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通过时间分辨荧光光谱法分析含叶绿素f的蓝细菌——洪氏盐微鞘藻中的能量转移。

Energy transfer in the chlorophyll f-containing cyanobacterium, Halomicronema hongdechloris, analyzed by time-resolved fluorescence spectroscopies.

作者信息

Akimoto Seiji, Shinoda Toshiyuki, Chen Min, Allakhverdiev Suleyman I, Tomo Tatsuya

机构信息

Molecular Photoscience Research Center, Kobe University, Kobe, 657-8501, Japan,

出版信息

Photosynth Res. 2015 Aug;125(1-2):115-22. doi: 10.1007/s11120-015-0091-3. Epub 2015 Feb 4.

Abstract

We prepared thylakoid membranes from Halomicronema hongdechloris cells grown under white fluorescent light or light from far-red (740 nm) light-emitting diodes, and observed their energy-transfer processes shortly after light excitation. Excitation-relaxation processes were examined by steady-state and time-resolved fluorescence spectroscopies. Two time-resolved fluorescence techniques were used: time-correlated single photon counting and fluorescence up-conversion methods. The thylakoids from the cells grown under white light contained chlorophyll (Chl) a of different energies, but were devoid of Chl f. At room temperature, the excitation energy was equilibrated among the Chl a pools with a time constant of 6.6 ps. Conversely, the thylakoids from the cells grown under far-red light possessed both Chl a and Chl f. Two energy-transfer pathways from Chl a to Chl f were identified with time constants of 1.3 and 5.0 ps, and the excitation energy was equilibrated between the Chl a and Chl f pools at room temperature. We also examined the energy-transfer pathways from phycobilisome to the two photosystems under white-light cultivation.

摘要

我们从在白色荧光灯下或远红(740纳米)发光二极管光照下生长的洪氏盐生绿藻细胞中制备类囊体膜,并在光激发后不久观察其能量转移过程。通过稳态和时间分辨荧光光谱法研究激发-弛豫过程。使用了两种时间分辨荧光技术:时间相关单光子计数和荧光上转换方法。在白光下生长的细胞的类囊体含有不同能量的叶绿素(Chl)a,但不含Chl f。在室温下,激发能量在Chl a库之间以6.6皮秒的时间常数达到平衡。相反,在远红光下生长的细胞的类囊体同时含有Chl a和Chl f。确定了从Chl a到Chl f的两条能量转移途径,时间常数分别为1.3和5.0皮秒,并且在室温下激发能量在Chl a和Chl f库之间达到平衡。我们还研究了在白光培养条件下从藻胆体到两个光系统的能量转移途径。

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