Kidding after Transfer of <i>in Vitro</i> Produced Saanen Goat Embryos into Local Ukrainian Breed Recipients in Different Seasons — Oak Academic Publishing
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Kidding after Transfer of <i>in Vitro</i> Produced Saanen Goat Embryos into Local Ukrainian Breed Recipients in Different Seasons
LLC “Institute of Contemporary Veterinary Technologies”, Cherevky, Ukraine
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Farm “Tatyana 2011”, Cherevky, Ukraine
,
LLC “Institute of Contemporary Veterinary Technologies”, Cherevky, Ukraine
,
LLC “Institute of Contemporary Veterinary Technologies”, Cherevky, Ukraine
,
LLC “Institute of Contemporary Veterinary Technologies”, Cherevky, Ukraine
,
LLC “Institute of Contemporary Veterinary Technologies”, Cherevky, Ukraine
,
LLC “Institute of Contemporary Veterinary Technologies”, Cherevky, Ukraine
,
Department for Cryobiology of the Reproductive System, Institute for Problems of Cryobiology and Cryomedicine of National Academy of Science of Ukraine, Kharkiv, Ukraine
1 LLC “Institute of Contemporary Veterinary Technologies”, Cherevky, Ukraine
2 Farm “Tatyana 2011”, Cherevky, Ukraine
3 LLC “Institute of Contemporary Veterinary Technologies”, Cherevky, Ukraine
4 LLC “Institute of Contemporary Veterinary Technologies”, Cherevky, Ukraine
5 LLC “Institute of Contemporary Veterinary Technologies”, Cherevky, Ukraine
6 LLC “Institute of Contemporary Veterinary Technologies”, Cherevky, Ukraine
7 LLC “Institute of Contemporary Veterinary Technologies”, Cherevky, Ukraine
8 Department for Cryobiology of the Reproductive System, Institute for Problems of Cryobiology and Cryomedicine of National Academy of Science of Ukraine, Kharkiv, Ukraine
In recent years, the demand for goat products has been growing due to the fact that goat milk has a number of advantages over cow milk, for example, it is low in lactose, and is considered less allergenic and easier to digest. To increase production during both breeding and non-breeding seasons and reduce the price of dairy products, it is necessary to effectively use reproductive management and assisted reproductive technologies. In vitro embryo production makes it possible to obtain a large number of eggs from goats, which for some reason are unable to conceive, but have genetic value. Afterward in vitro produced embryos can be transferred into recipient goats of other less genetically valuable breeds, such as the Ukrainian local breed. Therefore, the aim of the present study was to investigate the effectiveness of transfers of in vitro produced embryos of Saanen goats into surrogate sires of the Ukrainian local breed in different seasons. All manipulations with animals were carried out following ethical standards (Strasbourg, 1986). Six Saanen goats were selected as the oocyte donors. After the hormonal stimulation oocytes were retrieved by laparoscopic ovum pick-up. In vitro produced embryos were transferred laparotomically into 24 recipients of Ukrainian local breed. Fifty days after embryo transfers, pregnancies were determined by ultrasound diagnostics. Although the embryo development rate in the breeding season was 20% higher than in the non-breeding season, there was no difference in pregnancy and kidding rates between seasons. In conclusion, the transfer of in vitro produced Saanen goat embryos to recipients of the Ukrainian local breed gives the opportunity to achieve pregnancy and kidding regardless of the breeding season, which will enable a faster and more efficient increase in the livestock of highly productive goats in Ukraine in the post-war period.
