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[与紫色硫细菌载色体中细菌脱镁叶绿素光还原相关的细菌叶绿素荧光变化]

[Bacteriochlorophyll fluorescence changes related to the bacteriopheophytin photoreduction in the chromatophores of purple sulfur bacteria].

作者信息

Klimov V V, Shuvalov V A, Krakhmaleva I N, Karapetian N V, Krasiovskiĭ A A

出版信息

Biokhimiia. 1976 Aug;41(8):1435-41.

PMID:1024595
Abstract

It is shown that illumination of chromatophores of sulfur bacterium Chromatium minutissimum at Eh of the medium --200 mV divided by --620 mV (when the photooxidation of pigment P890 is completely inhibited) induces a decrease in bacteriochlorophyll fluorescence yield, reversible in the dark. Under these conditions a reversible photoreduction of bacteriopheophytin is detected (bleaching of absorption bands at 543 and 760 nm and development of a band at 650 nm), which is accompanied by a blue shift of the absorption band at 8 nm. As a possible interpretation of these effects the suggestion is made on the function of bacteriopheophytin as a primary electron acceptor in reaction centers of bacteria. The bacteriopheophytin photoreduction, followed by a decrease in fluorescence yield, is also observed in other sulfur bacteria, Thiocapsa roseopersicina and Ectothiorodospira shaposhnikovii, but it is not detected in nonsulfur bacteria, Rhodospirillum rubrum and Rhodopseudomonas spheroides. This is considered as an evidence for the difference in the functional organization of the reaction centers of these two groups of bacteria,

摘要

结果表明,在培养基氧化还原电位为-200 mV至-620 mV(此时色素P890的光氧化被完全抑制)时,对极小色硫菌的载色体进行光照,会导致细菌叶绿素荧光产量下降,且在黑暗中可逆转。在这些条件下,检测到细菌脱镁叶绿素的可逆光还原(543和760 nm处吸收带的漂白以及650 nm处吸收带的出现),同时伴有8 nm处吸收带的蓝移。作为对这些效应的一种可能解释,有人提出细菌脱镁叶绿素在细菌反应中心中作为初级电子受体发挥作用。在其他硫细菌玫瑰色荚硫菌和沙氏外硫红螺菌中也观察到细菌脱镁叶绿素的光还原以及随后荧光产量的下降,但在非硫细菌红螺菌和球形红假单胞菌中未检测到。这被视为这两组细菌反应中心功能组织存在差异的证据。

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