实现的?本文通过组织化学和微探针分析表明,在洋葱中 - 与其他植物物种一样 - 气孔开放时保卫细胞中的 K(+) 浓度增加。保卫细胞中 K(+) 离子的电荷似乎被导入的 Cl(-) 离子完全补偿。这可能意味着,如果淀粉存在于保卫细胞中,就像大多数植物物种一样,它在气孔运动机制中的主要作用是为导入的 K(+) 离子提供抗衡阴离子。

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