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Phycocyanin Sensitizes both Photosystem I and Photosystem II in Cryptophyte Chroomonas CCMP270 Cells

机译:藻蓝蛋白同时刺激隐藻Chroomonas CCMP270细胞中的光系统I和光系统II。

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摘要

This article presents an investigation of the energy migration dynamics in intact cells of the unicellular photosynthetic cryptophyte Chroomonas CCMP270 by steady-state and time-resolved fluorescence measurements. By kinetic modeling of the fluorescence data on chlorophyll and phycocyanin 645 excitation (at 400 and 582 nm respectively), it has been possible to show the excited state energy distribution in the photosynthetic antenna of this alga. Excitation energy from phycocyanin 645 is distributed nearly equally between photosystem I and photosystem II with very high efficiency on a 100-ps timescale. The excitation energy trapping times for both photosystem I (∼30 ps) and photosystem I (200 and ∼540 ps) correspond well to those obtained from experiments on isolated photosystems. The results are compared with previous results for another cryptophyte species, Rhodomonas CS24, and suggest a similar membrane organization for the cryptophytes with the phycobiliproteins tightly packed in the thylakoid lumen around the periphery of the photosystems.
机译:本文介绍了通过稳态和时间分辨荧光测量对单细胞光合隐植物Chroomonas CCMP270完整细胞中能量迁移动力学的研究。通过对叶绿素和藻蓝蛋白645激发(分别在400和582 nm处)的荧光数据进行动力学建模,可以显示该藻类的光合天线中的激发态能量分布。藻蓝蛋白645的激发能量在光系统I和光系统II之间几乎均等地分配,效率为100 ps。光系统I(〜30 ps)和光系统I(200和〜540 ps)的激发能捕获时间与孤立光系统实验获得的激发能捕获时间非常吻合。将结果与另一种隐藻植物物种Rhodomonas CS24的先前结果进行了比较,并提出了一种隐藻植物的类似膜组织,其中藻胆蛋白紧密堆积在光系统外围的类囊体腔中。

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