Department of Biology, University of Essex, CO4 3SQ, Colchester, Essex, UK.
Photosynth Res. 1990 Sep;25(3):249-57. doi: 10.1007/BF00033166.
It has been suggested previously that non-photochemical quenching of chlorophyll fluorescence is associated with a decrease in the rate of photosystem 2 (PS 2) photochemistry. In this study analyses of fluorescence yield changes, induced by flashes in leaves exhibiting different amounts of non-photochemical quenching of fluorescence, are made to determine the effect of non-photochemical excitation energy quenching processes on the rate of PS 2 photochemistry. It is demonstrated that both the high-energy state and the more slowly relaxing components of non-photochemical quenching reduce the rate of PS 2 photochemistry. Flash dosage response curves for fluorescence yield show that non-photochemical quenching processes effectively decrease the relative effective absorption cross-section for PS 2 photochemistry. It is suggested that non-photochemical quenching processes exert an effect on the rate of PS 2 photochemistry by increasing the dissipation of excitation energy by non-radiative processes in the pigment matrices of PS 2, which consequently results in a decrease in the efficiency of delivery of excitation energy for PS 2 photochemistry.
先前有人提出,叶绿素荧光的非光化学猝灭与光系统 2 (PS 2) 光化学速率的降低有关。在这项研究中,通过分析在表现出不同程度荧光非光化学猝灭的叶片中闪光诱导的荧光产量变化,来确定非光化学激发能量猝灭过程对 PS 2 光化学速率的影响。结果表明,高能态和非光化学猝灭的较慢弛豫组分都会降低 PS 2 光化学速率。荧光产量的闪光剂量响应曲线表明,非光化学猝灭过程会有效地降低 PS 2 光化学的相对有效吸收截面。因此,非光化学猝灭过程通过增加 PS 2 色素基质中非辐射过程的激发能量耗散来对 PS 2 光化学速率产生影响,从而导致 PS 2 光化学激发能量传递效率降低。