Department of Animal Science, University of California - Davis, Davis, CA, USA.
Department of Population Health and Reproduction, University of California - Davis, Davis, CA, USA.
Sci Rep. 2020 Dec 18;10(1):22309. doi: 10.1038/s41598-020-78264-8.
The CRISPR/Cas9 genome editing tool has the potential to improve the livestock breeding industry by allowing for the introduction of desirable traits. Although an efficient and targeted tool, the CRISPR/Cas9 system can have some drawbacks, including off-target mutations and mosaicism, particularly when used in developing embryos. Here, we introduced genome editing reagents into single-cell bovine embryos to compare the effect of Cas9 mRNA and protein on the mutation efficiency, level of mosaicism, and evaluate potential off-target mutations utilizing next generation sequencing. We designed guide-RNAs targeting three loci (POLLED, H11, and ZFX) in the bovine genome and saw a significantly higher rate of mutation in embryos injected with Cas9 protein (84.2%) vs. Cas9 mRNA (68.5%). In addition, the level of mosaicism was higher in embryos injected with Cas9 mRNA (100%) compared to those injected with Cas9 protein (94.2%), with little to no unintended off-target mutations detected. This study demonstrated that the use of gRNA/Cas9 ribonucleoprotein complex resulted in a high editing efficiency at three different loci in bovine embryos and decreased levels of mosaicism relative to Cas9 mRNA. Additional optimization will be required to further reduce mosaicism to levels that make single-step embryo editing in cattle commercially feasible.
CRISPR/Cas9 基因组编辑工具具有改善家畜养殖行业的潜力,可用于引入理想的特征。尽管这是一种高效且靶向的工具,但 CRISPR/Cas9 系统可能存在一些缺点,包括脱靶突变和嵌合体,特别是在用于发育胚胎时。在这里,我们将基因组编辑试剂引入到单细胞牛胚胎中,比较 Cas9 mRNA 和蛋白对突变效率、嵌合体水平的影响,并利用下一代测序评估潜在的脱靶突变。我们设计了靶向牛基因组中三个基因座(POLLED、H11 和 ZFX)的指导 RNA,并发现 Cas9 蛋白(84.2%)注射的胚胎的突变率显著高于 Cas9 mRNA(68.5%)。此外,与 Cas9 蛋白(94.2%)注射的胚胎相比,Cas9 mRNA 注射的胚胎的嵌合体水平更高(100%),几乎没有检测到意外的脱靶突变。本研究表明,gRNA/Cas9 核糖核蛋白复合物的使用可在牛胚胎中的三个不同基因座上产生高编辑效率,并降低与 Cas9 mRNA 相比的嵌合体水平。需要进一步优化以进一步降低嵌合体水平,从而使牛的单步胚胎编辑在商业上可行。