dc.contributorRestrepo Betancur, Giovanni
dc.contributorUniversidad Nacional de Colombia - Sede Medellín
dc.contributorReproducción Animal
dc.creatorSuárez Agudelo, Camila Andrea
dc.date.accessioned2020-09-04T20:59:56Z
dc.date.available2020-09-04T20:59:56Z
dc.date.created2020-09-04T20:59:56Z
dc.date.issued2020-09-02
dc.identifierSuárez, C. 2020. Evaluación de diluyentes para la refrigeración de semen de conejo (Oryctolagus cuniculus) y su efecto sobre la calidad y la fertilidad espermática. Tesis de maestría en Ciencias Biotecnología. Universidad Nacional de Colombia. Medellín.
dc.identifierhttps://repositorio.unal.edu.co/handle/unal/78398
dc.description.abstractEvaluation of diluents for cooling rabbit semen (Oryctolagus cuniculus) and their effect on sperm quality and fertility The domestic rabbit (Oryctolagus cuniculus) is a species from which meat with great nutritional qualities is obtained, although in Colombia its production and consumption are low, compared to other countries, and its reproductive management is carried out in a traditional way. The objective of this research was to evaluate diluents for the refrigeration of rabbit semen and its effect on sperm quality and fertility. 30 semen samples were obtained from 10 sexually mature rabbits. Each sample was diluted 1:10 in four diluents, composed of: skim milk and sugars (T1); dextrose, sodium citrate, and potassium acetate (T2); sodium, phosphate and sugar caseinates (T3); and tris-citric acid and egg yolk (T4). The semen was kept at 16 ° C for 72 hours. At the time of dilution and every 24 hours, total mobility (MT), progressive motility (MP), sperm kinetics and subpopulation distribution were evaluated with the Sperm Class Analizer® system, and viability and morphology using staining. with eosin-nigrosin. It was found that the T1 and T3 diluents more efficiently protected the sperm, also favored the optimal values of the speeds (curvilinear, rectilinear and average) and the lateral amplitude of the head (ALH) in each of the subpopulations found, for this reason, the females were inseminated using these two diluents, from which a 65% positivity was obtained on palpation. It is concluded that the diluents composed for skim milk or caseinates, and sugars, favor the sperm quality of rabbit semen, being considered appropriate for artificial insemination. Keywords: motility, subpopulations, insemination, biotechnology, fertility.
dc.description.abstractEl conejo doméstico (Oryctolagus cuniculus) es una especie de la que se obtiene carne con grandes cualidades nutricionales, aunque en Colombia su producción y consumo son bajos, con respecto a otros países, además su manejo reproductivo es realizado de manera tradicional. El objetivo de esta investigación fue evaluar diluyentes para la refrigeración de semen de conejo y su efecto sobre la calidad y la fertilidad espermática. Se obtuvieron 30 muestras de semen de 10 conejos sexualmente maduros. Cada muestra se diluyó en proporción 1:10 en cuatro diluyentes, compuestos por: leche descremada y azucares (T1); dextrosa, citrato sódico y acetato potásico (T2); caseinatos de sodio, fosfatos y azúcares (T3); y tris-ácido cítrico y yema de huevo (T4). El semen se mantuvo a 16°C durante 72 horas. Al momento de la dilución y cada 24 horas se evaluó la movilidad total (MT), la movilidad progresiva (MP), la cinética espermática y la distribución de subpoblaciones con el sistema Sperm Class Analizer®, y la viabilidad y la morfología mediante la tinción con eosina-nigrosina. Se encontró que los diluyentes T1 y T3 protegieron de forma más eficiente los espermatozoides, también favorecieron los valores óptimos de las velocidades (curvilínea, rectilínea y promedio) y la amplitud lateral de la cabeza (ALH) en cada una de las subpoblaciones encontradas, por esta razón las hembras fueron inseminadas utilizando estos dos diluyentes, de las cuales se obtuvo un 65 % de positividad a la palpación. Se concluye que los diluyentes compuestos por leche descremada o caseinatos, y azucares, favorecen la calidad espermática del semen de conejo, considerándose apropiados para la inseminación artificial. Palabras clave: movilidad, subpoblaciones, inseminación, biotecnología, fertilidad.
dc.languagespa
dc.publisherMedellín - Ciencias - Maestría en Ciencias - Biotecnología
dc.publisherEscuela de biociencias
dc.publisherUniversidad Nacional de Colombia - Sede Medellín
dc.relation1. Agüero, G. (2012). Evaluación de las características semifinales de sementales bovinos mediante el analizador seminal computarizado (CASA). Universidad central de Venezuela.
dc.relation2. Aksoy M, Lehimcioglu C, Akman O. 2010. Effect of seminal plasma on functional integrity of rabbit sperm membranes during storage at 4°C or freezing. World Rabbit Sci 66: 1115–1122. doi: 10.4995/wrs.2008.642.
