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A rapid method for detection of mutations induced by CRISPR/Cas9-based genome editing in common wheat

机译:一种快速检测普通小麦CRISPR / CAS9基因组基因组诱导的突变的方法

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Genome editing using CRISPR/Cas9 is useful for common wheat because common wheat has allohexaploid nature and it can induce mutations simultaneously in three homoeologous genes. Although Agrobacterium -mediated transformation has advantages in genome editing, it still has low efficiency and requires relatively long time in wheat. Therefore, the use of guide RNAs (gRNAs) with efficient mutagenesis in vivo is one of the critical factors for producing genome-edited mutant lines in a short time. In this study, we targeted three genes in common wheat and established a rapid method for detection of mutations induced by the biolistic transient expression system. Biolistic transient expression of the gRNAs and Cas9 was achieved in immature wheat embryos. Mutations were detected a week later using PCR-RFLP and verified by the sequencing of genomic clones. We confirmed several types of mutations that occurred at different rates depending on the target sequences. Furthermore, frequencies of mutations tended to be higher at the targets that were edited at higher rates in the plants transformed by Agrobacterium . These results show that this method of rapid detection of edited mutations could be used for variety of applications, such as screening of target sequences or modified vectors for efficient CRISPR/Cas9 genome editing in wheat.
机译:使用CRISPR / CAS9的基因组编辑对于常见的小麦有用,因为常见的小麦具有allohexaploid性质,并且它可以在三种同源基因中同时诱导突变。虽然农杆菌介导的转化在基因组编辑方面具有优势,但它仍然具有低效率,并且在小麦中需要相对较长的时间。因此,在体内使用引导RNA(GRNA)与有效诱变的诱变是在短时间内产生基因组编辑突变线的关键因素之一。在这项研究中,我们针对普通小麦的三种基因,并建立了一种快速检测由生物瞬时表达系统诱导的突变的方法。 GRNA和Cas9的生物瞬态表达在未成熟的小麦胚胎中实现。使用PCR-RFLP检测突变,并通过基因组克隆的测序验证。我们根据靶序列确认了以不同速率发生的几种突变。此外,突变的频率倾向于以通过农杆菌转化的植物的较高速率编辑的靶标更高。这些结果表明,这种快速检测的编辑突变方法可用于各种应用,例如筛选靶序列或改性载体,用于小麦中的有效CRISPR / CAS9基因组编辑。

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