El búfalo de agua en Cuba. II. Evolución del rebaño, adaptación y estado actual

  • Alina Mitat Valdés Centro de Investigación para el Mejoramiento Animal de la Ganadería Tropical (CIMAGT), Loma de Tierra, Cotorro, La Habana, Cuba https://orcid.org/0000-0001-8197-3063

Resumen

Antecedentes: La introducción de búfalos en Cuba es relativamente reciente, no obstante, se posesionan en la práctica pecuaria con diferentes limitaciones, principalmente de índole cognoscitivo. Detallar la introducción de los búfalos en Cuba, su adaptación a las condiciones ambientales, y el desarrollo actual. Desarrollo. Se informa acerca de la evolución de los rebaños a partir de la llegada de la subespecie de Pantano y su situación actual. Conclusiones: Los resultados generales indican que su adaptación al ambiente cubano es una realidad, sin embargo, para mantener e incrementar la productividad de esta especie es necesario desarrollar un programa con nuevos enfoques gerenciales y tecnológicos, cuya guía parta del principio de producción a ciclo cerrado e incluya un proyecto coherente de mejora genética.

 

Palabras claves: Búfalos, adaptación, desarrollo de programa (Fuente: MeSH)

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Aguilar, R., Bu, A., Dresdner, J., Fernández, P., González, A., Polanco, C., & Tansini, R. (2004). La ganadería en Cuba: desempeño y desafíos. https://hdl.handle.net/20.500.12008/9463

Armiñana-García, R., Olivera-Bacallao, D., Lunar-Aguila, F. J., Fimia-Duarte, R., Ramos-Córdova, P., Morales-Suárez, L., Iannacone, J., & Cancio-Hernández, M. (2020). Conocimiento de escolares de educación secundaria del búfalo de agua bubalus bubalis (linnaeus, 1758), como especie exótica invasora. The Biologist (Lima), 18(2). https://doi.org/10.24039/rtb2020182805

Becskei, Z., Savić, M., Ćirković, D., Rašeta, M., Puvača, N., Pajić, M., Đorđević, S., & Paskaš, S. (2020). Assessment of water buffalo milk and traditional milk products in a sustainable production system. Sustainability, 12(16), 6616. https://doi.org/10.3390/su12166616

Bondoc, O. L., & Ramos, A. R. (2022). Fatty Acid Composition and Nutritional Indices/Ratios of Colostrum and Milk from Murrah and “Murrah× Carabao” Crossbred Buffaloes. Philippine Journal of Science, 151(1), 139-152. https://philjournalsci.dost.gov.ph/images/pdf/pjs_pdf/vol151no1/fatty_acid_composition_and_nutritional_indices_of_colostrum_and_milk_.pdf

Bondoc, O. L., Almendral-Saludes, T., Tandang, A. G., Bustos, A. R., Ramos, A. R., & Ebron, A. O. (2021). Composition and Yield of Colostrum and Milk from Murrah and “Murrah x Carabao” Crosses in the Philippines. Tropical Animal Science Journal, 44(3), 347-355. https://jurnal.ipb.ac.id/index.php/tasj/article/view/32888

Caballero, B., Finglas, P. M., & Toldrá, F. (2016). Encyclopedia of food and health. Oxford; Waltham, MA: Academic Press is an imprint of Elsevier. https://www.worldcat.org/title/encyclopedia-of-food-and-health/oclc/922721096

Camargo, O. (2012). La vaca lechera: Entre la eficiencia económica y la ineficiencia biológica. Archivos de Zootecnia, 61(237), 13-29. https://doi.org/10.21071/az.v61i237.2955

Cockrill, W. R. (1974). The husbandry and health of the domestic buffalo. https://books.google.com.cu/books?id=FTnxAAAAMAAJ

Cruz-Monterrosa, R., Mota-Rojas, D., Ramirez-Bribiesca, E., Mora-Medina, P., & Guerrero-Legarreta, I. (2020). Scientific findings on the quality of river buffalo meat and prospects for future studies. Journal of Buffalo Science, 9, 170-180. https://doi.org/10.6000/1927-520X.2020.09.18

da Silva, J. A. R., Garcia, A. R., de Almeida, A. M., Bezerra, A. S., & de Brito Lourenço Junior, J. (2021). Water buffalo production in the Brazilian Amazon Basin: A review. Tropical Animal Health and Production, 53(3), 1-21. https://doi.org/10.1007/s11250-021-02744-w

Di Stasio, L., & Brugiapaglia, A. (2021). Current knowledge on river buffalo meat: A critical analysis. Animals, 11(7), 2111. https://doi.org/10.3390/ani11072111

