Efecto en la eficiente reproductiva mediante el uso de dos protocolos (eCG y Ovsynch) para IATF en ganado bovino tropical
DOI:
https://doi.org/10.51252/revza.v3i1.487Palabras clave:
ganadería, reproducción, sincronización, AmazoníaResumen
La situación económica mundial requiere de prácticas de manejo eficaces para mejorar la rentabilidad de los establecimientos de producción de leche, especialmente, en ganadería de trópico. El objetivo es demostrar el efecto en la eficiencia reproductiva mediante el uso de dos protocolos (eCG y Ovsynch) para IATF en ganado bovino de trópico. La metodología fue mediante tratamientos, con un diseño de bloque completamente al azar; se aplicaron bases de Ovsynch y el análisis de datos fue mediante el software InfoStat para análisis de varianza. Los resultados obtenidos fueron del tratamiento de 40 vacas a las que se aplicó el protocolo modificado (eCG), 26 (65%) resultaron preñadas a la palpación rectal a los 55 días de gestación y de 33 vacas a las que se aplicaron el protocolo tradicional de Ovsynch, 17 (51%) dieron positivo al diagnóstico de gestación transrectal al día 55 de la gestación. En conclusión, la inseminación a tiempo fijo en vacas Bos indicus lactantes y con los protocolos de Ovsynch es factible la detección de celos y preñez.
Descargas
Citas
Abdalla, H., de Mestre, A. M., & Salem, S. E. (2020). Efficacy of ovulation synchronization with timed artificial insemination in treatment of follicular cysts in dairy cows. Theriogenology, 154, 171–180. https://doi.org/10.1016/j.theriogenology.2020.05.029
Abdalla, H., Makau, D. N., & Salem, S. E. (2020). Treatment of cows that fail to respond to pre-synchronization treatments with a CIDR-Ovsynch regimen improves the overall pregnancy percentage after a double Ovsynch treatment regimen. Animal Reproduction Science, 216, 106356. https://doi.org/10.1016/j.anireprosci.2020.106356
Atanasov, B., Dovenski, T., Celeska, I., & Stevenson, J. S. (2021). Luteolysis, progesterone, and pregnancy per insemination after modifying the standard 7-day Ovsynch program in Holstein-Friesian and Holstein cows. Journal of Dairy Science, 104(6), 7272–7282. https://doi.org/10.3168/jds.2020-19922
Barański, W., Nowicki, A., & Zduńczyk, S. (2021). Comparison of efficacy of Ovsynch protocol to single PGF2α administration in treatment of individual dairy cows with post-service subestrus. Polish Journal of Veterinary Sciences, 24(3), 351–354. https://doi.org/10.24425/pjvs.2021.137672
Baruselli, P. S., Marques, M. O., Carvalho, N. A. T., Madureira, E. H., & Campos Filho, E. P. (2002). Efeito de diferentes protocolos de inseminação artificial em tempo fixo na eficiência reprodutiva de vacas de corte lactantes. Revista Brasileira de Reprodução Animal, 26(3), 218–221. https://repositorio.usp.br/item/001300827
Bisinotto, R. S., Ribeiro, E. S., Greco, L. F., Taylor-Rodriguez, D., Ealy, A. D., Ayres, H., Lima, F. S., Martinez, N., Thatcher, W. W., & Santos, J. E. P. (2022). Effects of progesterone concentrations and follicular wave during growth of the ovulatory follicle on conceptus and endometrial transcriptome in dairy cows. Journal of Dairy Science, 105(1), 889–903. https://doi.org/10.3168/jds.2021-20193
Borchardt, S., Tippenhauer, C. M., Fricke, P. M., & Heuwieser, W. (2021). Economic impact of adding a second prostaglandin F2α treatment during an Ovsynch protocol using a meta-analytical assessment and a stochastic simulation model. Journal of Dairy Science, 104(11), 12153–12163. https://doi.org/10.3168/jds.2021-20295
Cabrera, E. M., Lauber, M. R., Valdes-Arciniega, T., El Azzi, M. S., Martins, J. P. N., Bilby, T. R., & Fricke, P. M. (2021). Replacing the first gonadotropin-releasing hormone treatment in an Ovsynch protocol with human chorionic gonadotropin decreased pregnancies per artificial insemination in lactating dairy cows. Journal of Dairy Science, 104(7), 8290–8300. https://doi.org/10.3168/jds.2021-20274