dc.relation3. Aksoy M, Lehimcioglu C, Akman O. 2010. Effect of seminal plasma on functional integrity of rabbit sperm membranes during storage at 4°C or freezing. World Rabbit Sci 66: 1115–1122. doi: 10.4995/wrs.2008.642
dc.relation4. Arteaga, M. G. C., García, I. A. C., Ramírez, D. A. G., Sánchez, M. S. G., Cardona, I. Y. T., & Sierra, M. V. (2014). Carne de conejo, alternativa a favor de la salud. VIDA CIENTÍFICA, 1(2).
dc.relation5. Axnér, E., & Lagerson, E. (2016). Cryopreservation of dog semen in a Tris Extender with 1% or 2% soya bean lecithin as a replacement of egg yolk. Reproduction in Domestic Animals, 51(2), 262-268.
dc.relation6. Bergstein-Galan, T. G., Weiss, R. R., Kozicki, L. E., & Bicudo, S. D. (2017). Sperm subpopulations in ejaculated sperm and spermatozoa recovered from ovine epididymides up to 48 h after death. Animal reproduction science, 187, 20-27.
dc.relation7. Bhakat M, Mohanty T, Raina V, Gupta A, Pankaj P, Mahapatra R, Sarkar M. 2011. Study on suitable semen additives incorporation into the extender stored at refrigerated temperature. Asian Australas J Anim Sci 24: 1348–1357. doi: 10.5713/ajas.2011.10243
dc.relation8. Bravo, J. A., Montanero, J., Calero, R., & Roy, T. J. (2011). Identification of sperm subpopulations with defined motility characteristics in ejaculates from Ile de France rams. Animal reproduction science, 129(1-2), 22-29.
dc.relation9. Brun, J. M., Theau-Clément, M., & Bolet, G. (2002). The relationship between rabbit semen characteristics and reproductive performance after artificial insemination. Animal reproduction science, 70(1-2), 139-149.
dc.relation10. Bustillo Guerrero, G. M., Figueroa Pacheco, Y., & Fuentes Berrio, L. D. (2013). Diseño de una granja cunicola tecnificada para la producción de carne de conejo (Oryctolagus cuniculus) en el municipio de Arjona-Bolívar (Doctoral dissertation, Universidad de Cartagena).
dc.relation11. Cardozo, N. E. C., & Trujillo, F. L. V. (2018). Matarratón (Gliricidia sepium), Botón de oro (Tithonia diversifolia) y Morera (Morus alba) tres especies forrajeras usadas como alternativa en la alimentación de conejos: revisión sistémica y metanálisis. Documentos de Trabajo ECAPMA.
dc.relation12. Carvajal-Serna, M., Cortés-López, H. A., Manrique-Perdomo, C., & Grajales-Lombana, H. A. (2018). Evaluación de los parámetros de calidad seminal y cinemática espermática en tres razas ovinas de lana en condiciones de trópico alto colombiano. Revista de Medicina Veterinaria, 1(36), 49-61.
dc.relation13. Casares-Crespo, L., Fernández-Serrano, P., & Viudes-de-Castro, M. P. (2018). Protection of GnRH analogue by chitosan-dextran sulfate nanoparticles for intravaginal application in rabbit artificial insemination. Theriogenology, 116, 49-52.
dc.relation14. Casares-Crespo, L., Fernandez-Serrano, P., Vicente, J. S., Moce, E., Castellini, C., Stabile, A. M., & Viudes-de-Castro, M. P. (2018). Insemination extender supplementation with bestatin and EDTA has no effect on rabbit reproductive performance. theriogenology, 105, 61-65.
dc.relation15. Casares-Crespo, L., Vicente, J. S., Talaván, A. M., & Viudes-de-Castro, M. P. (2016). Does the inclusion of protease inhibitors in the insemination extender affect rabbit reproductive performance?. Theriogenology, 85(5), 928-932.
dc.relation16. Cho, M. H., Kim, S. H., Lee, D. K., Lee, M., & Lee, C. K. (2020). Progesterone receptor membrane component 1 (PGRMC1)-mediated progesterone effect on preimplantation development of in vitro produced porcine embryos. Theriogenology, 147, 39-49.
dc.relation17. Coreno-Hernández, O., García-Valencia, S., Ayala-Martínez, M., Soto-Simental, S., Ojeda-Ramírez, D., & Zepeda-Bastida, A. (2017). Efecto del consumo de vinagre y una bebida fermentada sobre la calidad de la canal y carne de conejos. Abanico veterinario, 7(1), 48-52.
dc.relation18. D'Amours, O., Bordeleau, L. J., Frenette, G., Blondin, P., Leclerc, P., & Sullivan, R. (2012). Binder of sperm 1 and epididymal sperm binding protein 1 are associated with different bull sperm subpopulations. Reproduction, 143(6), 759-771.
dc.relation19. Del Valle, I., Souter, A., Maxwell, W. M. C., Muiño-Blanco, T., & Cebrián-Pérez, J. A. (2013). Function of ram spermatozoa frozen in diluents supplemented with casein and vegetable oils. Animal reproduction science, 138(3-4), 213-219.
