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http://dx.doi.org/10.12750/JARB.37.2.80

Embryo sexing methods in bovine and its application in animal breed  

Bora, Shelema Kelbessa (Ethiopian Institute of Agricultural Research, National Agricultural Biotechnology Research Center)
Publication Information
Journal of Animal Reproduction and Biotechnology / v.37, no.2, 2022 , pp. 80-86 More about this Journal
Abstract
The ability to determine the sex of bovine embryos before the transfer is advantageous in livestock management, especially in dairy production, where female calves are preferred in milk industry. The milk production of female and male cattle benefits both the dairy and beef industries. Pre-implantation sexing of embryos also helps with embryo transfer success. There are two approaches for sexing bovine embryos in farm animals: invasive and non-invasive. A non-invasive method of embryo sexing retains the embryo's autonomy and, as a result, is less likely to impair the embryo's ability to move and implant successfully. There are lists of non-invasive embryo sexing such as; Detection of H-Y antigens, X-linked enzymes, and sexing based on embryo cleavage and development. Since it protects the embryo's autonomy, the non-invasive procedure is considered to be the safest. Invasive methods affect an embryo's integrity and are likely to damage the embryo's chances of successful transformation. There are different types of invasive methods such as polymerase chain reaction, detection of male chromatin Y chromosome-specific DNA probes, Loop-mediated isothermal amplification (LAMP), cytological karyotyping, and immunofluorescence (FISH). The PCR approach is highly sensitive, precise, and effective as compared to invasive methods of farm animal embryonic sexing. Invasive procedures, such as cytological karyotyping, have high accuracy but are impractical in the field due to embryonic effectiveness concerns. This technology can be applicable especially in the dairy and beef industry by producing female and male animals respectively. Enhancing selection accuracy and decreasing the multiple ovulation embryo transfer costs.
Keywords
animal breeding; bovine; DNA probes; embryo sexing; PCR;
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1 Akiyama K, Kobayashi J, Sato Y, Sata R, Ohashi M, Sasaki E, Oda Y, Ogawa Y, Ueda S, Nabenishi H, Matoba S. 2010. Calf production from vitrified bovine sexed embryos following instraw dilution. Anim. Sci. J. 81:461-466.   DOI
2 Cenariu M, Groza I, Pop RA, Stegeran B, Pall E, Catana L, Bartos A. 2008. Bovine embryo sexing using the fluorescence in situ hybridization (fish). Bull. Univ. Agric. Sci. Vet. Med. Cluj-Napoca Vet. Med. 65:109-113.
3 Cotinot C, Kirszenbaum M, Leonard M, Gianquinto L, Vaiman M. 1991. Isolation of bovine Y-derived sequence: potential use in embryo sexing. Genomics 10:646-653.   DOI
4 Sachan V, Kumar B, Kumar Agrawal J, Kumar A, Saxena A. 2020. Methods of embryo sexing in cattle breeding: a review. Iran. J. Appl. Anim. Sci. 10:1-8.
5 Malik HN, Singhal DK, Mukherjee A, Bara N, Kumar S, Saugandhika S, Mohanty AK, Kaushik JK, Bag S, Das BC, Bhanja SK, Malakar D. 2013. A single blastomere sexing of caprine embryos by simultaneous amplification of sex chromosome-specific sequence of SRY and amelogenin genes. Livest. Sci. 157:351-357.   DOI
6 Wakchaure R, Ganguly S, Praveen PK, Mahajan T. 2015. Methods for embryos sexing and their applications in animal breeding: a review. Octa J. Biosci. 3:47-49.
7 Hirayama H, Kageyama S, Moriyasu S, Sawai K, Onoe S, Takahashi Y, Katagiri S, Toen K, Watanabe K, Notomi T, Yamashina H, Matsuzaki S, Minamihashi A. 2004. Rapid sexing of bovine preimplantation embryos using loop-mediated isothermal amplification. Theriogenology 62:887-896.   DOI
8 Kitiyanant Y, Saikhun J, Siriaroonrat B, Pavasuthipaisit K. 2000. Sex determination by polymerase chain reaction and karyotyping of bovine embryos at first cleavage in vitro. Sci. Asia 26:9-13.   DOI
9 Singh J, Yadav SK, Gangwar DK, Singla SK. 2017. Molecular approaches for gender identification and sperm sex ratio determination in farm animals. Adv. Anim. Vet. Sci. 5:377-387.
10 Hirayama H, Kageyama S, Moriyasu S, Sawai K, Minamihashi A. 2013. Embryo sexing and sex chromosomal chimerism analysis by loop-mediated isothermal amplification in cattle and water buffaloes. J. Reprod. Dev. 59:321-326.   DOI
11 Sharma M, Singh A, Sharma N, Rawat S. 2017. Embryo sexing in cattle: review. Int. J. Curr. Innov. Res. 3:955-960.
12 Nagamine K, Hase T, Notomi T. 2002. Accelerated reaction by loop-mediated isothermal amplification using loop primers. Mol. Cell. Probes 16:223-229.   DOI
13 Lakshmy KV, Manimegalai J, Lambe U. 2018. Different methods of embryo sexing: a review. Pharma Innov. 7:170-172.
14 Kageyama S and Hirayama H. 2012. Sexing of bovine preimplantation embryos using loop-mediated isothermal amplification (LAMP). J. Mamm. Ova. Res. 29:113-118.   DOI
15 Maxwell WM, Evans G, Hollinshead FK, Bathgate R, de Graaf SP, Eriksson BM, Gillan L, Morton KM, O'Brien JK. 2004. Integration of sperm sexing technology into the ART toolbox. Anim. Reprod. Sci. 82-83:79-95.   DOI
16 Biologydictionary.net Editors. 2017. Barr body. https://biologydictionary.net/barr-body/. Accessed 19 March 2017.
17 Lee JH, Park JH, Lee SH, Park CS, Jin DI. 2004. Sexing using single blastomere derived from IVF bovine embryos by fluorescence in situ hybridization (FISH). Theriogenology 62:1452-1458.   DOI
18 Tavares KC, Carneiro IS, Rios DB, Feltrin C, Ribeiro AK, Gaudencio-Neto S, Martins LT, Aguiar LH, Lazzarotto CR, Calderon CE, Lopes FE, Teixeira LP, Bertolini M, Bertolini LR. 2016. A fast and simple method for the polymerase chain reaction-based sexing of livestock embryos. Genet. Mol. Res. 15:gmr.15017476.
19 Peippo J, Viitala S, Virta J, Raty M, Tammiranta N, Lamminen T, Aro J, Myllymaki H, Vilkki J. 2007. Birth of correctly genotyped calves after multiplex marker detection from bovine embryo microblade biopsies. Mol. Reprod. Dev. 74:1373-1378.   DOI
20 Mohammed AA and Al-Hozab A. 2016. Preselection of offspring sex at the time of conception in mammals. Aust. J. Basic Appl. Sci. 10:17-23.
21 da Cruz AS, Silva DC, Costa EO, De M Jr. P, da Silva CC, Silva DM, da Cruz AD. 2012. Cattle fetal sex determination by polymerase chain reaction using DNA isolated from maternal plasma. Anim. Reprod. Sci. 131:49-53.   DOI