卵裂球
清脆的
生物
桑格测序
胚胎
遗传学
基因组编辑
放大器
Cas9
基因分型
计算生物学
体细胞核移植
聚合酶链反应
突变
胚胎发生
基因
胚泡
基因型
作者
Jongki Cho,Kyungjun Uh,Junghyun Ryu,Xun Fang,Seonggyu Bang,Kiho Lee
标识
DOI:10.12750/jarb.35.4.323
摘要
Direct injection of genome editing tools such as CRISPR/Cas9 system into developing embryos has been widely used to generate genetically engineered pigs.The approach allows us to produce pigs carrying targeted modifications at high efficiency without having to apply somatic cell nuclear transfer.However, the targeted modifications during embryogenesis often result in mosaicism, which causes issues in phenotyping founder animals and establishing a group of pigs carrying intended modifications.This study was aimed to establish a genomic PCR and sequencing system of a single blastomere in the four-cell embryos to detect potential mosaicism.We performed genomic PCR in four individual blastomeres from four-cell embryos.We successfully amplified target genomic region from single blastomeres of 4-cell stage embryo by PCR.Sanger sequencing of the PCR amplicons obtained from the blastomeres suggested that PCR-based genotyping of single blastomere was a feasible method to determine mutation type generated by genome editing technology such as CRISPR/Cas9 in early stage embryos.In conclusion, we successfully genotyped single blastomeres in a single 4-cell stage embryo to detect potential mosaicism in porcine embryos.Our approach offers a simple platform that can be used to screen the prevalence of mosaicism from designed CRISPR/Cas9 systems.
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