dc.relation20. Dessouki S, Mehaisen G, Abbas A, Ashour G. 2016. Sperm motility traits of cooled rabbit semen with different levels of melatonin. Proceedings 11th World Rabbit Congress - June 15-18, 2016 - Qingdao - China, 185–188.
dc.relation21. Di Iorio M, Manchisi A, Rocco M, Chrenek P, Iaffaldano N. (2014). Comparison of different extenders on the preservability of rabbit semen stored at 5°C for 72 hours. Ital J Anim Sci 13: 710–714. doi: 10.4081/ijas.2014.3444
dc.relation22. Diers, S., Heise, J., Krebs, T., Groenewold, J., & Tetens, J. (2020). Effect of sexed semen on different production and functional traits in German Holsteins. Veterinary and Animal Science, 100101.
dc.relation23. Dorado, J., Acha, D., Gálvez, M. J., Ortiz, I., Carrasco, J. J., Díaz, B., ... & Hidalgo, M. (2013). Sperm motility patterns in Andalusian donkey (Equus asinus) semen: Effects of body weight, age, and semen quality. Theriogenology, 79(7), 1100-1109.
dc.relation24. Dorado, J., Acha, D., Ortiz, I., Gálvez, M. J., Carrasco, J. J., Díaz, B., ... & Hidalgo, M. (2013). Relationship between conventional semen characteristics, sperm motility patterns and fertility of Andalusian donkeys (Equus asinus). Animal reproduction science, 143(1-4), 64-71.
dc.relation25. Dorado, J., Alcaráz, L., Duarte, N., Portero, J. M., Acha, D., & Hidalgo, M. (2011). Changes in the structures of motile sperm subpopulations in dog spermatozoa after both cryopreservation and centrifugation on PureSperm® gradient. Animal reproduction science, 125(1-4), 211-218.
dc.relation26. Dorado, J., Gálvez, M. J., Murabito, M. R., Muñoz-Serrano, A., & Hidalgo, M. (2011). Identification of sperm subpopulations in canine ejaculates: effects of cold storage and egg yolk concentration. Animal reproduction science, 127(1-2), 106-113.
dc.relation27. Dorado, J., Molina, I., Muñoz-Serrano, A. e Hidalgo, M. (2010). Identificación de subpoblaciones de esperma con características de motilidad definidas en eyaculados de cabras de Florida. Theriogenology, 74 (5), 795-804.
dc.relation28. Dorado, J., Munoz-Serrano, A., & Hidalgo, M. (2010). The effect of cryopreservation on goat semen characteristics related to sperm freezability. Animal reproduction science, 121(1-2), 115-123.
dc.relation29. Dziekońska A, Fraser L, Strzezek J. 2009. Effect of different storage temperatures on the metabolic activity of spermatozoa following liquid storage of boar semen. J Anim Feed Sci 18: 638–649. doi: 10.22358/jafs/66438/2009
dc.relation30. El-Sayed I, El-Nattat W, El-Tohamy M, 1, Hussein S, El-Senosy Y, Hussein A. 2017. Preservability of rabbit semen after chilled storage in tris-based extender enriched with different concentrations of Propolis ethanolic extract (PEE). Asian Pacific Journal of Reproduction 6(2):68-76. doi: 10.12980/apjr.6.20170204.
dc.relation31. El-Sayed, A. I., Ahmed-Farid, O., Elokil, A. A., Radwan, A. A., & Halawa, E. H. (2019). The capability of coenzyme Q10 to enhance heat tolerance in male rabbit: evidence from improved semen quality factor (SQF), testicular oxidative defense, and expression of testicular melatonin receptor MT1. Domestic Animal Endocrinology, 106403.
dc.relation32. El-Seadawy I, El-Nattat W, El-Tohamy M, Aziza S, El-Senosy Y, Hussein A. 2017. Preservability of rabbit semen after chilled storage in tris based extender enriched with different concentrations of Propolis ethanolic extract (PEE). Asian Pac J Reprod 6: 68–76. doi: 10.12980/apjr.6.20170204
dc.relation33. El-Seadawy, I. E. S., El-Nattat, W. S., El-Tohamy, M. M., Aziza, S. A. H., El-Senosy, Y. A., & Hussein, A. S. (2017). Preservability of rabbit semen after chilled storage in tris based extender enriched with different concentrations of Propolis ethanolic extract (PEE). Asian Pacific Journal of Reproduction, 6(2), 68.
dc.relation34. Estrada, E., del Álamo, M. M. R., Rodríguez-Gil, J. E., & Yeste, M. (2017). The addition of reduced glutathione to cryopreservation media induces changes in the structure of motile subpopulations of frozen-thawed boar sperm. Cryobiology, 78, 56-64.
dc.relation35. FAO. (2018). FAOSTAT. En URL: http://www.fao.org/faostat/es. Fecha de consulta: Marzo 20 de 2020.
dc.relation36. Filho I, Pederzolli C, Sgaravatti M, Gregory R, Filho C. 2009. Skim milk-egg yolk based semen extender compensates for non-enzymatic antioxidant activity loss during equine semen cryopreservation. Anim Reprod 6: 392–399.
