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Excited states and primary photochemical reactions in the photosynthetic bacterium Heliobacterium chlorum

机译:光合细菌绿脓杆菌的激发态和初级光化学反应

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摘要

The charge separation and excited states of antenna bacteriochlorophyll in membrane fragments of the recently discovered photosynthetic bacterium Heliobacterium chlorum were studied by absorbance-difference spectroscopy. Formation of singlet excited states of bacteriochlorophyll g with a lifetime of 200 ps or less was observed as the disappearance of the ground state absorption bands. From the absorbance-difference spectra, it was concluded that the primary photochemical reaction consists of the transfer of an electron from the primary donor P-798 to a possibly bacteriochlorophyll c-like pigment absorbing at 670 nm. Electron transfer to the secondary acceptor occurred with a time constant of about 500 ps. The midpoint potential of this acceptor (between -450 and -560 mV) and the absence of significant absorbance changes in the near-infrared upon its reduction suggest that this acceptor is an iron-sulfur center. It is concluded that the primary photochemistry of H. chlorum is similar to that of green sulfur bacteria.
机译:利用吸光度差光谱法研究了最近发现的光合细菌绿脓杆菌膜片段中触角细菌叶绿素的电荷分离和激发态。随着基态吸收带的消失,观察到了寿命为200 ps或更短的细菌叶绿素g的单重激发态的形成。从吸光度差光谱可以得出结论,主要的光化学反应包括电子从主要供体P-798转移到可能在670 nm吸收的细菌叶绿素c样色素。电子转移到次级受体的时间常数约为500 ps。该受体的中点电势(在-450至-560 mV之间)以及还原后其近红外光没有明显的吸光度变化,表明该受体是铁硫中心。结论是,绿脓杆菌的主要光化学与绿色硫细菌相似。

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