Dzitsiuk, V., Guzevatiy, O., Lytvynenko, T., & Guzeev, Y. (2020). Genetic polymorphism of buffalo Bubalus bubalis bubalis by cytogenetic and molecular markers. Agricultural Science and Practice, 7(1), 24-31. https://doi.org/10.15407/agrisp7.01.024

Falconer, D. S., & Mackay T. F. C. (1996). Introduction to Quantitative Genetics / D.S. Falconer. 4th ed. Harlow, England: Prentice Hall. https://indaga.ual.es/permalink/34CBUA_UAL/t0rgfc/alma991000379619704991

FAO. (2022). Producción pecuaria en América Latina y el Caribe. https://www.fao.org/americas/prioridades/produccion-pecuaria/es/

Garau, V., Manis, C., Scano, P., & Caboni, P. (2021). Compositional characteristics of mediterranean buffalo milk and whey. Dairy, 2(3), 469-488. https://doi.org/10.3390/dairy2030038

Goddard, M. (2009). Fitness traits in animal breeding programs. In Adaptation and Fitness in Animal populations (pp. 41-52). Springer, Dordrecht. https://doi.org/10.1007/978-1-4020-9005-9_3

Grazziotto, N. M., Maidana, S. S., & Romera, S. A. (2021). Susceptibilidad de los búfalos de agua frente a diferentes enfermedades infecciosas. Revista Veterinaria, 31(2), 215-223. http://dx.doi.org/10.30972/vet.3124750

Guerrero Legarreta, I., Napolitano, F., Monta-Rojas, D., & Cruz Monterrosa, R. G. (2018). El búfalo de agua versátil, rústico y sostenible como productor de carne. Agro Meat Argentina, 1-10. https://www.researchgate.net/publication/332547411_El_bufalo_de_agua_versatil_rustico_y_sostenible_como_productor_de_carne_Agro_Meat_Argentina_20181-10

Guerrero-Legarreta, I., Napolitano, F., Cruz-Monterrosa, R., Mota-Rojas, D., Mora-Medina, P., Ramírez-Bribiesca, E., Bertoni, A., Berdugo-Gutiérrez, J., & Braghieri, A. (2020). River buffalo meat production and quality: Sustainability, productivity, nutritional and sensory properties. Journal of Buffalo Science, 9, 159-169. https://doi.org/10.6000/1927-520X.2020.09.17

Hanuš, O., Samková, E., Křížová, L., Hasoňová, L., & Kala, R. (2018). Role of fatty acids in milk fat and the influence of selected factors on their variability—a review. Molecules, 23(7), 1636. https://doi.org/10.3390/molecules23071636

Hassan, M. A., Abdel-Naeem, H. H., Mohamed, H. M., & Yassien, N. A. (2018). Comparing the physico-chemical characteristics and sensory attributes of imported brazilian beef meat and imported indian buffalo meat. Journal of Microbiology, Biotechnology and Food Sciences, 8(1), 672-677. https://www.jmbfs.org/issue/august-september-2018-vol-8-no-1/jmbfs-279-hassan/?issue_id=4845&article_id=3

Hühn, S., Lourenço Junior, J. B., de Moura Carvalho, L. O. D., Barbosa do Nascimento, C. N., Vieira, L. C., dos Santos Carvalho, J. (1986). Aproveitamento do leite de búfala em produtos derivados. In Embrapa Amazônia Oriental-Artigo em anais de congresso (ALICE). In: Simpósio Do Trópico Úmido. https://ainfo.cnptia.embrapa.br/digital/bitstream/item/64017/1/Doc31-p357.pdf

Iannuzzi, A., Parma, P., & Iannuzzi, L. (2021). The Cytogenetics of the Water Buffalo: A Review. Animals, 11(11), 3109. https://doi.org/10.3390/ani11113109

Khan, I. T., Nadeem, M., Imran, M., Asif, M., Khan, M. K., Din, A., & Ullah, R. (2019). Triglyceride, fatty acid profile and antioxidant characteristics of low melting point fractions of Buffalo Milk fat. Lipids in health and disease, 18(1), 1-11. https://doi.org/10.1186/s12944-019-0995-6

Khanal, R. C., & Olson, K. C. (2004). Factors affecting conjugated linoleic acid (CLA) content in milk, meat, and egg: A review. Pakistan Journal of Nutrition, 3(2), 82-98. https://scialert.net/abstract/?doi=pjn.2004.82.98

Khedkar, C.D., Kalyankar, S.D., & Deosarkar, S.S. (2016). Buffalo Milk. In The Encyclopedia of Food and Health; Caballero, B., Finglas, P., Toldrá, F., Eds.; Academic Press: Oxford, UK, pp. 522–528. https://www.worldcat.org/title/encyclopedia-of-food-and-health/oclc/922721096

