ArticleIn vitro cellular & developmental biology. Animal2019
Genome mutation after the introduction of the gene editing by electroporation of Cas9 protein (GEEP) system into bovine putative zygotes.
Article in In vitro cellular & developmental biology. Animal, 2019. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 11 papers.
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Who cites it
11 citing papers in PubMed.
- Impact of Curcumin on Frozen Bovine Sperm Quality and In Vitro Bovine Oocyte Maturation.Veterinary sciences · 2025Article
- Electroporation Delivery of Cas9 sgRNA Ribonucleoprotein-Mediated Genome Editing in Sheep IVF Zygotes.International journal of molecular sciences · 2024Article
- Effects of centrifugation treatment before electroporation on gene editing in pig embryos.In vitro cellular & developmental biology. Animal · 2024Article
- Genome editing: An insight into disease resistance, production efficiency, and biomedical applications in livestock.Functional & integrative genomics · 2024Review
- Optimising Electroporation Condition for CRISPR/Cas-Mediated Knockout in Zona-Intact Buffalo Zygotes.Animals : an open access journal from MDPI · 2023Article
- Ablation ofPNAS nexus · 2023Article
- Electroporation-Mediated Genome Editing of Livestock Zygotes.Frontiers in genetics · 2021Review
- Evaluation of mutation rates, mosaicism and off target mutations when injecting Cas9 mRNA or protein for genome editing of bovine embryos.Scientific reports · 2020Article
- One-Step Homology Mediated CRISPR-Cas Editing in Zygotes for Generating Genome Edited Cattle.The CRISPR journal · 2020Article
- Evaluation of multiple gene targeting in porcine embryos by the CRISPR/Cas9 system using electroporation.Molecular biology reports · 2020Article
- Efficient One-Step Knockout by Electroporation of Ribonucleoproteins Into Zona-Intact Bovine Embryos.Frontiers in genetics · 2020Article
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Authors and funding
9 authors.
Funding
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Abstract
The present study was designed to investigate the effects of voltage strength on embryonic developmental rate and mutation efficiency in bovine putative zygotes during electroporation with the CRISPR/Cas9 system to target the MSTN gene at different time points after insemination. Results showed that there was no significant interaction between electroporation time and voltage strength on the embryonic cleavage and blastocyst formation rates. However, increasing the voltage strength to 20 V/mm to electroporate the zygotes at 10 h after the start of insemination yielded significantly lower blastocyst formation rates (P < 0.05) than those of the 10-V/mm electroporated zygotes. Mutation efficiency was then assessed in individual blastocysts by DNA sequence analysis of the target sites in the MSTN gene. A positive correlation between mutation rate and voltage strength was observed. The mutation efficiency in mutant blastocysts was significantly higher in the zygotes electroporated with 20 V/mm at 10 h after the start of insemination (P < 0.05) than in the zygotes electroporated at 15 h, irrespective of the voltage strength. We also noted that a certain number of blastocysts from zygotes that were electroporated with more than 15 V/mm at 10 h (4.8-16.7%) and 20 V/mm at 15 h (4.8%) were biallelic mutants. Our results suggest that the voltage strength during electroporation as well as electroporation time certainly have effects on the embryonic developmental rate and mutation efficiency in bovine putative zygotes.
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