Cunha, T. O., Statz, L. R., Domingues, R. R., Andrade, J. P. N., Wiltbank, M. C., & Martins, J. P. N. (2022). Accessory corpus luteum induced by human chorionic gonadotropin on day 7 or days 7 and 13 of the estrous cycle affected follicular and luteal dynamics and luteolysis in lactating Holstein cows. Journal of Dairy Science, 105(3), 2631–2650. https://doi.org/10.3168/jds.2021-20619
Dawod, A., & Elbaz, H. T. (2020). Effect of sexed semen, puberty and breeding ages on fertility of Holstein dairy heifers treated with double Ovsynch protocol. Tropical Animal Health and Production, 52, 2925–2930. https://doi.org/10.1007/s11250-020-02306-6
Jae‐Kwan, J., Ui‐Hyung, K., Hyun‐Gu, K., & Ill‐Hwa, K. (2022). Selective use of a modified pre‐synchronization‐Ovsynch and resynchronization reproductive strategy in dairy herds: A field application study. Reproduction in Domestic Animals, 57(1), 45–54. https://doi.org/10.1111/rda.14027
Jaśkowski, J. M., Gehrke, M., Herudzińska, M., Jaśkowski, B. M., & Brüssow, K.-P. (2019). Resynchronisation as an element of improving cattle reproduction efficiency. Journal of Veterinary Research, 63(1), 107–115. https://doi.org/10.2478/jvetres-2019-0009
Karakaya-Bilen, E., Yilmazbas-Mecitoglu, G., Keskin, A., Guner, B., Serim, E., Santos, J. E. P., & Gümen, A. (2019). Fertility of lactating dairy cows inseminated with sex-sorted or conventional semen after Ovsynch, Presynch-Ovsynch and Double-Ovsynch protocols. Reproduction in Domestic Animals, 54(2), 309–316. https://doi.org/10.1111/rda.13363
Kim, I.-H., Jeong, J.-K., & Kang, H.-G. (2020). Reproductive performance following a modified Presynch-Ovsynch, Double-Ovsynch, or conventional reproductive management program in Korean dairy herds. Theriogenology, 156, 27–35. https://doi.org/10.1016/j.theriogenology.2020.06.019
Lindley, G., Willshire, J., & Van Winden, S. (2021). Reproductive Performance and Partial Budget Analysis of a Prostaglandin or a Modified Ovsynch Protocol in Autumn Calving Dairy Herds. Animals, 11(4), 1031. https://doi.org/10.3390/ani11041031
Luchterhand, M., Gamarra, C. A., Gennari, R. S., Carvalho, P. D., Barletta, R. V., & Souza, A. H. (2019). Ovulation and fertility response to commercially available GnRH products in lactating cows synchronized with the Double-Ovsynch protocol. Animal Reproduction Science, 202, 42–48. https://doi.org/10.1016/j.anireprosci.2019.01.006
Martins, J. P. N., Acevedo, M. J. T., Piterini, C. G., Cunha, T. O., & Pursley, J. R. (2021). Effect of PGF2α treatments during early corpus luteum development on circulating progesterone concentrations and ovulation in breeding-age Holstein heifers. Theriogenology, 173, 12–18. https://doi.org/10.1016/j.theriogenology.2021.06.002
McDougall, S., Castle, R., Blythe, E., Macpherson, Y., & Karkaba, A. (2021). Increasing conception rate by addition of a second prostaglandin injection in an Ovsynch and progesterone treatment programme for dairy cows not detected in oestrus before the start of the seasonal mating period. New Zealand Veterinary Journal, 69(4), 211–223. https://doi.org/10.1080/00480169.2021.1906343
Minela, T., Santos, A., Schuurmans, E. J., Middleton, E. L., & Pursley, J. R. (2021). The effect of a double dose of cloprostenol sodium on luteal blood flow and pregnancy rates per artificial insemination in lactating dairy cows. Journal of Dairy Science, 104(11), 12105–12116. https://doi.org/10.3168/jds.2020-20113
Nowicki, A., Baranski, W., Tobolski, D., Zduńczyk, S., & Janowski, T. (2019). Second prostaglandin F2α treatment during Ovsynch protocol does not improve fertility outcomes in dairy cows. Polish Journal of Veterinary Sciences, 22(1), 157–161. https://doi.org/10.24425/pjvs.2018.125615
Otava, G., Squicciarini, S., Marc, S., Suici, T., William Onan, G., Hutu, I., Torda, I., & Mircu, C. (2021). Effects of age and season on conception rate of Mediterranean Italian Dairy Buffalo ( Bubalus bubalis ) following oestrus synchronization and fixed‐time artificial insemination. Reproduction in Domestic Animals, 56(12), 1511–1518. https://doi.org/10.1111/rda.14013
