Production of gene-edited cloned cattle embryos using the CRISPR/EOCas12i system
Introduction The rapid development of genome editing technologies has enabled precise manipulation of livestock genomes for the improvement of production traits such as meat yield and milk quality. Myostatin (MSTN) and β-lactoglobulin (BLG) are key gene targets for enhancing muscle growth and reducing lactose intolerance, respectively. Methods In this study, we employed an optimized CRISPR/EOCas12i system to simultaneously target MSTN and BLG in bovine fetal fibroblasts (BFFs) using a single plasmid. Results T7E1 and Sanger sequencing confirmed efficient editing at multiple target sites, with EOCas12i producing deletions ranging from tens to over 100 bp. Furthermore, no off-target (OT) effects were detected at predicted loci, supporting the high specificity of this system in large animals. Gene-edited single-cell clones (SCCs) were expanded in conditioned medium, and selected double-knockout (DKO) clones served as nuclear donors for somatic cell nuclear transfer (SCNT) to produce MSTN/BLG double gene-edited cattle embryos. Discussion Collectively, this study demonstrates the feasibility of generating MSTN/BLG double gene-edited cattle embryos using a single CRISPR/EOCas12i plasmid and SCNT, providing a robust platform for multiplex genome editing aimed at improving meat production and milk traits, with potential applications in both agricultural and biomedical research.