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Construction of an Obligate Photoheterotrophic Mutant of the Cyanobacterium Synechocystis 6803

机译:蓝藻6803专性光异养突变体的构建

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摘要

psbA in Synechocystis 6803 was found to belong to a small multigene family with three copies. The psbA gene family was inactivated in vitro by insertation of bacterial drug resistance markers. Inactivation of all three genes resulted in a transformant that is unable to grow photosynthetically but can be cultured photoheterotrophically. This mutant lacks oxygen evolving capacity but retains photosystem I activity. Room temperature measurements of chlorophyll a fluorescence induction demonstrated that the transformant exhibits a high fluorescence yield with little or no variable fluorescence. Immunoblot analyses showed complete loss of the psbA gene product (the DI polypeptide) from thylakoid membranes in the transformant. However, the extrinsic 33 kilodalton polypeptide of the water-splitting complex of photosystem II, is still present. The results indicate that assembly of a partial photosystem II complex may occur even in the absence of the intrinsic D1 polypeptide, a protein implicated as a crucial component of the photosystem II reaction center.
机译:发现集胞藻6803中的psbA属于具有三个拷贝的小的多基因家族。 psbA基因家族在体外通过插入细菌抗药性标记而失活。所有三个基因的失活导致转化子不能光合生长,但可以光异养培养。此突变体缺乏氧气释放能力,但保留了光系统I的活性。叶绿素a荧光诱导的室温测量表明,该转化体显示出高的荧光产量,几乎没有或没有可变的荧光。免疫印迹分析显示,转化体中类囊体膜中的psbA基因产物(DI多肽)完全丢失。然而,仍然存在光系统II的水分解复合物的外在的33道尔顿多肽。结果表明,即使不存在内在的D1多肽,也可能发生部分光系统II复合体的组装,而D1多肽是光系统II反应中心的重要组成部分。

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