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Efficient CRISPR/Cas9-mediated biallelic gene disruption and site-specific knockin after rapid selection of highly active sgRNAs in pigs

机译:快速选择猪中高活性的sgRNA后高效CRISPR / Cas9介导的双等位基因破坏和位点特异性敲入

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摘要

Genetic engineering in livestock was greatly enhanced by the emergence of clustered regularly interspaced short palindromic repeats (CRISPR)/CRISPR-associated 9 (Cas9), which can be programmed with a single-guide RNA (sgRNA) to generate site-specific DNA breaks. However, the uncertainties caused by wide variations in sgRNA activity impede the utility of this system in generating genetically modified pigs. Here, we described a single blastocyst genotyping system to provide a simple and rapid solution to evaluate and compare the sgRNA efficiency at inducing indel mutations for a given gene locus. Assessment of sgRNA mutagenesis efficiencies can be achieved within 10 days from the design of the sgRNA. The most effective sgRNA selected by this system was successfully used to induce site-specific insertion through homology-directed repair at a frequency exceeding 13%. Additionally, the highly efficient gene deletion via the selected sgRNA was confirmed in pig fibroblast cells, which could serve as donor cells for somatic cell nuclear transfer. We further showed that direct cytoplasmic injection of Cas9 mRNA and the favorable sgRNA into zygotes could generate biallelic knockout piglets with an efficiency of up to 100%. Thus, our method considerably reduces the uncertainties and expands the practical possibilities of CRISPR/Cas9-mediated genome engineering in pigs.
机译:簇状规则间隔的短回文重复序列(CRISPR)/ CRISPR相关的9(Cas9)的出现极大地增强了牲畜的基因工程,该序列可以用单向导RNA(sgRNA)编程以产生位点特异性DNA断裂。但是,由sgRNA活性的广泛差异引起的不确定性阻碍了该系统在产生转基因猪方面的实用性。在这里,我们描述了单个胚泡基因分型系统,以提供一种简单快速的解决方案来评估和比较针对给定基因位点的ind突变诱导sgRNA的效率。 sgRNA诱变效率的评估可在sgRNA设计后的10天内完成。通过该系统选择的最有效的sgRNA已成功通过同源性定向修复以超过13%的频率诱导位点特异性插入。此外,在猪成纤维细胞中证实了通过选定的sgRNA进行的高效基因删除,它可以用作体细胞核移植的供体细胞。我们进一步表明,将Cas9 mRNA和有利的sgRNA直接胞质注射到受精卵可以产生双等位基因敲除仔猪,效率高达100%。因此,我们的方法大大减少了不确定性,并扩大了CRISPR / Cas9介导的基因组工程在猪中的实际可能性。

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