Frank H A, Cua A, Chynwat V, Young A, Gosztola D, Wasielewski M R
Department of Chemistry, University of Connecticut, Storrs 06269-3060, USA.
Biochim Biophys Acta. 1996 Dec 18;1277(3):243-52. doi: 10.1016/s0005-2728(96)00106-5.
The lifetimes of the first excited singlet states (2(1)A(g)) of diadinoxanthin and diatoxanthin, carotenoids involved in the xanthophyll cycle in some genera of algae, have been measured by femtosecond time-resolved optical spectroscopy to be 22.8 +/- 0.1 ps and 13.3 +/- 0.1 ps, respectively. Using the energy gap law for radiationless transitions set forth by Englman and Jortner (Mol. Phys. 18 (1970) 145-164), these lifetimes correspond to S1 excited state energies of 15210 cm-1 for diadinoxanthin and 14620 cm-1 for diatoxanthin. The lowest excited singlet state energy of Chl a has an energy of 14700 cm-1. The fact that the S1 state energy of diadinoxanthin lies above that of Chl a, whereas the S1 state energy of diatoxanthin lies below that of Chl a, suggests that the xanthophyll cycle involving the enzymatic interconversion of diadinoxanthin and diatoxanthin may play a role in regulating energy flow between these molecules and Chl a in many species of algae, essentially fulfilling a role identical to that proposed for violaxanthin and zeaxanthin in higher plants and green algae (Frank et al. (1994) Photosyn. Res. 41, 389-395).
在某些藻类属的叶黄素循环中涉及的类胡萝卜素——二环氧玉米黄质和玉米黄质的第一激发单重态(2(1)A(g))的寿命,已通过飞秒时间分辨光谱法测得,分别为22.8±0.1皮秒和13.3±0.1皮秒。根据Englman和Jortner提出的无辐射跃迁的能隙定律(《分子物理学》18 (1970) 145 - 164),这些寿命对应于二环氧玉米黄质的S1激发态能量为15210厘米-1,玉米黄质的S1激发态能量为14620厘米-1。叶绿素a的最低激发单重态能量为14700厘米-1。二环氧玉米黄质的S1态能量高于叶绿素a,而玉米黄质的S1态能量低于叶绿素a,这一事实表明,涉及二环氧玉米黄质和玉米黄质酶促相互转化的叶黄素循环可能在许多藻类物种中调节这些分子与叶绿素a之间的能量流动中发挥作用,本质上履行了与高等植物和绿藻中紫黄质和玉米黄质所提出的作用相同的功能(Frank等人(1994年)《光合作用研究》41, 389 - 395)。