Inoue H, Noguchi M, Kubo K
Department of Biology, Faculty of Science, Toyama University, Toyama 930, Japan.
Plant Physiol. 1985 Oct;79(2):389-93. doi: 10.1104/pp.79.2.389.
The effects of preillumination were investigated on ion-stimulated stomatal opening of epidermal strips isolated from Commelina communis L. leaves, which are dark-starved 24 hours or more. The rate and the extent of ion-stimulated stomatal openings were increased by preexposure of epidermal strips to light. The evidences are interpreted as indicating that the energy induced by preillumination can be conserved in guard cells for considerable time periods and then used for a delayed stomatal opening in the presence of higher concentration of potassium or sodium ions. Action spectrum showed two peaks, one in blue and one in the red light region. The ratio of the blue peak to the red peak is 1.2; which is the smallest reported value in action spectra of stomatal movements. 3-(4-chlorophenyl)-1,-1-Dimethylurea suppressed the ion-stimulated stomatal opening induced by the preillumination. We conclude that the photosynthetic electron transport system, containing photosystem II, in guard cell chloroplasts is a basic system of energy acquirement for stomatal opening.
研究了预照光对从鸭跖草叶片分离的、暗饥饿24小时或更长时间的表皮条离子刺激气孔开放的影响。将表皮条预先暴露于光照下,可提高离子刺激气孔开放的速率和程度。这些证据被解释为表明预照光诱导的能量可在保卫细胞中保存相当长的时间,然后在存在较高浓度的钾离子或钠离子时用于延迟的气孔开放。作用光谱显示有两个峰值,一个在蓝光区域,一个在红光区域。蓝光峰值与红光峰值的比值为1.2;这是气孔运动作用光谱中报道的最小值。3-(4-氯苯基)-1,1-二甲基脲抑制了预照光诱导的离子刺激气孔开放。我们得出结论,保卫细胞叶绿体中包含光系统II的光合电子传递系统是气孔开放能量获取的基本系统。