dc.relation37. Flores, E., Taberner, E., Rivera, M. M., Peña, A., Rigau, T., Miró, J., & Rodríguez-Gil, J. E. (2008). Effects of freezing/thawing on motile sperm subpopulations of boar and donkey ejaculates. Theriogenology, 70(6), 936-945.
dc.relation38. Gallego, V., Cavalcante, S. S., Fujimoto, R. Y., Carneiro, P. C. F., Azevedo, H. C., & Maria, A. N. (2017). Fish sperm subpopulations: changes after cryopreservation process and relationship with fertilization success in tambaqui (Colossoma macropomum). Theriogenology, 87, 16-24.
dc.relation39. Gamboa, S., Rodrigues, A. S., Henriques, L., Batista, C., & Ramalho-Santos, J. (2010). Seasonal functional relevance of sperm characteristics in equine spermatozoa. Theriogenology, 73(7), 950-958.
dc.relation40. García, B. M., Fernández, L. G., Morrell, J. M., Ferrusola, C. O., Tapia, J. A., Martínez, H. R., & Peña, F. J. (2009). Single‐Layer Centrifugation Through Colloid Positively Modifies the Sperm Subpopulation Structure of Frozen–Thawed Stallion Spermatozoa. Reproduction in domestic animals, 44(3), 523-526.
dc.relation41. Garcia-Garcia, R. M., Arias-Alvarez, M., Sanchez-Rodriguez, A., Lorenzo, P. L., & Rebollar, P. G. (2020). Role of nerve growth factor in the reproductive physiology of female rabbits: A review. Theriogenology.
dc.relation42. Gomez Carrasquel, R. (2006). El proyecto genoma humano en los Estados Unidos de Norteamericaimpacto economico, etico y social de la bioempresa Human Genome Sciences Inc (No. 575.11 572.86). e-libro, Corp..
dc.relation43. Gómez, E., Carrocera, S., Martín, D., Pérez-Jánez, J. J., Prendes, J., Prendes, J. M., & Muñoz, M. (2020). Efficient one-step direct transfer to recipients of thawed bovine embryos cultured in vitro and frozen in chemically defined medium. Theriogenology, 146, 39-47.
dc.relation44. Hashem, N. M., & Aboul-Ezz, Z. R. (2018). Effects of a single administration of different gonadotropins on day 7 post-insemination on pregnancy outcomes of rabbit does. Theriogenology, 105, 1-6.
dc.relation45. Hozbor F, Ledesma A, Manes J, Ríos G, Kaiser G, Cano A, Luciano C, Alberio R. 2016. Improve intra-uterine insemination in rabbits using ultra-high temperature skim milk as extender to keep semen at room temperature. Andrologia 48: 231–234. doi: 10.1111/and.12445
dc.relation46. Iaffaldano N, Rosato M, Paventi G, Pizzuto R, Gambacorta M, Manchisi A, Passarella, S. 2010. The irradiation of rabbit sperm cells with He-Ne laser prevents their in vitro liquid storage dependent damage. Anim Reprod Sci 119: 123–129. doi: 10.1016/j.anireprosci.2009.10.005
dc.relation47. Iaffaldano, N., Rosato, M. P., Paventi, G., Pizzuto, R., Gambacorta, M., Manchisi, A., & Passarella, S. (2010). The irradiation of rabbit sperm cells with He–Ne laser prevents their in vitro liquid storage dependent damage. Animal reproduction science, 119(1-2), 123-129.
dc.relation48. Jaramillo Villanueva, J. L., Vargas López, S., Rodríguez, G., & de Dios, J. (2015). Preferencias de consumidores y disponibilidad a pagar por atributos de calidad en carne de conejo orgánico. Revista mexicana de ciencias pecuarias, 6(2), 221-232.
dc.relation49. Jeong, Y., Olsson, P. O., Lian, C., Lee, E. S., Jeong, Y. W., & Hwang, W. S. (2020). Dog cloning from post-mortem tissue frozen without cryoprotectant. Cryobiology.
dc.relation50. Johinke D, de Graaf S, Bathgate R. 2014. Quercetin reduces the in vitro production of H 2 O 2 during chilled storage of rabbit spermatozoa. Anim Reprod Sci 151: 208–219. doi: 10.1016/j.anireprosci.2014.10.017
dc.relation51. Kaka A, Wahid H, Rosnina Y, Yimer N, Khumran A, Behan A, Ebrahimi M. 2015. Alpha-Linolenic acid supplementation in tris extender can improve frozen-thawed bull semen quality. Reprod Domest Anim 50: 29–33. doi: 10.1111/rda.12445
dc.relation52. Kaka, A., Wahid, H., Rosnina, Y., Yimer, N., Khumran, A. M., Behan, A. A., & Ebrahimi, M. (2015). Alpha‐linolenic acid supplementation in tris extender can improve frozen–thawed bull semen quality. Reproduction in domestic animals, 50(1), 29-33.
