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Antenna structure and excitation dynamics in photosystem I. II. Studies with mutants of Chlamydomonas reinhardtii lacking photosystem II.

机译:光电系统中的天线结构和激发动力学缺乏光系统II的莱茵衣藻突变体的研究。

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摘要

Using time-resolved single photon counting, fluorescence decay in photosystem I (PS I) was analyzed in mutant strains of Chlamydomonas reinhardtii that lack photosystem II. Two strains are compared: one with a wild-type PS I core antenna (120 chlorophyll a/P700) and a second showing an apparent reduction in core antenna size (60 chlorophyll a/P700). These data were calculated from the lifetimes of core antenna excited states (75 and 45 ps, respectively) and from pigment stoichiometries. Fluorescence decay in wild type PS I is composed of two components: a fast 75-ps decay that represents the photochemically limited lifetime of excited states in the core antenna, and a minor (less than 10%) 300-800 ps component that has spectral characteristics of both peripheral and core antenna pigments. Temporal and spectral properties of the fast PS I decay indicate that (a) excitations are nearly equilibrated among the range of spectral forms present in the PS I core antenna, (b) an average excitation visits a representative distribution of core antenna spectral forms on all pigment-binding subunits regardless of the origin of the excitation, (c) reduction in core antenna size does not alter the range of antenna spectral forms present, and (d) transfer from peripheral antennae to the PS I core complex is rapid (less than 5 ps).
机译:使用时间分辨的单光子计数,在缺乏光系统II的莱茵衣藻突变株中分析了光系统I(PS I)中的荧光衰减。比较了两种菌株:一种带有野生型PS I核心触角(120个叶绿素a / P700),另一种显示了核心触角尺寸明显减小(60个叶绿素a / P700)。这些数据是根据核心天线激发态(分别为75和45 ps)的寿命以及颜料的化学计量来计算的。野生型PS I中的荧光衰减包括两个分量:75 ps的快速衰减代表核心天线中激发态的光化学寿命,而次要的(小于10%)300-800 ps具有光谱外围和核心天线颜料的特性。 PS I快速衰减的时间和频谱特性表明(a)激发在PS I核心天线中存在的频谱形式范围内几乎是均衡的;(b)平均激发访问了所有天线上核心天线频谱形式的代表性分布色素结合亚基,无论激发的起源如何,(c)核心天线尺寸的减小不会改变现有天线频谱形式的范围,并且(d)从外围天线到PS I核心复合物的转移速度很快(小于5 ps)。

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