无氧光合作用
光养
紫色细菌
采光综合体
光合作用
光电效应
光合反应中心
光能
醌
细菌叶绿素
绿色体
绿色硫细菌
光化学
化学
生物物理学
物理
植物
生物
光电子学
光系统II
立体化学
光学
作者
Yukihiro Kimura,Kazuhide Tani,Michael T. Madigan,Zheng‐Yu Wang‐Otomo
标识
DOI:10.1021/acs.jpcb.2c06638
摘要
Purple phototrophic bacteria are ancient anoxygenic phototrophs and attractive research tools because they capture light energy in the near-infrared (NIR) region of the spectrum and transform it into chemical energy by way of uphill energy transfers. The heart of this reaction occurs in light-harvesting 1-reaction center (LH1-RC) complexes, which are the simplest model systems for understanding basic photosynthetic reactions within type-II (quinone-utilizing) reaction centers. In this Perspective, we highlight structure-function relationships concerning unresolved fundamental processes in purple bacterial photosynthesis, including the diversified light-harvesting capacity of LH1-associated BChl molecules, energies necessary for photoelectric conversion in the RC special pairs, and quinone transport mechanisms. Based on recent progress in the spectroscopic and structural analysis of LH1-RC complexes from a variety of purple phototrophs, we discuss several key factors for understanding how purple bacteria resource light energy in the inherently energy-poor NIR region of the electromagnetic spectrum.
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