dc.relation53. Kanuga, M. K., Drew, R. E., Wilson-Leedy, J. G., & Ingermann, R. L. (2012). Subpopulation distribution of motile sperm relative to activation medium in steelhead (Oncorhynchus mykiss). Theriogenology, 77(5), 916-925.
dc.relation54. Lagares M, Martins H, Carvalho I, Oliveira C, Souza M, Penna C, Cruz B, Stahlberg R, Henry M. 2012. Caseinate protects stallion sperm during semen cooling and freezing. Cryo-Letters 33: 214–219.
dc.relation55. Lavara R, Mocé E, Baselga M, Vicentec J. 2017. Freezability genetics in rabbit semen. Theriogenology 102(15):54-58. doi: 10.1016/j.theriogenology.2017.07.013.
dc.relation56. Lavara, R., Baselga, M., Marco-Jiménez, F., & Vicente, J. S. (2015). Embryo vitrification in rabbits: Consequences for progeny growth. Theriogenology, 84(5), 674-680.
dc.relation57. Lavara, R., Moce, E., Baselga, M., & Vicente, J. S. (2017). Freezability genetics in rabbit semen. Theriogenology, 102, 54-58.
dc.relation58. Ledesma, A., Zalazar, L., Fernández-Alegre, E., Hozbor, F., Cesari, A., & Martínez-Pastor, F. (2017). Seminal plasma proteins modify the distribution of sperm subpopulations in cryopreserved semen of rams with lesser fertility. Animal reproduction science, 184, 44-50.
dc.relation59. Lingyan, L., Lu, X., Feng, T., ur Rehman, S., Sun, J., Wu, Z., & Cui, K. (2020). Valproic acid enhances in vitro developmental competence of porcine handmade cloned embryos. Livestock Science, 233, 103957.
dc.relation60. Lopez F, Alvariño J. 1998. Artificial insemination of rabbits with diluted semen stored up 96 h. World Rabbit Sci 6: 251–253. doi: 10.4995/wrs.1998.352
dc.relation61. López, F. J., & Alvariño, J. M. R. (2000). Effects of added caffeine on results following artificial insemination with fresh and refrigerated rabbit semen. Animal reproduction science, 58(1-2), 147-154.
dc.relation62. López-Gatius F, Sances G, Sancho M, Yániz J, Santolaria P, Gutiérrez R, Núñez M, Núñez J, Soler C. 2005. Effect of solid storage at 15°C on the subsequent motility and fertility of rabbit semen. Theriogenology 64: 252–260. doi: 10.1016/j.theriogenology.2004.11.015
dc.relation63. Luna, C., Yeste, M., del Alamo, M. M. R., Domingo, J., Casao, A., Rodriguez-Gil, J. E., ... & Muiño-Blanco, T. (2017). Effect of seminal plasma proteins on the motile sperm subpopulations in ram ejaculates. Reproduction, Fertility and Development, 29(2), 394-405.
dc.relation64. Malavé, A., Córdova, L., García, A., & Méndez, J. (2013). Composición bromatológica de la carne de conejos suplementados con mataratón y cachaza de palma aceitera. Revista MVZ Córdoba, 18(2), 3452-3458.
dc.relation65. Maroto-Morales, A., Ramón, M., García-Álvarez, O., Soler, A. J., Fernández-Santos, M. R., Roldan, E. R., ... & Garde, J. J. (2012). Morphometrically-distinct sperm subpopulations defined by a multistep statistical procedure in ram ejaculates: intra-and interindividual variation. Theriogenology, 77(8), 1529-1539.
dc.relation66. Martí, JI, Aparicio, IM, Leal, CLV y García-Herreros, M. (2012). Seasonal dynamics of sperm morphometric subpopulations and its association with sperm quality parameters in ram ejaculates. Theriogenology, 78 (3), 528-541.
dc.relation67. Martínez, I. N., Morán, J. M., & Peña, F. J. (2006). Two‐step cluster procedure after principal component analysis identifies sperm subpopulations in canine ejaculates and its relation to cryoresistance. Journal of andrology, 27(4), 596-603.
dc.relation68. Martins H, Souza M, Penna C, da Silva G, Côrtes S, Stahlberg R, Lagares M. 2016. Milk, caseinate and lactoferrin addition to equine semen cooling extenders. Andrologia 48: 862–868. doi: 10.1111/and.12523
dc.relation69. Martins, H. S., Souza, M. R., Penna, C. F. A. M., Da Silva, G. C., Côrtes, S. F., Stahlberg, R., & Lagares, M. A. (2016). Milk, caseinate and lactoferrin addition to equine semen cooling extenders. Andrologia, 48(9), 950-956.
dc.relation70. Mendoza, N., Casao, A., Del Valle, I., Serrano, E., Nicolau, S., Asumpção, M. E. O. A., ... & Pérez-Pé, R. (2012). Quality characteristics and fertilizing ability of ram sperm subpopulations separated by partition in an aqueous two-phase system. Journal of Chromatography B, 880, 74-81.
