Li Q, Nothnagel E A
Department of Botany and Plant Sciences, University of California, Riverside, California 92521.
Plant Physiol. 1989 Jan;89(1):211-9. doi: 10.1104/pp.89.1.211.
A modified fluorescence microscope system was used to measure chlorophyll fluorescence and delayed light emission from mesophyll and bundle sheath cells in situ in fresh-cut sections from leaves of Panicum miliaceum L. The fluorescence rise in 3-(3,4-dichlorophenyl)-1, 1-dimethylurea (DCMU)-treated leaves and the slow fluorescence kinetics in untreated leaves show that mesophyll chloroplasts have larger photosystem II unit sizes than do bundle sheath chloroplasts. The larger photosystem II units imply more efficient noncyclic electron transport in mesophyll chloroplasts. Quenching of slow fluorescence also differs between the cell types with mesophyll chloroplasts showing complex kinetics and bundle sheath chloroplasts showing a relatively simple decline. Properties of the photosynthetic system were also investigated in leaves from plants grown in soil containing elevated NaCl levels. As judged by changes in both fluorescence kinetics in DCMU-treated leaves and delayed light emission in leaves not exposed to DCMU, salinity altered photosystem II in bundle sheath cells but not in mesophyll cells. This result may indicate different ionic distributions in the two cell types or, alternatively, different responses of the two chloroplast types to environmental change.
使用改良的荧光显微镜系统来测量黍稷叶片鲜切薄片中叶肉细胞和维管束鞘细胞原位的叶绿素荧光和延迟发光。用3-(3,4-二氯苯基)-1,1-二甲基脲(DCMU)处理的叶片中的荧光上升以及未处理叶片中的缓慢荧光动力学表明,叶肉叶绿体的光系统II单位尺寸比维管束鞘叶绿体的大。更大的光系统II单位意味着叶肉叶绿体中更有效的非循环电子传递。两种细胞类型中缓慢荧光的猝灭也有所不同,叶肉叶绿体显示出复杂的动力学,而维管束鞘叶绿体显示出相对简单的下降。还对生长在含高NaCl水平土壤中的植物叶片的光合系统特性进行了研究。通过DCMU处理叶片中荧光动力学的变化和未暴露于DCMU的叶片中延迟发光的变化判断,盐度改变了维管束鞘细胞中的光系统II,但未改变叶肉细胞中的光系统II。这一结果可能表明两种细胞类型中离子分布不同,或者两种叶绿体类型对环境变化的反应不同。