Handmade cloned bovine embryos, parthenogenesis and in vitro fertilization: a comparison

Autores/as

  • N. A. Gómez Biogenesis Research Group, School of Agricultural Sciences, University of Antioquia. Carrera 75 N° 65-87, Bloque 46-202, AA 1226, Medellín - Colombia
  • M. M. Ramirez Biogenesis Research Group, School of Agricultural Sciences, University of Antioquia. Carrera 75 N° 65-87, Bloque 46-202, AA 1226, Medellín - Colombia
  • Z. T. Ruiz-Cortes Biogenesis Research Group, School of Agricultural Sciences, University of Antioquia. Carrera 75 N° 65-87, Bloque 46-202, AA 1226, Medellín - Colombia

DOI:

https://doi.org/10.25127/ricba.20171.161

Resumen

The handmade cloning and parthenogenesis as a control leads to the possibility of studying biological processes such as cell reprogramming, epigenetics, embryo genome activation and pre- and post-natal development. The objective of this study was to standardize the process the handmade cloning (HCM) and to compare the resultant embryo production with parthenogenesis and in vitro fertilization (IVF). The primary fibroblast culture was established from explants of ear, the manual cloning technique was standardized with this fibroblast and 10 processes to cloning, parthenogenesis and fertilization in vitro were performed, and the compared production and embryo quality was performed by an ANOVA. An in vitro culture of fibroblast cells was established with optimal characteristics, allowing the genetic material to be used in the process of cloning. The parthenote group without zona pellucida (ZP) exhibited a higher cleavage rate compared with the other groups of parthenotes with ZP and IVF embryo (p<0.05). The number of blastomeres was greater in the IVF (109.81±11.70) compared with the parthenote with ZP (73.73±7.09), without ZP (78.16±7.65) and clone (CL, 77.5±8.23) groups. Embryo production in the CL, ZP, without ZP and IVF groups was not significantly different (29.7, 37.6, 33.8 and 35.2% respectively). The HCM technique was successfully standardized in the laboratory. The resultant embryo production was similar between hand-made cloned embryos, parthenogenesis and in vitro fertilization. The findings of this work give rise to different routes for studying embryology and contribute to the optimization of this technique for commercial purposes.

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Citas

Almeida, A. B. D. (2008). Sistema biológico de aumento da taxa de prenhez. Embriões partenogenéticos podem ajudar o reconhecimento materno da gestação (Doctoral dissertation, Universidade de São Paulo).

Campbell, K. H. (2007). Ten years of cloning: questions answered and personal reflections. Cloning and stem cells, 9(1), 8-11.

Daniel, S. M., Raipuria, P., & Sarkhel, B. C. (2008). Efficiency of cloned embryo production using different types of cell donor and electric fusion strengths in goats. Small Ruminant Re-search, 77(1), 45-50.

Dumoulin, J. C., Meijers, C. J., Bras, M., Coonen, E., Geraedts, J. P., & Evers, J. L. (1999). Effect of oxygen concentration on human in-vitro fertilization and embryo culture. Human Repro-duction, 14(2), 465-469.

Farin, C. E., Farin, P. W., & Piedrahita, J. A. (2004). Development of fetuses from in vitro-produced and cloned bovine embryos. Journal of animal science, 82(13_suppl), E53-E62.

Figueiró, G. M., Fialho, S. S., Brum, D. D. S., Pasin, M., Rauber, L. P., Bernardi, M. L., ... & Silva, C. A. M. (2002). Produção in vitro de embriões bovinos com soro de égua em diferentes fases do estro. Acta scientiae veterinariae. Vol. 30, n. 1(2002), p. 1-8.

Forell, F. (2008). Otimização do sistema de produção de clones por transferência nuclear com a utilização de oócitos vitrificados e diferentes tipos celulares como doadores de núcleo. Acta Scientiae Veterinariae, 36(3), 315-316.

Freshney, R. I. (2005). Culture of specific cell types. John Wiley & Sons, Inc.

Galli, C., Lagutina, I., & Lazzari, G. (2003). Introduction to cloning by nuclear transplantation. Cloning & Stem Cells, 5(4), 223-232.

Gomez, E., Caamano, J. N., Bermejo-Alvarez, P., Carmen, D. Í. E. Z., Munoz, M., Martin, D., ... & Gutierrez-Adan, A. (2009). Gene expression in early-expanded parthenogenetic and in vitro fertilized bovine blastocysts. Journal of Reproduction and Development, 55(6), 607-614.