dc.relation71. MinAgricultura (2018). MinAgricultura busca apoyar a cerca de 39 mil familias productoras de carne de conejo, conformando la cadena productiva. En URL: https://www.minagricultura.gov.co. Fecha de consulta: Abril 03 de 2020.
dc.relation72. Miró, J., Taberner, E., Rivera, M., Peña, A., Medrano, A., Rigau, T., & Peñalba, A. (2009). Effects of dilution and centrifugation on the survival of spermatozoa and the structure of motile sperm cell subpopulations in refrigerated Catalonian donkey semen. Theriogenology, 72(8), 1017-1022.
dc.relation73. Mocé E, Lavara R, Vicente J. 2010. Effect of cooling rate to 5°C, straw size and farm on fertilizing ability of cryopreserved rabbit sperm. Reprod Domest Anim 45: e1–7. doi: 10.1111/j.1439-0531.2009.01507.
dc.relation74. Mocé E, Vicente J. 2002. Effect of cooling and freezing, the two first steps of a freezing protocol, on the fertilizing ability of the rabbit sperm. Reprod Nutr Dev 42: 189–196. doi: 10.1051/rnd:2002017
dc.relation75. Mocé E, Vicente J. 2009. Rabbit sperm cryopreservation: A review. Anim Reprod Sci 110: 1–24. doi: 10.1016/j.anireprosci.2008.08.015
dc.relation76. Mocé, E., Lavara, R., & Vicente, J. S. (2003). Effect of an asynchrony between ovulation and insemination on the results obtained after insemination with fresh or frozen sperm in rabbits. Animal reproduction science, 75(1-2), 107-118.
dc.relation77. Mocé, E., Vicente, J. S., & Lavara, R. (2003). Effect of freezing–thawing protocols on the performance of semen from three rabbit lines after artificial insemination. Theriogenology, 60(1), 115-123.
dc.relation78. Mora-Valverde, D. (2012). Evaluación de cuatro niveles de morera (Morus alba) en engorde de conejo bajo normativa orgánica. Agronomía Mesoamericana, 23(2), 311-319.
dc.relation79. Muiño, R., Tamargo, C., Hidalgo, CO y Peña, AI (2008). Identification of sperm subpopulations with defined motility characteristics in ejaculates from Holstein bulls: Effects of cryopreservation and between-bull variation. Ciencia de reproducción animal, 109 (1-4), 27-39.
dc.relation80. Munari, C., Ponzio, P., Alkhawagah, A. R., Schiavone, A., & Mugnai, C. (2019). Effects of an intravaginal GnRH analogue administration on rabbit reproductive parameters and welfare. Theriogenology, 125, 122-128.
dc.relation81. Nishijima K, Kitajima S, Koshimoto C, Morimoto M, Watanabe T, Fan J, Matsuda Y. 2015. Motility and fertility of rabbit sperm cryopreserved using soybean lecithin as an alternative to egg yolk. Theriogenology 84: 1172–1175. doi: 10.1016/j.theriogenology.2015.06.018
dc.relation82. Núñez‐Martínez, I., Moran, J. M., & Peña, F. J. (2006). A three‐step statistical procedure to identify sperm kinematic subpopulations in canine ejaculates: changes after cryopreservation. Reproduction in domestic animals, 41(5), 408-415.
dc.relation83. Núñez-Torres, O. P., Lozada-Salcedo, E. E., Rosero-Peñaherrera, M. A., Cruz-Tobar, E. S., & Aragadvay-Yungan, R. G. (2017). Evaluación de avena hidropónica (Arrenatherium elatius) en la alimentación de conejos en la etapa de engorde. Journal of the Selva Andina Animal Science, 4(1), 59-71.
dc.relation84. Ogura, A. (2020). How to improve mouse cloning. Theriogenology. https://doi.org/10.1016/j.theriogenology.2020.01.038
dc.relation85. Oikawa, K., Yamazaki, T., Yamaguchi, S., Abe, H., Bai, H., Takahashi, M., & Kawahara, M. (2019). Effects of use of conventional and sexed semen on the conception rate in heifers: A comparison study. Theriogenology, 135, 33-37.
dc.relation86. Oviedo, O. M., Enao, J. D., & Gutiérrez, N. (2012). Uso de subproductos agrícolas en la alimentación de conejos en fases de ceba y reproducción. Biotecnologia en el sector agropecuario y agroindustrial, 10(2), 236-242.
dc.relation87. Pagl R, Aurich J, Müller-Schlösser F, Kankofer M, Aurich C. 2006. Comparison of an extender containing defined milk protein fractions with a skim milk-based extender for storage of equine semen at 5 °C. Theriogenology 66: 1115–1122. doi: 10.1016/j.theriogenology.2006.03.006
dc.relation88. Palma, G. A. (2008). Biotecnología de la reproducción. Ciencia, tecnología y sociedad. Biotecnología de la Reproducción http://www. reprobiotec. com/libro_verde/cap_01. pdf.
