An efficient, low-resource workflow for bovine embryo sexing that combines whole genome amplification (WGA) with recombinase polymerase amplification-CRISPR-Cas12a (RPA-Cas12a) is developed and could reduce unnecessary cryopreservation and genotyping while improving the efficiency of genotype-informed cattle breeding programmes.
Abstract
Cattle in vitro fertilisation and embryo transfer programmes increasingly rely on embryo-level selection to accelerate genetic gain, but current sexing and genotyping workflows can be costly, slow and logistically demanding. This study developed an efficient, low-resource workflow for bovine embryo sexing that combines whole genome amplification (WGA) with recombinase polymerase amplification-CRISPR-Cas12a (RPA-Cas12a). It also assessed whether the same WGA biopsy products could be used for downstream single nucleotide polymorphism (SNP) microarray genotyping. A one-tube RPA-Cas12a assay targeting the bovine Y-chromosome S4 repeat was developed for fluorescence and lateral flow assay (LFA) readouts. Analytical sensitivity was assessed using serially diluted bovine genomic DNA (gDNA), and breed robustness was tested using male and female gDNA from five major beef breeds and Holstein cattle. The workflow was then applied to WGA products from 22 bovine blastocyst biopsies, with sex calls validated against an established real-time PCR melt curve assay and 100K SNP microarray genotyping. The assay detected male bovine gDNA down to 100 pg using both fluorescence and LFA readouts, with no signal from female gDNA. Male-specific detection was consistent across all breeds tested. All WGA-RPA-Cas12a sex calls from blastocyst biopsies were concordant with real-time PCR and SNP microarray sex calls, and WGA biopsy products produced genome-wide SNP call rates above 85%. This workflow provides a practical approach for rapid bovine embryo sex triage and could reduce unnecessary cryopreservation and genotyping while improving the efficiency of genotype-informed cattle breeding programmes.
Preimplantation genomic selection (PGS) using single nucleotide polymorphism (SNP) genotyping can be used to accelerate genetic improvement in cattle, but the technical components for in vitro-produced (IVP) embryos remain unvalidated in Japanese Black cattle; we aimed to address this gap in the present study. In the t...
Shoya Nakatsu, Takashi Fujii, Haruka Shimizu et al.· Journal of reproduction and...· 0 citations
ABSTRACT With the global population expected to reach 10 billion by 2050, sustainable livestock production is critical. Gene editing of the myostatin (MSTN) gene represents a promising strategy to enhance muscle growth in cattle. In this study, MSTN‐mutated founder (F0) cows were used to generate F1 offspring via ovum...
G. Gim, Bae Young Choi, Jeongbin Yi et al.· Animal Genetics· 0 citations
Genomics and selective breeding programs have contributed to substantial genetic improvement of cattle over many decades. In parallel, artificial reproductive technologies (ART) such as in vivo and in vitro embryo / calf production have contributed to faster genetic gain. Both cattle breeding and ART have advanced ra...
H. N. Kadarmideen· Journal of Animal Science· 0 citations
CRISPR/Cas9 is the most widely applied gene-editing (GnEd) technology in livestock, with more than 200 published studies reporting the generation of live, gene-edited animals for agricultural applications. This system consists of a Cas9 nuclease that cleaves DNA and a 19-20 base pair guide RNA (gRNA) that directs the...
Rebecca H. Finchum, William M. Muir, M. Mueller· Journal of Animal Science· 0 citations
Preimplantation genetic testing (PGT) represents an important diagnostic method in assisted reproductive technology (ART) for the screening of chromosomal and genetic aberrations prior to embryo transfer. Non-invasive PGT (niPGT) is a new technology that analyzes cell-free embryonic DNA (cfDNA) released into spent cult...
Sana Sharin Odayapurath, Fathima Noorah Thazhathu Kadavu, Khadeejathul Safwana Pallath et al.· International Journal of Rep...· 0 citations
Abstract Over the past four decades, reproductive biotechnologies have profoundly transformed cattle breeding by accelerating genetic progress and enabling the dissemination of elite genetics. In this article, I present a perspective based on more than 40 years of practical experience in embryo technologies within Auri...
S. Lacaze· Animal Reproduction· 0 citations
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