Hall, V. J., Ruddock, N. T., Cooney, M. A., Korfiatis, N. A., Tecirlioglu, R. T., Downie, S., ... & French, A. J. (2006). Production of a cloned calf using zona-free serial nuclear transfer. Theriogenology, 65(2), 424-440.

Hirayama, H., Moriyasu, S., Kageyama, S., Sawai, K., Takahashi, H., Geshi, M., ... & Matsui, M. (2014). Enhancement of maternal recognition of pregnancy with parthenogenetic embry-os in bovine embryo transfer. Theriogenology, 81(8), 1108-1115.

Hoffert, K. A., Batchelder, C. A., Bertolini, M., Moyer, A. L., Famula, T. R., Anderson, D. L., & Anderson, G. B. (2005). Measures of maternal-fetal interaction in day-30 bovine pregnan-cies derived from nuclear transfer. Cloning and stem cells, 7(4), 289-305.

Im, G. S., Seo, J. S., Hwang, I. S., Kim, D. H., Kim, S. W., Yang, B. C., ... & Prather, R. S. (2006). Development and apoptosis of pre-implantation porcine nuclear transfer embryos acti-vated with different combination of chemicals. Molecular Reproduction and Development, 73(9), 1094-1101.

Kharche, S. D., & Birade, H. S. (2013). Parthenogenesis and activation of mammalian oocytes for in vitro embryo production: A review.

Lewis, I. M., French, A. J., Tecirlioglu, R. T., Vajta, G., McClintock, A. E., Nicholas, K. R., ... & Trounson, A. O. (2005). Commercial aspects of cloning and genetic modification in cattle. Animal Production Science, 44(11), 1105-1111.

Miyauchi, T. A. (2012). Aspectos biológicos do desenvolvimento pré-implantacional de em-briões bovinos partenogenéticos ou fecundados in vitro.

Oback, B., & Wells, D. N. (2007). Donor cell differentiation, reprogramming, and cloning efficiency: elusive or illusive correlation?. Molecular reproduction and development, 74(5), 646-654.

Paffoni, A., Brevini, T. A. L., Gandolfi, F., & Ragni, G. (2008). Parthenogenetic activation: biology and applications in the ART laboratory. Placenta, 29, 121-125.

Parrish, J. J., Susko-Parrish, J., Winer, M. A., & First, N. L. (1988). Capacitation of bovine sperm by heparin. Biology of reproduction, 38(5), 1171-1180.

Paterson, L., DeSousa, P., Ritchie, W., King, T., & Wilmut, I. (2003). Application of reproductive biotechnology in animals: implications and potentials: applications of reproductive clon-ing. Animal reproduction science, 79(3), 137-143.

Pereira, A. F., Feltrin, C., Almeida, K. C., Carneiro, I. S., Avelar, S. R. G., Neto, A. A., ... & Bertolini, L. R. (2013). Analysis of factors contributing to the efficiency of the in vitro production of transgenic goat embryos (Capra hircus) by handmade cloning (HMC). Small Ruminant Research, 109(2), 163-172.

Powell, A. M., Talbot, N. C., Wells, K. D., Kerr, D. E., Pursel, V. G., & Wall, R. J. (2004). Cell donor influences success of producing cattle by somatic cell nuclear transfer. Biology of reproduction, 71(1), 210-216.

Restrepo, G. (2008). Biotecnologias reproductivas aplicables a la produccion bovina en Colombia. Medellin: Libroarte.

Rodriguez-Osorio, N., Urrego, R., Cibelli, J. B., Eilertsen, K., & Memili, E. (2012). Reprogram-ming mammalian somatic cells. Theriogenology, 78(9), 1869-1886.

Stringfellow, D. A., & Seidel, S. M. (1998). Manual of the international embryo transfer society. The Society.

Taylor-Robinson, A. W., Walton, S., Swain, D. L., Walsh, K. B., & Vajta, G. (2014). The potential for modification in cloning and vitrification technology to enhance genetic progress in beef cattle in Northern Australia. Animal reproduction science, 148(3), 91-96.

Totey, S. M., Daliri, M., Rao, K. A., Pawshe, C. H., Taneja, M., & Chillar, R. S. (1996). Differential cleavage and developmental rates and their correlation with cell numbers and sex ratios in buffalo embryos generated in vitro. Theriogenology, 45(2), 521-533.

Vajta, G., & Gjerris, M. (2006). Science and technology of farm animal cloning: state of the art. Animal reproduction science, 92(3), 211-230.

Wilmut, I., Beaujean, N., De Sousa, P. A., Dinnyes, A., King, T. J., Paterson, L. A., ... & Young, L. E. (2002). Somatic cell nuclear transfer. Nature, 419(6907), 583-587.

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Publicado

2017-07-18