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Efficient genome editing of wild strawberry genes, vector development and validation

机译:野生草莓基因的高效基因组编辑,矢量开发和验证

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The clustered regularly interspaced short palindromic repeats (CRISPR)–Cas9 system is an effective genome editing tool for plant and animal genomes. However, there are still few reports on the successful application of CRISPR–Cas9 to horticultural plants, especially with regard to germ‐line transmission of targeted mutations. Here, we report high‐efficiency genome editing in the wild strawberry Fragaria vesca and its successful application to mutate the auxin biosynthesis gene TAA1 and auxin response factor 8 (ARF8). In our CRISPR system, the Arabidopsis U6 promoter AtU6‐26 and the wild strawberry U6 promoter FveU6‐2 were each used to drive the expression of sgRNA, and both promoters were shown to lead to high‐efficiency genome editing in strawberry. To test germ‐line transmission of the edited mutations and new mutations induced in the next generation, the progeny of the primary (T0) transgenic plants carrying the CRISPR construct was analysed. New mutations were detected in the progeny plants at a high efficiency, including large deletions between the two PAM sites. Further, T1 plants harbouring arf8 homozygous knockout mutations grew considerably faster than wild‐type plants. The results indicate that our CRISPR vectors can be used to edit the wild strawberry genome at a high efficiency and that both sgRNA design and appropriate U6 promoters contribute to the success of genomic editing. Our results open up exciting opportunities for engineering strawberry and related horticultural crops to improve traits of economic importance.
机译:聚类定期间隙的短语重复(CRISPR)-CAS9系统是植物和动物基因组的有效基因组编辑工具。但是,关于成功应用CRISPR-CAS9到园艺植物的报道仍然很少,特别是关于靶向突变的种系传播。在此,我们在野草莓钙虫荚膜中报告高效基因组编辑及其成功应用于突变生长素生物合成基因TAA1和疾病响应因子8(ARF8)。在我们的CRISPR系统中,Arabidopsis U6启动子ATU6-26和野草莓U6启动子FVEU6-2各自用于驱动SGRNA的表达,并且显示出两种启动子导致草莓中的高效基因组编辑。为了测试编辑突变和新一代诱导的新突变的细菌透射,分析了携带CRISPR构建体的初级(T0)转基因植物的后代。以高效率在后代植物中检测到新的突变,包括两个PAM位点之间的大缺失。此外,患ARF8纯合敲除突变的T1植物比野生型植物增长得多。结果表明,我们的CRISPR载体可用于以高效率编辑野草莓基因组,并且SGRNA设计和适当的U6启动子都有助于基因组编辑的成功。我们的结果为工程草莓和相关园艺作物开辟了令人兴奋的机会,以改善经济重要性的特征。

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