Department of Biological Sciences, Stanford University, 94305, Stanford, CA, USA.
Planta. 1984 May;161(2):129-36. doi: 10.1007/BF00395472.
The supply of energy for stomatal opening was investigated with epidermal peels of Commelina communis L. and Vicia faba L., under white, blue and red irradiation or in darkness. Fluencerate response curves of stomatal opening under blue and red light were consistent with the operation of two photosystems, one dependent on photosynthetic active radiation (PAR) and the other on blue light, in the guard cells. The PAR-dependent system was 3(3,4-dichlorophenyl)-1,1-dimethylurea (DCMU)-sensitive and KCN-resistant and showed a relatively high threshold irradiance for its activation; its activity was most prominent at moderate to high irradiances. The blue-light-dependent photosystem was KCN-sensitive, was active at low irradiances, and interacted with the PAR-dependent photosystem at high blue irradiances. Stomatal opening in darkness, caused by CO2-free air, fusicoccin or high KCl concentrations, was KCN-sensitive and DCMU-resistant. These data indicate that stomatal opening in darkness depends on oxidative phosphorylation for the supply of high-energy equivalents driving proton extrusion. Light-dependent stomatal opening appears to require photophosphorylation from guard-cell chloroplasts and the activation of the blue-light photosystem which could rely either on oxidative phosphorylation or a specific, membrane-bound electron-transport carrier.
用白、蓝、红光或黑暗照射鸭跖草和蚕豆的表皮薄片,研究了气孔开放的能量供应。蓝光和红光下气孔开放的荧光率响应曲线与保卫细胞中两个光系统的作用一致,一个光系统依赖于光合有效辐射(PAR),另一个光系统依赖于蓝光。PAR 依赖性系统对 3(3,4-二氯苯基)-1,1-二甲基脲(DCMU)敏感,对 KCN 有抗性,并表现出相对较高的激活辐照度阈值;其活性在中等至高辐照度下最为显著。蓝光依赖性光系统对 KCN 敏感,在低辐照度下活跃,并在高蓝光辐照度下与 PAR 依赖性光系统相互作用。黑暗中由无 CO2 空气、 fusicoccin 或高 KCl 浓度引起的气孔开放对 KCN 敏感,对 DCMU 有抗性。这些数据表明,黑暗中气孔的开放依赖于氧化磷酸化来提供驱动质子外排的高能当量。光依赖性气孔开放似乎需要来自保卫细胞叶绿体的光合磷酸化以及蓝光光系统的激活,该系统可以依赖于氧化磷酸化或特定的、膜结合的电子传递载体。