dc.relation89. Peña, FJ, Saravia, F., García ‐ Herreros, M., Núñezmartínez, I., Tapia, JA, Johannisson, A., Rodríguez ‐ Martínez, H. (2005). Identificación de subpoblaciones morfométricas de esperma en dos porciones diferentes de la eyaculación de cerdo y su relación con la calidad posterior al deshielo. Revista de andrología, 26 (6), 716-723.
dc.relation90. Quintero ‐ Moreno, A., Rigau, T. y Rodríguez ‐ Gil, JE (2007). Multivariate Cluster Analysis Regression Procedures as Tools to Identify Motile Sperm Subpopulations in Rabbit Semen and to Predict Semen Fertility and Litter Size. Reproducción en animales domésticos, 42 (3), 312-319.
dc.relation91. Quintero-Moreno, Armando, González-Villalobos, Decio, López-Brea, José Julián, C. Esteso, Milagros, Fernández-Santos, María Rocío, Carvalho-Crociata, José L., Mejía-Silva, Willian, & León-Atencio, Gonzalo. (2009). Valoración morfométrica de la cabeza del espermatozoide del cerdo doméstico según su edad. Revista Científica, 19(2), 153-158.
dc.relation92. Ramió, L., Rivera, M. M., Ramírez, A., Concha, I. I., Peña, A., Rigau, T., & Rodríguez-Gil, J. E. (2008). Dynamics of motile-sperm subpopulation structure in boar ejaculates subjected to “in vitro” capacitation and further “in vitro” acrosome reaction. Theriogenology, 69(4), 501-512.
dc.relation93. Roca J, Martínez S, Vázquez J, Lucas X, Parrilla I, Martínez E. 2000. Viability and fertility of rabbit spermatozoa diluted in Tris-buffer extenders and stored at 15°C. Anim Reprod Sci 64: 103–112. doi: 10.1016/S0378-4320(00)00185-8
dc.relation94. Roca, T. (2008). Razas de conejos. Available on: http://www. conejos-info. com/articulos/razas-de-conejos. [Consulted: April, 2020].
dc.relation95. Rodríguez-Gil, J. E., Silvers, G., Flores, E., Palomo, M. J., Ramírez, A., Rivera, M. M., ... & Concha, I. I. (2007). Expression of the GM-CSF receptor in ovine spermatozoa: GM-CSF effect on sperm viability and motility of sperm subpopulations after the freezing–thawing process. Theriogenology, 67(8), 1359-1370.
dc.relation96. Röös, E., Sundberg, C., Tidåker, P., Strid, I., & Hansson, P. A. (2013). Can carbon footprint serve as an indicator of the environmental impact of meat production? Ecological Indicators, 24, 573-581.
dc.relation97. Roper, D. A., Schrick, F. N., Edwards, J. L., Hopkins, F. M., Prado, T. M., Wilkerson, J. B., ... & Smith, W. B. (2018). Factors in cattle affecting embryo transfer pregnancies in recipient animals. Animal reproduction science, 199, 79-83.
dc.relation98. Rosato M, Iaffaldano N. (2013). Cryopreservation of rabbit semen: Comparing the effects of different cryoprotectants, cryoprotectant-free vitrification, and the use of albumin plus osmoprotectants on sperm survival and fertility after standard vapor freezing and vitrification. Theriogenology 79: 508–516. doi: 10.1016/j.theriogenology.2012.11.008
dc.relation99. Rosato M, Iaffaldano N. 2011. Effect of chilling temperature on the long-term survival of rabbit spermatozoa held either in a tris-based or a jellified extender. Reprod Domest Anim 46: 301–308. doi: 10.1111/j.1439-0531.2010.01667.
dc.relation100. Rosato M, Iaffaldano N. 2013. Cryopreservation of rabbit semen: Comparing the effects of different cryoprotectants, cryoprotectant-free vitrification, and the use of albumin plus osmoprotectants on sperm survival and fertility after standard vapor freezing and vitrification. Theriogenology 79: 508–516. doi: 10.1016/j.theriogenology.2012.11.008
dc.relation101. Sakr, O. G., Gad, A., Rodríguez, M., Rebollar, P. G., & Millán, P. (2019). Superoxide dismutase mimics improves semen quality during chilled preservation of rabbit spermatozoa. Livestock science, 221, 70-76.
dc.relation102. Sánchez-Rodríguez, A., Masdeu, M., García-García, R. M., Arias-Álvarez, M., Lorenzo, P. L., & Rebollar, P. G. (2015). Description of seminal parameters in ibicenco rabbit. XVI Jornadas sobre Producción Animal, 19 y 20 de mayo de 2015, Zaragoza, España. Tomo I & II, 352-354.
dc.relation103. Santolaria, P., Soler, C., Recreo, P., Carretero, T., Bono, A., Berné, J. M., & Yániz, J. L. (2016). Morphometric and kinematic sperm subpopulations in split ejaculates of normozoospermic men. Asian journal of andrology, 18(6), 831.
