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Efficient CRISPR/Cas9-Mediated Genome Editing Using a Chimeric Single-Guide RNA Molecule

机译:使用嵌合单向导RNA分子进行高效的CRISPR / Cas9介导的基因组编辑

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摘要

The CRISPR/Cas9 system has been applied in diverse eukaryotic organisms for targeted mutagenesis. However, targeted gene editing is inefficient and requires the simultaneous delivery of a DNA template for homology-directed repair (HDR). Here, we used CRISPR/Cas9 to generate targeted double-strand breaks and to deliver an RNA repair template for HDR in rice (Oryza sativa). We used chimeric single-guide RNA (cgRNA) molecules carrying both sequences for target site specificity (to generate the double-strand breaks) and repair template sequences (to direct HDR), flanked by regions of homology to the target. Gene editing was more efficient in rice protoplasts using repair templates complementary to the non-target DNA strand, rather than the target strand. We applied this cgRNA repair method to generate herbicide resistance in rice, which showed that this cgRNA repair method can be used for targeted gene editing in plants. Our findings will facilitate applications in functional genomics and targeted improvement of crop traits.
机译:CRISPR / Cas9系统已应用于多种真核生物中,以进行定向诱变。但是,靶向基因编辑效率低下,需要同时交付用于同源性定向修复(HDR)的DNA模板。在这里,我们使用了CRISPR / Cas9来产生有针对性的双链断裂,并为水稻(Oryza sativa)中的HDR提供了RNA修复模板。我们使用嵌合的单向导RNA(cgRNA)分子携带两个序列以实现靶位点特异性(产生双链断裂)和修复模板序列(以指导HDR),其两侧为与靶标同源的区域。使用与非靶标DNA链而非靶标链互补的修复模板,基因编辑在水稻原生质体中更有效。我们应用这种cgRNA修复方法在水稻中产生除草剂抗性,这表明该cgRNA修复方法可用于植物中的靶向基因编辑。我们的发现将有助于功能基因组学的应用和作物性状的目标改良。

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