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Multigene Knockout Utilizing Off-Target Mutations of the CRISPR/Cas9 System in Rice

机译:利用水稻中CRISPR / Cas9系统脱靶突变的多基因敲除

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The clustered regularly interspaced short palindromic repeat (CRISPR)-associated endonuclease 9 (CRISPR/Cas9) system has been demonstrated to be a robust genome engineering tool in a variety of organisms including plants. However, it has been shown that the CRISPR/Cas9 system cleaves genomic DNA sequences containing mismatches to the guide RNA strand. We expected that this low specificity could be exploited to induce multihomeologous and multi-paralogous gene knockouts. In the case of polyploid plants, simultaneous modification of multiple homeologous genes, i.e. genes with similar but not identical DNA sequences, is often needed to obtain a desired phenotype. Even in diploid plants, disruption of multiparalogous genes, which have functional redundancy, is often needed. To validate the applicability of the CRISPR/Cas9 system to target mutagenesis of paralogous genes in rice, we designed a single-guide RNA (sgRNA) that recognized 20 bp sequences of cyclin-dependent kinase B2 (CDKB2) as an on-target locus. These 20 bp possess similarity to other rice CDK genes (CDKA1, CDKA2 and CDKB1) with different numbers of mismatches. We analyzed mutations in these four CDK genes in plants regenerated from Cas9/sgRNA-transformed calli and revealed that single, double and triple mutants of CDKA2, CDKB1 and CDKB2 can be created by a single sgRNA.
机译:聚簇的规则间隔的短回文重复(CRISPR)相关的核酸内切酶9(CRISPR / Cas9)系统已被证明是包括植物在内的多种生物的强大基因组工程工具。然而,已显示出CRISPR / Cas9系统裂解包含与指导RNA链不匹配的基因组DNA序列。我们预期可以利用这种低特异性诱导多同源和多旁同源基因敲除。对于多倍体植物,常常需要同时修饰多个同源基因,即具有相似但不相同的DNA序列的基因,以获得所需的表型。即使在二倍体植物中,也经常需要破坏具有功能冗余的多旁系基因。为了验证CRISPR / Cas9系统靶向水稻中旁系同源基因诱变的适用性,我们设计了单向导RNA(sgRNA),该RNA将20 bp的细胞周期蛋白依赖性激酶B2(CDKB2)序列识别为靶位。这20 bp与其他水稻CDK基因(CDKA1,CDKA2和CDKB1)具有不同的错配数相似。我们分析了从Cas9 / sgRNA转化的愈伤组织再生的植物中这四个CDK基因的突变,并揭示了单个sgRNA可以产生CDKA2,CDKB1和CDKB2的单,双和三突变体。

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