Mane, B. G., & Chatli, M. K. (2015). Buffalo milk: Saviour of farmers and consumers for livelihood and providing nutrition. Agricultural Rural Development, 2, 5-11. http://jakraya.com/journal/pdf/2-ardArticle_2.pdf

Minervino, A. H. H., Zava, M., Vecchio, D., & Borghese, A. (2020). Bubalus bubalis: A short story. Frontiers in veterinary science, 7, 570413. https://doi.org/10.3389/fvets.2020.570413

Rauw, W. M., Kanis, E., Noordhuizen-Stassen, E. N., & Grommers, F. J. (1998). Undesirable side effects of selection for high production efficiency in farm animals: a review. Livestock production science, 56(1), 15-33. https://doi.org/10.1016/S0301-6226(98)00147-X

Salzano, A., Licitra, F., D'Onofrio, N., Balestrieri, M. L., Limone, A., Campanile, G., D’Onofrio, D., & Neglia, G. (2019). Space allocation in intensive Mediterranean buffalo production influences the profile of functional biomolecules in milk and dairy products. Journal of dairy science, 102(9), 7717-7722. https://doi.org/10.3168/jds.2019-16656

Shaari, N. A. L., Jaoi-Edward, M., Loo, S. S., Salisi, M. S., Yusoff, R., Ab Ghani, N. I., ... & Ahmad, H. (2019). Karyotypic and mtDNA based characterization of Malaysian water buffalo. BMC genetics, 20(1), 1-6. https://doi.org/10.1186/s12863-019-0741-0

Singh, K. V., Das, R., Lavakumar, S., Sodhi, M., & Kataria, R. S. (2021). Bhangor' - Non-Descript Swamp Buffalo Population from North-East Indian State of Tripura. International Journal of Livestock Research, 11(3), 149-153. https://doi.org/10.5455/ijlr.20210107102359

Singh, K. V., Verma, U. K., Arora, M., Kataria, R. S., & Niranjan, S. (2020). Cytogenetic analysis reveals existence of swamp buffalo population in Meghalaya. Indian Journal of Animal Sciences, 90(6), 868-870. https://www.researchgate.net/profile/Karan-Singh-51/publication/344376042_Cytogenetic_analysis_reveals_existence_of_swamp_buffalo_population_in_Meghalaya/links/5f6db6d8299bf1b53ef0bcb8/Cytogenetic-analysis-reveals-existence-of-swamp-buffalo-population-in-Meghalaya.pdf

Tamburrano, A., Tavazzi, B., Callà, C. A. M., Amorini, A. M., Lazzarino, G., Vincenti, S., Zottola, T., Campagna, M. C., Moscato, U., & Laurenti, P. (2019). Biochemical and nutritional characteristics of buffalo meat and potential implications on human health for a personalized nutrition. Italian journal of food safety, 8(3). https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6784592/

Vani, S., Devi, K. S., Chakravarthy, M. K., & Manasa, V. (2020). Karyological study on Murrah buffalo. The Pharma Innovation Journal, 9(1), 139-142. https://www.thepharmajournal.com/archives/2020/vol9issue1/PartB/8-12-48-524.pdf

Yore, K., Gohain, C., Tolenkhomba, T., Shyamsana, N., Kalyan, S., & Mayengbam, S. (2018). Genetic Improvement of Swamp Buffalo through Cross Breeding and Backcrossing with Riverine Buffalo. International Journal of Livestock Research, 8(10), 30-45. https://www.researchgate.net/profile/Prava-Mayengbam/publication/327781953_Genetic_Improvement_of_Swamp_Buffalo_through_Cross_Breeding_and_Backcrossing_with_Riverine_Buffalo/links/5ee8a52692851ce9e7e7e6cc/Genetic-Improvement-of-Swamp-Buffalo-through-Cross-Breeding-and-Backcrossing-with-Riverine-Buffalo.pdf

Zhou, L., Tang, Q., Wasim Iqbal, M., Xia, Z., Huang, F., Li, L., Qin, G., & Zou, C. (2018). A comparison of milk protein, fat, lactose, total solids and amino acid profiles of three different buffalo breeds in Guangxi, China. Italian Journal of Animal Science, 17(4), 873-878. https://doi.org/10.1080/1828051X.2018.1443288

Publicado
2022-04-14
Cómo citar
Mitat Valdés, A. (2022). El búfalo de agua en Cuba. II. Evolución del rebaño, adaptación y estado actual. Revista De Producción Animal, 34(2). Recuperado a partir de https://transformacion.reduc.edu.cu, transformacion.reduc.edu.cu, transformacion.reduc.edu.cu/index.php/rpa/article/view/e4042
Sección
Genética y Reproducción