KeywordsGoats<i>in Vitro</i>Produced EmbryosSaanen BreedGoat ReproductionEmbryo Transfer
The World Is at a Critical Juncture. https://www.fao.org/state-of-food-security-nutrition/en/
Lozynska, I., Ladyka, L., Opara, V. and Nechyporenko, V. (2020) Goat Breeding: A Home Hobby or Perspective Farmers Business in Ukraine. Studies of Applied Economics, 38, No. 4. https://doi.org/10.25115/eea.v38i4.3964
Roy, D., Ye, A., Moughan, P.J. and Singh, H. (2020) Composition, Structure, and Digestive Dynamics of Milk from Different Species—A Review. Frontiers in Nutrition, 7, Article 577759. https://doi.org/10.3389/fnut.2020.577759
Lad, S.S., Aparnathi, K.D., Mehta, B. and Velpula, S. (2017) Goat Milk in Human Nutrition and Health—A Review. International Journal of Current Microbiology and Applied Sciences, 6, 1781-1792. https://doi.org/10.20546/ijcmas.2017.605.194
Boyazoglu, J., Hatziminaoglou, I. and Morand-Fehr, P. (2005) The Role of the Goat in Society: Past, Present and Perspectives for the Future. Small Ruminant Research, 60, 13-23. https://doi.org/10.1016/j.smallrumres.2005.06.003
Dubeuf, J.P. and Boyazoglu, J. (2009) An International Panorama of Goat Selection and Breeds. Livestock Science, 120, 225-231. https://doi.org/10.1016/j.livsci.2008.07.005
Redden, R. and Thorne, J.W. (2020) Reproductive Management of Sheep and Goats. In: Bazer, F.W., Lamb, G.C. and Wu, G.Y., Eds., Animal Agriculture: Sustainability, Challenges and Innovations, Academic Press, Cambridge, 211-230. https://doi.org/10.1016/B978-0-12-817052-6.00012-4
Ledda, S. and Gonzalez-Bulnes, A. (2018) ET-Technologies in Small Ruminants. In: Niemann, H. and Wrenzycki, C., Eds., Animal Biotechnology 1, Springer, Cham, 135-166. https://doi.org/10.1007/978-3-319-92327-7_6
Diskin, M. and Morris, D. (2008) Embryonic and Early Foetal Losses in Cattle and Other Ruminants. Reproduction in Domestic Animals, 43, 260-267. https://doi.org/10.1111/j.1439-0531.2008.01171.x
Ermilio, E.M. and Smith, M.C. (2011) Treatment of Emergency Conditions in Sheep and Goats. Veterinary Clinics of North America: Food Animal Practice, 27, 33-45. https://doi.org/10.1016/j.cvfa.2010.10.005
Amiridis, G.S. and Cseh, S. (2012) Assisted Reproductive Technologies in the Reproductive Management of Small Ruminants. Animal Reproduction Science, 130, 152-161. https://doi.org/10.1016/j.anireprosci.2012.01.009
Kidding Rate
Breeding Season
Buriak, I., Fleck, R.A., Goltsev, A., Shevchenko, N., Petrushko, M., Yurchuk, T., Puhovkin, A., Rozanova, S., Guibert, E.E., Robert, M.C., de Paz, L.J., Powell-Palm, M.J. and Fuller, B. (2020) Translation of Cryobiological Techniques to Socially Economically Deprived Populations—Part 1: Cryogenic Preservation Strategies. Journal of Medical Devices, 14, Article ID: 010801. https://doi.org/10.1115/1.4045878
Kopeika, E.F., Petrushko, M.P., Piniaiev, V.I., Yurchuk, T.O., Pavlovich, O.V., Mikson, K.B., Butskyi, K.I., Hapon, H.O. and Puhovkin, A.Y. (2019) Cryopreservation of Reproductive Cells and Embryos of Laboratory, Agricultural and Wild Animals. Problems of Cryobiology and Cryomedicine, 29, 3-18. https://doi.org/10.15407/cryo29.01.003
Leboeuf, B., Delgadillo, J., Manfredi, E., Piacre, A., Clment, V., Martin, P. and de Cremoux, R. (2008) Management of Goat Reproduction and Insemination for Genetic Improvement in France. Reproduction in Domestic Animals, 43, 379-385. https://doi.org/10.1111/j.1439-0531.2008.01188.x
