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从藻胆体到光系统I和光系统II的激发能转移过程中的多样性。

Variety in excitation energy transfer processes from phycobilisomes to photosystems I and II.

作者信息

Ueno Yoshifumi, Aikawa Shimpei, Niwa Kyosuke, Abe Tomoko, Murakami Akio, Kondo Akihiko, Akimoto Seiji

机构信息

Graduate School of Science, Kobe University, Kobe, 657-8501, Japan.

Graduate School of Engineering, Kobe University, Kobe, 657-8501, Japan.

出版信息

Photosynth Res. 2017 Sep;133(1-3):235-243. doi: 10.1007/s11120-017-0345-3. Epub 2017 Feb 9.

Abstract

The light-harvesting antennas of oxygenic photosynthetic organisms capture light energy and transfer it to the reaction centers of their photosystems. The light-harvesting antennas of cyanobacteria and red algae, called phycobilisomes (PBSs), supply light energy to both photosystem I (PSI) and photosystem II (PSII). However, the excitation energy transfer processes from PBS to PSI and PSII are not understood in detail. In the present study, the energy transfer processes from PBS to PSs in various cyanobacteria and red algae were examined in vivo by selectively exciting their PSs or PBSs, and measuring the resulting picosecond to nanosecond time-resolved fluorescences. By observing the delayed fluorescence spectrum of PBS-selective excitation in Arthrospira platensis, we demonstrated that energy transfer from PBS to PSI via PSII (PBS→PSII→PSI transfer) occurs even for PSI trimers. The contribution of PBS→PSII→PSI transfer was species dependent, being largest in the wild-type of red alga Pyropia yezoensis (formerly Porphyra yezoensis) and smallest in Synechococcus sp. PCC 7002. Comparing the time-resolved fluorescence after PSs- and PBS-selective excitation, we revealed that light energy flows from CP43 to CP47 by energy transfer between the neighboring PSII monomers in PBS-PSII supercomplexes. We also suggest two pathways of energy transfer: direct energy transfer from PBS to PSI (PBS→PSI transfer) and indirect transfer through PSII (PBS→PSII→PSI transfer). We also infer that PBS→PSI transfer conveys light energy to a lower-energy red chlorophyll than PBS→PSII→PSI transfer.

摘要

产氧光合生物的光捕获天线捕获光能并将其转移到其光系统的反应中心。蓝细菌和红藻的光捕获天线,称为藻胆体(PBSs),为光系统I(PSI)和光系统II(PSII)都提供光能。然而,从PBS到PSI和PSII的激发能量转移过程尚未得到详细了解。在本研究中,通过选择性激发各种蓝细菌和红藻中的PSI或PBS,并测量由此产生的皮秒到纳秒时间分辨荧光,在体内研究了从PBS到PS的能量转移过程。通过观察钝顶节旋藻中PBS选择性激发的延迟荧光光谱,我们证明即使对于PSI三聚体,也会发生从PBS经由PSII到PSI的能量转移(PBS→PSII→PSI转移)。PBS→PSII→PSI转移的贡献因物种而异,在红藻条斑紫菜(原称条斑紫菜)的野生型中最大,在聚球藻属PCC 7002中最小。比较PSI和PBS选择性激发后的时间分辨荧光,我们发现光能通过PBS-PSII超复合物中相邻PSII单体之间的能量转移从CP43流向CP47。我们还提出了两种能量转移途径:从PBS到PSI的直接能量转移(PBS→PSI转移)和通过PSII的间接转移(PBS→PSII→PSI转移)。我们还推断,PBS→PSI转移将光能传递给比PBS→PSII→PSI转移能量更低的红色叶绿素。

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