dc.relation104. Santolaria, P., Vicente-Fiel, S., Palacín, I., Fantova, E., Blasco, M. E., Silvestre, M. A., & Yániz, J. L. (2015). Predictive capacity of sperm quality parameters and sperm subpopulations on field fertility after artificial insemination in sheep. Animal reproduction science, 163, 82-88.
dc.relation105. Simitzis, P., Kiriakopoulos, A., Symeon, G., Goliomytis, M., Kominakis, A., Bizelis, I., & Deligeorgis, S. (2019). Effect of prenatal overfeeding on the growth performance and postweaning behavioral parameters in rabbits. Journal of Veterinary Behavior, 33, 38-45.
dc.relation106. Siudzińska A, Łukaszewicz E. 2008. Effect of semen extenders and storage time on sperm morphology of four chicken breeds. J Appl Poult Res 17: 101–108. doi: 10.3382/japr.2007-00048
dc.relation107. Souza, A. K., Trautwein, L. G. C., Paranzini, C. S., Perencin, F. M., Cardoso, G. S., & Martins, M. I. M. (2018). Influence of cooling temperature in sperm subpopulations of domestic cats. Animal reproduction science, 189, 1-10.
dc.relation108. Steichen, M. M., & Larson, J. E. (2019). Effects of supplemental progesterone using a CIDR insert on pregnancy per embryo transfer of dairy heifer recipients of embryos produced in vitro. Animal reproduction science, 203, 45-51.
dc.relation109. Trejo, C. A., Meza, V. V. M., Antonio, E. C., Cotera, R. J., & Antonio-Cisneros, C. M. (2013). Agua de coco (Cocus nucifera) como diluyente para semen fresco de conejo en la inseminación artificial. Archivos de zootecnia, 62(238), 299-302.
dc.relation110. Valle, R. D. R., Nayudu, P. L., Leal, C. L. V., & Garcia-Herreros, M. (2012). Sperm head morphometry in ejaculates of adult marmosets (Callithrix jacchus): a model for studying sperm subpopulations and among-donor variations. Theriogenology, 78(5), 1152-1
dc.relation111. Valverde, A., & Madrigal-Valverde, M. (2018). Sistemas de análisis computadorizado de semen en la reproducción animal. Agronomía Mesoamericana, 29(2), 469-484
dc.relation112. Veraguas, D., Saez, S., Aguilera, C., Echeverry, D., Gallegos, P. F., Saez-Ruiz, D., ... & Rodriguez-Alvarez, L. (2020). In vitro and in vivo development of domestic cat embryos generated by in vitro fertilization after eCG priming and oocyte in vitro maturation. Theriogenology, 146, 94-103.
dc.relation113. Vicente, J. S., Lavara, R., Lavara, F., Marco-Jimenez, F., & Viudes-de-Castro, M. P. (2008). Rabbit reproductive performance after insemination with buserelin acetate extender. Livestock Science, 115(2-3), 153-157.
dc.relation114. Vicente-Fiel, S., Palacin, I., Santolaria, P., y Yániz, JL (2013). A comparative study of sperm morphometric subpopulations in cattle, goat, sheep and pigs using a computer-assisted fluorescence method (CASMA-F). Ciencia de reproducción animal, 139 (1-4), 182-189.
dc.relation115. Villalobos, D. G., Quintero-Moreno, A., López-Brea, J. J. G., Esteso, M. C., Fernández-Santos, M. R., Rubio-Guillén, J., ... & Corona, R. B. (2008). Caracterización morfométrica de la cabeza del espermatozoide porcino mediante análisis computarizado (Resultados Preliminares). Revista Científica, 18(5), 570-577
dc.relation116. Viudes-de-Castro, M. P., Moce, E., Lavara, R., Marco-Jiménez, F., & Vicente, J. S. (2014). Aminopeptidase activity in seminal plasma and effect of dilution rate on rabbit reproductive performance after insemination with an extender supplemented with buserelin acetate. Theriogenology, 81(9), 1223-1228.
dc.relation117. Yulnawati Y, Maheshwari H, Herdis, Rizal, M. 2009. Viability and plasma membrane integrity of the spotted buffalo epididymal spermatozoa after thawing with the addition of dextrose into the extender. Biotropia 16: 21–27. doi: 10.11598/
dc.relation118. Zhang, L., Yu, M., Xu, H., Wei, X., Liu, Y., Huang, C., & Guo, Z. (2020). RNA sequencing revealed the abnormal transcriptional profile in cloned bovine embryos. International Journal of Biological Macromolecules, 150, 492-50
dc.rightsAtribución-SinDerivadas 4.0 Internacional
dc.rightsAcceso abierto
dc.rightshttp://creativecommons.org/licenses/by-nd/4.0/
dc.rightsinfo:eu-repo/semantics/openAccess
dc.rightsDerechos reservados - Universidad Nacional de Colombia
dc.titleEvaluación de diluyentes para la refrigeración de semen de conejo (Oryctolagus cuniculus) y su efecto sobre la calidad y la fertilidad espermática
dc.typeOtro


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