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首页> 外文期刊>Photosynthesis Research >Excitation energy transfer and trapping dynamics in the core complex of the filamentous photosynthetic bacterium Roseiflexus castenholzii
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Excitation energy transfer and trapping dynamics in the core complex of the filamentous photosynthetic bacterium Roseiflexus castenholzii

机译:丝状光合细菌Rostiflexus castenholzii核心复合物中的激发能转移和俘获动力学

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The light-harvesting core complex of the thermophilic filamentous anoxygenic phototrophic bacterium Roseiflexus castenholzii is intrinsic to the cytoplasmic membrane and intimately bound to the reaction center (RC). Using ultrafast transient absorption and time-resolved fluorescence spectroscopy with selective excitation, energy transfer, and trapping dynamics in the core complex have been investigated at room temperature in both open and closed RCs. Results presented in this report revealed that the excited energy transfer from the BChl 800 to the BChl 880 band of the antenna takes about 2 ps independent of the trapping by the RC. The time constants for excitation quenching in the core antenna BChl 880 by open and closed RCs were found to be 60 and 210 ps, respectively. Assuming that the light harvesting complex is generally similar to LH1 of purple bacteria, the possible structural and functional aspects of this unique antenna complex are discussed. The results show that the core complex of Roseiflexus castenholzii contains characteristics of both purple bacteria and Chloroflexus aurantiacus.
机译:嗜热丝状产氧光养细菌Rostiflexus castenholzii的光收集核心复合物是细胞质膜固有的,并与反应中心(RC)紧密结合。使用超快瞬态吸收和具有选择性激发的时间分辨荧光光谱技术,已在室温下在开放式和封闭式RC中研究了核心配合物中的选择性激发,能量转移和俘获动力学。该报告提供的结果表明,从天线的BChl 800到BChl 880的激发能量转移大约需要2 ps,而不受RC的陷获影响。发现通过开路和闭路RC在核心天线BChl 880中进行激发淬灭的时间常数分别为60 ps和210 ps。假设光收集复合物通常类似于紫色细菌的LH1,则讨论了这种独特的天线复合物的可能结构和功能方面。结果表明,玫瑰蔷薇的核心复合体同时具有紫色细菌和桔小球藻的特征。

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