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首页> 外文期刊>Photosynthesis Research >Engineered ectopic expression of the psbA gene encoding the photosystem II D1 protein in Synechocystis sp. PCC6803
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Engineered ectopic expression of the psbA gene encoding the photosystem II D1 protein in Synechocystis sp. PCC6803

机译:拟南芥胞囊藻中编码光系统II D1蛋白的psbA基因的工程异位表达。 PCC6803

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摘要

A genetic vector–recipient system was developed to engineer expression of the wild-type psbA2 gene encoding the photosystem II (PSII) D1 protein only from a non-native location (ectopic) in the Synechocystis sp. PCC6803 and the result was a new strain, designated MK1. While MK1 accumulates near normal levels of PSII under low light conditions, it is very sensitive to photoinhibition. This phenotype can be traced to impaired PSII repair capacity. Based upon the hypothesis that the non-native transcriptional activity of the re-introduced psbA gene was insufficient to sustain the translation rate necessary for normal PSII repair rates, we conducted a quantitative analysis of the relationship between psbA transcript abundance on the rate of recovery from photoinhibition. Analysis of MK1 and two other engineered strains, with intermediate levels of psbA mRNA, indicated that transcript levels are indeed limiting the engineered strains. Furthermore, transcript levels may become limiting even in the wild-type, but only under very high light conditions when the demands for D1 replacement synthesis are maximal. The work extends the original studies of Komenda and colleagues (Komenda et al. (2000) Plant Mol Biol 42(4):635–645) and sets the stage for alternative approaches to engineering non-native expression of the D1 protein.
机译:开发了一种遗传载体-接收系统,以仅从集胞藻的非自然位置(异位)中表达编码光系统II(PSII)D1蛋白的野生型psbA2基因的表达。 PCC6803,结果是一个新菌株,命名为MK1。虽然MK1在弱光条件下会积累接近正常水平的PSII,但它对光抑制非常敏感。这种表型可以追溯到受损的PSII修复能力。基于以下假设:重新引入的psbA基因的非天然转录活性不足以维持正常PSII修复率所需的翻译率,因此,我们对psbA转录本丰度与从中恢复的速率之间的关系进行了定量分析。光抑制。对psbA mRNA处于中间水平的MK1和其他两个工程菌株的分析表明,转录本水平确实限制了工程菌株。此外,即使在野生型中,转录物水平也可能变得有限,但仅在非常高的光照条件下,D1替代合成的需求最大。这项工作扩展了Komenda及其同事的原始研究(Komenda等(2000)Plant Mol Biol 42(4):635-645),并为工程化D1蛋白非天然表达的替代方法奠定了基础。

著录项

  • 来源
    《Photosynthesis Research》 |2007年第3期|315-325|共11页
  • 作者单位

    Department of Microbiology and Molecular Genetics Oklahoma State University 307 Life Science East Stillwater OK 74078 USA;

    Department of Microbiology and Molecular Genetics Oklahoma State University 307 Life Science East Stillwater OK 74078 USA;

    Department of Microbiology and Molecular Genetics Oklahoma State University 307 Life Science East Stillwater OK 74078 USA;

    Department of Microbiology and Molecular Genetics Oklahoma State University 307 Life Science East Stillwater OK 74078 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Photosynthesis; Photoinhibition; D1 protein; Photosystem II; psbA gene; Synechocystis;

    机译:光合作用;光抑制;D1蛋白;光系统II;psbA基因;囊藻;

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