Omasa Kenji, Takayama Kotaro
Department of Biological and Environmental Engineering, Graduate School of Agricultural and Life Sciences, The University of Tokyo, 1-1-1 Yayoi, Bunkyo, Tokyo, 113-8675 Japan.
Plant Cell Physiol. 2003 Dec;44(12):1290-300. doi: 10.1093/pcp/pcg165.
A new imaging system capable of simultaneously measuring stomatal conductance and fluorescence parameters, non-photochemical quenching (NPQ) and photochemical yield of photosystem II (Phi(PSII)), in intact leaves under aerobic conditions by both thermal imaging and chlorophyll fluorescence imaging was developed. Changes in distributions of stomatal conductance and fluorescence parameters across Phaseolus vulgaris L. leaves induced by abscisic acid treatment were analyzed. A decrease in stomatal conductance expanded in all directions from the treatment site, then mainly spread along the lateral vein toward the leaf edge, depending on the ABA concentration gradient and the transpiration stream. The relationships between stomatal conductance and fluorescence parameters depended on the actinic light intensity, i.e. NPQ was greater and Phi(PSII) was lower at high light intensity. The fluorescence parameters did not change, regardless of stomatal closure levels at a photosynthetically active photon flux (PPF) of 270 micro mol m(-2) s(-1); however, they drastically changed at PPF values of 350 and 700 micro mol m(-2) s(-1), when the total stomatal conductance decreased to less than 80 and 200 mmol m(-2) s(-1), respectively. This study has, for the first time, quantitatively analyzed relationships between spatiotemporal variations in stomatal conductance and fluorescence parameters in intact leaves under aerobic conditions.
开发了一种新的成像系统,该系统能够通过热成像和叶绿素荧光成像在有氧条件下同时测量完整叶片中的气孔导度和荧光参数、非光化学猝灭(NPQ)和光系统II的光化学量子产率(Phi(PSII))。分析了脱落酸处理引起的菜豆叶片气孔导度和荧光参数分布的变化。气孔导度的降低从处理部位向各个方向扩展,然后主要沿侧脉向叶边缘扩散,这取决于脱落酸浓度梯度和蒸腾流。气孔导度与荧光参数之间的关系取决于光化光强度,即在高光强度下NPQ更高而Phi(PSII)更低。在光合有效光子通量(PPF)为270微摩尔·米-2·秒-1时,荧光参数不随气孔关闭水平而变化;然而,当总气孔导度分别降至小于80和200毫摩尔·米-2·秒-1时,在PPF值为350和700微摩尔·米-2·秒-1时荧光参数会发生剧烈变化。本研究首次定量分析了有氧条件下完整叶片中气孔导度和荧光参数的时空变化之间的关系。