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Photoreactivation and dark repair of ultraviolet light-induced pyrimidine dimers in chloroplast DNA.

机译:叶绿体DNA中紫外线诱导的嘧啶二聚体的光活化和暗修复。

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摘要

A UV-specific endonuclease was used to detect ultraviolet light-induced pyrimidine dimers in chloroplast DNA of Chlamydomonas reinhardi that was specifically labeled with tritiated thymidine. All of the dimers induced by 100 J/m2 of 254 nm light are removed by photoreaction. Wild-type cells exposed to 50 J/m2 of UF light removed over 80% of the dimers from chloroplast DNA after 24 h of incubation in growth medium in the dark. A UV- sensitive mutant, UVS1, defective in the excision of pyrimidine dimers from nuclear DNA is capable of removing pyrimidine dimers from chloroplast DNA nearly as well as wild-type, suggesting that nuclear and chloroplast DNA dark-repair systems are under separate genetic control.
机译:使用紫外线特异性核酸内切酶来检测莱茵衣藻的叶绿体DNA中的紫外线诱导的嘧啶二聚体,该叶绿体DNA用tri化的胸苷专门标记。通过光反应去除了100 J / m2的254 nm光诱导的所有二聚体。在黑暗中于生长培养基中孵育24小时后,暴露于50 J / m2 UF光下的野生型细胞从叶绿体DNA中去除了80%以上的二聚体。一个对紫外线敏感的突变体,UVS1,在从核DNA上切除嘧啶二聚体方面有缺陷,能够从叶绿体DNA中除去几乎和野生型一样的嘧啶二聚体,这表明核和叶绿体DNA暗修复系统处于单独的遗传控制之下。 。

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