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Shortcut of the photosynthetic electron transfer in a mutant lacking the reaction center‐bound cytochrome subunit by gene disruption in a purple bacterium, Rubrivivax gelatinosus

机译:缺少细菌的反应中心结合型细胞色素亚基的突变体中,通过紫色细菌Rubrivivax gelatinosus的基因破坏,光合电子转移的捷径

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>A mutant lacking the reaction center-bound cytochrome subunit was constructed in a purple photosynthetic bacterium, Rubrivivax gelatinosus IL144, by inactivation of the cytochrome gene. Photosynthetic growth of the C244 mutant strain occurred at approximately half the rate of the wild-type strain. Although mutagenesis resulted in a greatly reduced amount of membrane-bound cytochromes c, illumination induced cyclic electron transfer and the generation of membrane potential in the mutant as observed in the wild-type strain. These findings are consistent with previous observations that the cytochrome subunit is absent in the reaction center complex in some species of purple bacteria and that the biochemical removal of the subunit did not significantly affect the in vitro electron transfer from the soluble cytochrome c to the photosynthetic reaction center. These results suggest that the cytochrome subunit in purple bacteria is not essential for photosynthetic electron transfer and growth, even in those species generally containing the subunit.
机译:通过使细胞色素基因失活,在紫色光合作用细菌 Rubrivivax gelatinosus IL144中构建了一个缺乏与反应中心结合的细胞色素亚基的突变体。 C244突变菌株的光合生长速度约为野生型菌株的一半。尽管诱变导致膜结合的细胞色素 c 的数量大大减少,但在野生型菌株中观察到,光照诱导了突变体中的循环电子转移和膜电位的产生。这些发现与以前的观察结果一致,即某些紫色细菌物种的反应中心复合物中不存在细胞色素亚基,并且该亚基的生化去除不会显着影响从可溶性细胞色素 c <的体外电子转移。 / em>到达光合作用反应中心。这些结果表明,紫色细菌中的细胞色素亚基对于光合作用的电子转移和生长不是必不可少的,即使在通常含有该亚基的物种中也是如此。

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