Kramer H, Mathis P
Biochim Biophys Acta. 1980 Dec 3;593(2):319-29. doi: 10.1016/0005-2728(80)90069-9.
The formation of the triplet state of carotenoids (detected by an absorption peak at 515 nm) and the photo-oxidation of the primary donor of Photosystem II, P-680 (detected by an absorption increase at 820 nm) have been measured by flash absorption spectroscopy in chloroplasts in which the oxygen evolution was inhibited by treatment with Tris. The amount of each transient form has been followed versus excitation flash intensity (at 590 or 694 nm). At low excitation energy the quantum yield of triplet formation (with the Photosystem II reaction center in the state Q-) is about 30% that of P-680 photo-oxidation. The yield of carotenoid triplet formation is higher in the state Q- than in the state Q, in nearly the same proportion as chlorophyll alpha fluorescence. It is concluded that, for excited chlorophyll alpha, the relative rates of intersystem crossing to the triplet state and of fluorescence emission are the same in vivo as in organic solvent. At high flash intensity the signal of P-680+ completely saturates, whereas that of carotenoid triplet continues to increase. The rate of triplet-triplet energy transfer from chlorophyll alpha to carotenoids has been derived from the rise time of the absorption change at 515 nm, in chloroplasts and in several light-harvesting pigment-protein complexes. In all cases the rate is very high, around 8 . 10(7) s-1 at 294 K. It is about 2--3 times slower at 5 K. The transitory formation of chlorophyll triplet has been verified in two pigment-protein complexes, at 5 K.
通过闪光吸收光谱法,在经Tris处理抑制了氧气释放的叶绿体中,测量了类胡萝卜素三重态的形成(通过515 nm处的吸收峰检测)和光系统II原初供体P-680的光氧化(通过820 nm处的吸收增加检测)。每种瞬态形式的量随激发闪光强度(590或694 nm)进行了跟踪。在低激发能量下,三重态形成的量子产率(光系统II反应中心处于Q-状态时)约为P-680光氧化量子产率的30%。类胡萝卜素三重态形成的产率在Q-状态下比在Q状态下更高,其比例与叶绿素α荧光几乎相同。得出的结论是,对于激发态的叶绿素α,体系间窜越到三重态的相对速率和荧光发射的相对速率在体内与在有机溶剂中相同。在高闪光强度下,P-680+的信号完全饱和,而类胡萝卜素三重态的信号继续增加。从叶绿体和几种捕光色素-蛋白质复合物中515 nm处吸收变化的上升时间,推导出了从叶绿素α到类胡萝卜素的三重态-三重态能量转移速率。在所有情况下,该速率都非常高,在294 K时约为8×10⁷ s⁻¹。在5 K时,它大约慢2至3倍。在5 K时,已在两种色素-蛋白质复合物中证实了叶绿素三重态的短暂形成。