Bogdaniuk, A., Berestovoyy, O., Tsvyk, V., Garkavii, V., Yusifli, N., Sigunov, O. and Kramareva, O. (2020) Different Ovarian Stimulation Protocols Used Prior Laparoscopic Ovum Pickup in Saanen Goats: Preliminary Results. Animal Reproduction, 17, No. 3. https://www.sbte.org.br/
Bogdaniuk, A., Garkavii, V. and Petrushko, M. (2022) Seasonal Variability in Cryoresistance of Saanen Goats Spermatozoa and Reproductive Characteristics. Problems of Cryobiology and Cryomedicine, 32, 34-43. https://doi.org/10.15407/cryo32.01.034
Bogdaniuk, A.O., Yurchuk, T.O. and Petrushko, M.P. (2022) Seasonal Differences in Sperm Characteristics and the Level of DNA Fragmentation in Fresh and Cryopreserved Sperm of Saanen Goats. Cytology and Genetics, 56, 410-416. https://doi.org/10.3103/S0095452722050036
Bogdaniuk, A. and Petrushko, M. (2023) Morphological and Morphometric Characteristics of Fresh and Cryopreserved Spermatozoa of Saanen Bucks. Agricultural Science and Practice, 9, 29-35. https://doi.org/10.15407/agrisp9.03.029
Morales, F.R., Castel Genis, H.M. and Mena Guerrero, Y. (2019) Current Status, Challenges and the Way Forward for Dairy Goat Production in Europe. Asian-Australian Journal of Animal Sciences, 32, 1256-1265. https://doi.org/10.5713/ajas.19.0327
Baldassarre, H. (2021) Laparoscopic Ovum Pick-Up followed by in vitro Embryo Production and Transfer in Assisted Breeding Programs for Ruminants. Animals, 11, Article 216. https://doi.org/10.3390/ani11010216
Morais, M.C.C., Esteves, L.V., Souza-Fabjan, J.M.G., Oliveira, M.E.F., Silva, M.R., Brandão, F.Z. and Fonseca, J.F. (2020) Factors Affecting Pregnancy Rates for Goat Embryos Recovered and Transferred by Transcervical Route. Small Ruminant Research, 192, Article ID: 106215. https://doi.org/10.1016/j.smallrumres.2020.106215
Rahman, M., Rahman, M.M., Embong, W.K. and Abdullah, R.B. (2018) Effect of Recipient Surgery Cycles on Survival Rate of Transferred Embryo in Goats. Pertanika Journal of Tropical Agricultural Science, 41, 1731-1740. http://www.pertanika.upm.edu.my/
Greyling, J.P., van der Nest, M., Schwalbach, L.M. and Muller, T. (2002) Superovulation and Embryo Transfer in South African Boer and Indigenous Feral Goats. Small Ruminant Research, 43, 45-51. https://doi.org/10.1016/S0921-4488(01)00257-7
Quan, F., Zhang, Z., An, Z., Hua, S., Wan, M., Zhao, X. and Zhang, Y. (2010) Effect of Transporting Donor or Recipient Does and Their Embryos on the Outcome of Fresh Embryo Transfer in Boer Goats. Small Ruminant Research, 88, 1-5. https://doi.org/10.1016/j.smallrumres.2009.10.015
Härter, C.J., Castagnino, D.S., Rivera, A.R., Lima, L.D., Silva, H.G., Mendonça, A.N., Bonfim, G.F., Liesegang, A., St-Pierre, N. and Teixeira, I.A. (2015) Mineral Metabolism in Singleton and Twin-Pregnant Dairy Goats. Asian-Australasian Journal of Animal Sciences, 28, 37-49. https://doi.org/10.5713/ajas.14.0214
Härter, C., Lima, L., Castagnino, D., Silva, H., Figueiredo, F., St-Pierre, N. and Teixeira, I. (2017) Net Mineral Requirements of Dairy Goats during Pregnancy. Animal, 11, 1513-1521. https://doi.org/10.1017/S1751731117000258
Liu, X., Zhang, L., Han, J., Yang, L., Cui, J., Che, S. and Song, Y. (2019) A Comparative Analysis of Gene Expression Induced by the Embryo in the Caprine Endometrium. Veterinary Medicine and Science, 6, 196-203. https://doi.org/10.1002/vms3.221
Zhang, L., An, X.P., Liu, X.R., Fu, M.Z., Han, P., Peng, J.Y. and Song, Y.X. (2015) Characterization of the Transcriptional Complexity of the Receptive and Pre-Receptive Endometria of Dairy Goats. Scientific Reports, 5, Article No. 14244. https://doi.org/10.1038/srep14244