首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Stable nuclear transformation of Chlamydomonas reinhardtii by using a C. reinhardtii gene as the selectable marker.
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Stable nuclear transformation of Chlamydomonas reinhardtii by using a C. reinhardtii gene as the selectable marker.

机译:通过使用莱茵衣藻基因作为选择标记对莱茵衣藻进行稳定的核转化。

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摘要

We have developed a stable nuclear transformation system for the unicellular green alga Chlamydomonas reinhardtii. Transformation was accomplished by introducing the cloned C. reinhardtii oxygen-evolving enhancer protein 1 (OEE1) gene into C. reinhardtii cells by bombardment with DNA-coated tungsten particles. The recipient strain was an OEE1-deficient, nonphotosynthetic, acetate-requiring mutant, which recovered photosynthetic competence after transformation, and was therefore able to grow in the absence of acetate. Analysis of several transformants indicates that transformation has proceeded via second-site integration of the cloned gene, leaving the endogenous mutant gene intact. In genetic crosses of transformants with wild type, both mutant and wild-type phenotypes were recovered, showing that the photosynthetic competence of transformants was due not to reversion of the original locus but rather to expression of the introduced gene. We suggest that the success of the present system is largely due to using a homologous C. reinhardtii gene, leading to stable maintenance and expression of the gene. Transformation with heterologous genes may be problematic because of poor expression due to an unusual codon bias in C. reinhardtii.
机译:我们已经为单细胞绿藻莱茵衣藻开发了稳定的核转化系统。通过用DNA包被的钨粒子轰击将克隆的莱茵衣藻放氧增强子蛋白1(OEE1)基因导入莱茵衣藻细胞来完成转化。受体菌株是OEE1缺陷型,非光合,需要乙酸盐的突变体,在转化后恢复了光合能力,因此能够在没有乙酸盐的情况下生长。对几种转化子的分析表明,转化是通过克隆基因的第二位整合进行的,而使内源突变基因保持完整。在具有野生型的转化子的遗传杂交中,突变型和野生型表型均被回收,这表明转化子的光合能力不是由于原始基因座的回复,而是由于引入基因的表达。我们建议,本系统的成功很大程度上归因于使用同源的莱茵衣藻基因,从而导致该基因的稳定维持和表达。用异源基因转化可能是有问题的,因为由于莱茵衣藻中异常的密码子偏倚而导致表达差。

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