Department of Medical Physics, University of Szeged, Rerrich Béla tér 1, Szeged, 6720, Hungary.
Institute of Plant Biology, Biological Research Center, Hungarian Academy of Sciences, Szeged, 6726, Hungary.
Photosynth Res. 2018 Apr;136(1):17-30. doi: 10.1007/s11120-017-0434-3. Epub 2017 Oct 24.
Upon high light excitation in photosynthetic bacteria, various triplet states of pigments can accumulate leading to harmful effects. Here, the generation and lifetime of flash-induced carotenoid triplets (Car) have been studied by observation of the quenching of bacteriochlorophyll (BChl) fluorescence in different strains of photosynthetic bacteria including Rvx. gelatinosus (anaerobic and semianaerobic), Rsp. rubrum, Thio. roseopersicina, Rba. sphaeroides 2.4.1 and carotenoid- and cytochrome-deficient mutants Rba. sphaeroides Ga, R-26, and cycA, respectively. The following results were obtained: (1) Car quenching is observed during and not exclusively after the photochemical rise of the fluorescence yield of BChl indicating that the charge separation in the reaction center (RC) and the carotenoid triplet formation are not consecutive but parallel processes. (2) The photoprotective function of Car is not limited to the RC only and can be described by a model in which the carotenoids are distributed in the lake of the BChl pigments. (3) The observed lifetime of Car in intact cells is the weighted average of the lifetimes of the carotenoids with various numbers of conjugated double bonds in the bacterial strain. (4) The lifetime of Car measured in the light is significantly shorter (1-2 μs) than that measured in the dark (2-10 μs). The difference reveals the importance of the dynamics of Car before relaxation. The results will be discussed not only in terms of energy levels of the Car but also in terms of the kinetics of transitions among different sublevels in the excited triplet state of the carotenoid.
在光合细菌的高光激发下,各种色素的三重态可以积累,导致有害影响。在这里,通过观察不同光合细菌菌株中细菌叶绿素 (BChl) 荧光的猝灭,研究了类胡萝卜素三重态 (Car) 的产生和寿命,这些菌株包括 Rvx。gelatinosus(厌氧和半厌氧)、Rsp。rubrum、Thio。roseopersicina、Rba。sphaeroides 2.4.1 和类胡萝卜素和细胞色素缺陷突变体 Rba。sphaeroides Ga、R-26 和 cycA。得到以下结果:(1)Car 猝灭发生在 BChl 荧光产率的光化学上升期间,而不仅仅是在之后,这表明反应中心 (RC) 中的电荷分离和类胡萝卜素三重态形成不是连续的,而是平行的过程。(2)Car 的光保护功能不仅限于 RC,并且可以用一个模型来描述,其中类胡萝卜素分布在 BChl 色素的湖中。(3)在完整细胞中观察到的 Car 寿命是该细菌菌株中具有不同数量共轭双键的类胡萝卜素的寿命的加权平均值。(4)在光下测量的 Car 寿命明显短于(1-2 μs)在黑暗中测量的寿命(2-10 μs)。差异揭示了 Car 在松弛之前的动力学的重要性。结果不仅将根据 Car 的能级进行讨论,还将根据激发态中不同亚能级之间跃迁的动力学进行讨论。