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High‐efficiency genome editing using a dmc1 promoter‐controlled CRISPR/Cas9 system in maize

机译:使用DMC1启动子控制CRISPR / CAS9系统在玉米中进行高效基因组编辑

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Previous studies revealed that the promoters for driving both Cas9 and sgRNAs are quite important for efficient genome editing by CRISPR/Cas9 in plants. Here, we report our results of targeted genome editing using the maize dmc1 gene promoter combined with the U3 promoter for Cas9 and sgRNA, respectively. Three loci in the maize genome were selected for targeting. The T0 plants regenerated were highly efficiently edited at the target sites with homozygous or bi‐allelic mutants accounting for about 66%. The mutations in T0 plants could be stably transmitted to the T1 generation, and new mutations could be generated in gametes or zygotes. Whole‐genome resequencing indicated that no off‐target mutations could be detected in the predicted loci with sequence similarity to the targeted site. Our results show that the dmc1 promoter‐controlled (DPC) CRISPR/Cas9 system is highly efficient in maize and provide further evidence that the optimization of the promoters used for the CRISPR/Cas9 system is important for enhancing the efficiency of targeted genome editing in plants. The evolutionary conservation of the dmc1 gene suggests its potential for use in other plant species.
机译:以前的研究表明,用于驾驶CAS9和SGRNA的启动子对于植物中CRISPR / CAS9的有效基因组编辑非常重要。在这里,我们将玉米DMC1基因启动子与Cas9和SGRNA的U3启动子联合的靶向基因组编辑的结果报告。选择玉米基因组中的三个基因座进行靶向。再生的T0植物在靶位部位高效地编辑,纯合或双位等等突变体占约66%。 T0植物中的突变可以稳定地传递到T1生成,并且可以在配子或Zygot中产生新的突变。全基因组重构表明,在预测的基因座中,没有对目标位点的序列相似性没有检测到偏离目标突变。我们的研究结果表明,DMC1启动子控制(DPC)CRISPR / CAS9系统在玉米中高效,并提供进一步的证据表明,提供了用于CRISPR / CAS9系统的启动子的优化对于提高植物中靶向基因组编辑的效率是重要的。 DMC1基因的进化保护表明其在其他植物物种中使用的可能性。

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