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气孔关闭与土壤水分消耗有关,而与叶片整体水分状况的变化无关。

Stomatal closure with soil water depletion not associated with changes in Bulk leaf water status.

作者信息

Bates L M, Hall A E

机构信息

Department of Botany and Plant Sciences, University of California, 92521, Riverside, CA, USA.

出版信息

Oecologia. 1981 Aug;50(1):62-65. doi: 10.1007/BF00378794.

Abstract

It has previously been reported that canopy water loss by cowpea (Vigna unguiculata) decreases with small depletions in soil water. In these studies, under field conditions, it was demonstrated that with small changes in soil water status leaf conductance of cowpea decreases in a manner which is consistent with the sensitive regulation of canopy water loss.However, treatments which differed in leaf conductance, and presumably stomatal aperture, had similar leaf water potentials. It is hypothesized that the stomatal closure which results from soil water depletion is mediated by changes in root water status through effects on the flow of information from root to shoot. An efficient mechanism of this type could be partially responsible for the extreme drought avoidance exhibited by this plant.

摘要

此前有报道称,豇豆冠层水分损失会随着土壤水分的少量消耗而减少。在这些研究中,在田间条件下表明,随着土壤水分状况的微小变化,豇豆的叶片导度会以与冠层水分损失的敏感调节相一致的方式降低。然而,叶片导度不同(推测气孔孔径也不同)的处理具有相似的叶片水势。据推测,土壤水分消耗导致的气孔关闭是由根水状况的变化介导的,这种变化通过影响从根到地上部的信息流来实现。这种高效机制可能部分解释了这种植物所表现出的极端干旱规避现象。

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