Perez Marquez, H. J., Goddard, E. W., & Bench, C. J. (2022). Business analysis of IRT, Visual observation, and Ovsynch as breeding strategies in Alberta dairies. Theriogenology, 177, 73–83. https://doi.org/10.1016/j.theriogenology.2021.10.002
Rheinberger, J., Colson, D., Beggs, D., Mansell, P., Stevenson, M., Rheinberger, R., & Pyman, M. (2020). Effect of a second treatment of prostaglandin F 2α during the Ovsynch program on fixed‐time artificial insemination conception rates and luteolysis in split‐calving, pasture‐fed dairy cows. Australian Veterinary Journal, 98(5), 190–196. https://doi.org/10.1111/avj.12918
Roldan Vera, R., Mendoza, D. A., Marini, P. R., & Zambrano Villacís, J. J. (2022). Gonadotropinas sintéticas en la sincronización de celo para inseminación artificial a tiempo fijo (IATF) en vacas mestizas en las condiciones del subtrópico. Revista Científica Arbitrada Multidisciplinaria PENTACIENCIAS, 4(3), 108–116. https://editorialalema.org/index.php/pentaciencias/article/view/146/188
Silviu-Ionuț, B., & Borş, A. (2020). Ovarian cysts, an anovulatory condition in dairy cattle. Journal of Veterinary Medical Science, 82(10), 1515–1522. https://doi.org/10.1292/jvms.20-0381
Stangaferro, M. L., Toledo, M. Z., Gennari, R. S., Perez, M. M., Gamarra, C. A., Sitko, E. M., Monteiro, P. L. J., Masello, M., Prata, A. B., Granados, G. E., Van Amburgh, M. E., Luchini, D., Shaver, R. D., Wiltbank, M. C., & Giordano, J. O. (2021). Effects of feeding rumen-protected methionine pre- and postpartum on reproductive outcomes of multiparous Holstein cows. Journal of Dairy Science, 104(10), 11210–11225. https://doi.org/10.3168/jds.2021-20190
Stangaferro, M. L., Wijma, R. W., & Giordano, J. O. (2019). Profitability of dairy cows submitted to the first service with the Presynch-Ovsynch or Double-Ovsynch protocol and different duration of the voluntary waiting period. Journal of Dairy Science, 102(5), 4546–4562. https://doi.org/10.3168/jds.2018-15567
Tippenhauer, C. M., Steinmetz, I., Heuwieser, W., Fricke, P. M., Lauber, M. R., Cabrera, E. M., & Borchardt, S. (2021). Effect of dose and timing of prostaglandin F2α treatments during a 7-d Ovsynch protocol on progesterone concentration at the end of the protocol and pregnancy outcomes in lactating Holstein cows. Theriogenology, 162(1), 49–58. https://doi.org/10.1016/j.theriogenology.2020.12.020
Trevisol, E., Mogollón García, H. D., Ackermann, C. L., Lacerda, W., Pires, R. M. L., Laufer-Amorin, R., Carvalho, R. F., Franchi, F. F., Castilho, A. C. S., Rizzoto, G., Kastelic, J. P., & Ferreira, J. C. P. (2020). Partial luteolysis during early diestrus in cattle downregulates VEGFA expression and reduces large luteal cell and corpus luteum sizes and plasma progesterone concentration. Theriogenology, 158, 188–195. https://doi.org/10.1016/j.theriogenology.2020.09.015
Publicado
Cómo citar
Número
Sección
Licencia
Derechos de autor 2023 Hugo Sánchez-Cárdenas, Pedro Vargas-Rodríguez
Esta obra está bajo una licencia internacional Creative Commons Atribución 4.0.
Los autores retienen sus derechos:
a. Los autores retienen sus derechos de marca y patente, y tambien sobre cualquier proceso o procedimiento descrito en el artículo.
b. Los autores retienen el derecho de compartir, copiar, distribuir, ejecutar y comunicar públicamente el articulo publicado en la Revista de Veterinaria y Zootecnia Amazónica (REVZA) (por ejemplo, colocarlo en un repositorio institucional o publicarlo en un libro), con un reconocimiento de su publicación inicial en la REVZA.
c. Los autores retienen el derecho a hacer una posterior publicación de su trabajo, de utilizar el artículo o cualquier parte de aquel (por ejemplo: una compilación de sus trabajos, notas para conferencias, tesis, o para un libro), siempre que indiquen la fuente de publicación (autores del trabajo, revista, volumen, numero y fecha).