Standardization of a Sex-Sorting Protocol for Stallion Spermatozoa by Means of Absolute RT-qPCR

Author:

Muñoz Erwin12ORCID,Castro Macarena13,Aguila Luis1,Contreras María José12,Fuentes Fernanda12,Arias María Elena14,Felmer Ricardo15

Affiliation:

1. Laboratory of Reproduction, Centre of Reproductive Biotechnology (CEBIOR-BIOREN), Faculty of Medicine, Universidad de La Frontera, Temuco, P.O. Box 54-D, Chile

2. Doctoral Program in Applied Cellular and Molecular Biology, Universidad de La Frontera, Temuco P.O. Box 54-D, Chile

3. Master of Science Program with Mention in Biology of Reproduction, Universidad de La Frontera, Temuco P.O. Box 54-D, Chile

4. Department of Agricultural Production, Faculty of Agriculture and Environmental Sciences, Universidad de La Frontera, Temuco P.O. Box 54-D, Chile

5. Department of Agricultural Sciences and Natural Resources, Faculty of Agriculture and Environmental Sciences, Universidad de La Frontera, Temuco P.O. Box 54-D, Chile

Abstract

Sperm sexing is a technology that can generate great economic benefits in the animal production sector. Techniques such as sex-sorting promise over 90% accuracy in sperm sexing. However, for the correct standardization of the technique, some laboratory methodologies are required. The present manuscript describes in detail a standardized equine sperm sex-sorting protocol using an absolute qPCR-based methodology. Furthermore, the results of absolute qPCR were implemented and validated by generating equine/bovine heterologous embryos by intracytoplasmic sperm injection (ICSI) of presumably sexed equine spermatozoa into bovine oocytes using a piezoelectric system (Piezo-ICSI). Our results indicated that equine sex-sorting spermatozoa had a 97% and 94% certainty for X and Y sperm, respectively, while presumptive female and male equine/bovine hybrid embryos, generated by Piezo-ICSI, had an accuracy of 92% with respect to the desired sex. Therefore, it is concluded that the presented methodology is a reliable, cost-effective, and relatively simple option for standardizing sex-sorting of equine spermatozoa. This is supported by the results of the correct sexing of Piezo-ICSI heterologous embryos generated with the sexed spermatozoa, validating the correct sexing and viability of these gametes.

Funder

ANID, Chile

National Doctoral Scholarship ANID

Programa de Formacion de Investigadores Postdoctorales, Universidad de La Frontera

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

Reference26 articles.

1. Bovine sperm sex-selection technology in Japan;Naniwa;Reprod. Med. Biol.,2019

2. Sex determination and gonadal sex differentiation in the chicken model;Hirst;Int. J. Dev. Biol.,2018

3. Small ruminant SexedULTRA™ sperm sex-sorting: Status report and recent developments;Moreno;Theriogenology,2021

4. Bovine semen sexing: Sperm membrane proteomics as candidates for immunological selection of X- and Y-chromosome-bearing sperm;Quelhas;Vet. Med. Sci.,2021

5. Biochemical Features of X or Y Chromosome-Bearing Spermatozoa for Sperm Sexing;Pozdyshev;Biochemistry,2023

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1. The impact of induced pluripotent stem cells in animal conservation;Veterinary Research Communications;2024-01-16

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