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绿硫光合细菌菌绿体中细菌叶绿素 c 的激发态结构和能量转移动力学的孔烧蚀研究。

Hole burning study of excited state structure and energy transfer dynamics of bacteriochlorophyll c in chlorosomes of green sulphur photosynthetic bacteria.

机构信息

Department of Chemical Physics, Faculty of Mathematics & Physics, Charles University, Ke Karlovu 3, 121 16, Prague2, Czech Republic.

出版信息

Photosynth Res. 1994 Oct;42(1):1-8. doi: 10.1007/BF00019052.

Abstract

Results of low temperature fluorescence and spectral hole burning experiments with whole cells and isolated chlorosomes of the green sulfur bacterium Chlorobium limicola containing BChl c are reported. At least two spectral forms of BChl c (short-wavelength and long-wavelength absorbing BChl c) were identified in the second derivative fluorescence spectra. The widths of persistent holes burned in the fluorescence spectrum of BChl c are determined by excited state lifetimes due to fast energy transfer. Different excited state lifetimes for both BChl c forms were observed. A site distribution function of the lowest excited state of chlorosomal BChl c was revealed. The excited state lifetimes are strongly influenced by redox conditions of the solution. At anaerobic conditions the lifetime of 5.3 ps corresponds to the rate of energy transfer between BChl c clusters. This time shortens to 2.6 ps at aerobic conditions. The shortening may be caused by introducing a quencher. Spectral bands observed in the fluorescence of isolated chlorosomes were attributed to monomeric and lower state aggregates of BChl c. These forms are not functionally connected with the chlorosome.

摘要

报告了含有 BChl c 的绿硫细菌 Chlorobium limicola 完整细胞和分离的叶绿素体的低温荧光和光谱孔烧实验结果。在第二衍生物荧光光谱中鉴定出了至少两种 BChl c 的光谱形式(短波长和长波长吸收的 BChl c)。由于快速能量转移,在 BChl c 荧光光谱中烧蚀的持久孔的宽度由激发态寿命决定。观察到两种 BChl c 形式的不同激发态寿命。揭示了叶绿素体 BChl c 的最低激发态的位置分布函数。激发态寿命受溶液的氧化还原条件强烈影响。在厌氧条件下,5.3 ps 的寿命对应于 BChl c 簇之间能量转移的速率。在需氧条件下,该时间缩短至 2.6 ps。缩短可能是由于引入了猝灭剂。在分离的叶绿素体荧光中观察到的光谱带归因于 BChl c 的单体和较低状态聚集体。这些形式与叶绿素体没有功能上的联系。

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