| Literature DB >> 31558095 |
Fuminori Tanihara1, Maki Hirata1, Nhien Thi Nguyen1, Quynh Anh Le1, Manita Wittayarat2, Mokhamad Fahrudin3, Takayuki Hirano1, Takeshige Otoi1.
Abstract
CD163 is a putative fusion receptor for virus of porcine reproductive and respiratory syndrome (PRRS). In this study, we introduced a CRISPR/Cas9 system [guide RNAs (gRNAs) with Cas9 protein] targeting the CD163 gene into in vitro-fertilized porcine zygotes by electroporation to generate CD163-modified pigs. First, we designed four types of gRNAs that targeted distinct sites in exon 7 of the CD163 gene. Cas9 protein with different gRNAs was introduced into in vitro-fertilized zygotes by electroporation. When the electroporated zygotes were allowed to develop to blastocysts in vitro and the genome editing efficiency was evaluated using these blastocysts, three (gRNA1, 2, and 4) of the four gRNAs tested successfully edited the CD163 gene. To generate CD163-knockout pigs, a total of 200 electroporated zygotes using these three gRNAs were transferred into the oviducts of oestrous-synchronized surrogate and the surrogate gave birth to eight piglets. Subsequent sequence analysis revealed that one of the piglets carried no wild-type sequence in CD163 gene. The other seven piglets carried only wild-type sequence. Thus, we successfully generated a CD163-edited pig by electroporation of the CRISPR/Cas9 system into in vitro-fertilized zygotes, although further improvement is required to generate genetically modified pigs with high efficiency.Entities:
Keywords: CD163; CRISPR/Cas9; electroporation; in vitro fertilization; porcine reproductive and respiratory syndrome
Year: 2019 PMID: 31558095 DOI: 10.1080/10495398.2019.1668801
Source DB: PubMed Journal: Anim Biotechnol ISSN: 1049-5398 Impact factor: 2.282