Evaluación de bloques nutricionales que incluyen vainas maduras de leguminosas arbóreas
DOI:
https://doi.org/10.19136/era.a11nIV.4054Keywords:
algarrobo, digestibility, sheep, parota, nutrient blocksAbstract
Nutritional blocks (NB) are a strategy to supplement nutritional deficiencies in animals. This study aimed to determine in vitro ruminal fermentative characteristics and NB consumption preferences in sheep. Four criollo sheep (30 ± 3.0 kg BW) were used. Feeding consisted ad libitum of pangola grass and treatments. The treatments were: T1 = NB control (without pods); T2 = NB with 15% algarrobo pods; and T3 = NB with 15% parota pods. In vitro ruminal fermentation characteristics and consumption preferences were evaluated. The experimental design for in vitro ruminal characterization was a completely randomized design, and Tukey's test (P ≤ 0.05) was used to compare means. A descriptive analysis was performed for consumption preference. In the in vitro assay, T2 showed the highest (P ≤ 0.05) cumulative biogas production at 2 hours of incubation. T1 showed higher biogas production at 6, 8, 10, 12, 24, 36, 48, and 72 hours of incubation, as well as cumulative production, metabolizable energy, dry matter degradation, and neutral detergent fiber (P ≤ 0.05). In the in vivo trial, consumption of pangola grass was 16.4% higher (P ≤ 0.05) compared to the consumption of nutritional blocks. The consumption of blocks with parota pods increased by 53.4% (P ≤ 0.05) compared to those containing carob pods and the control block. It is concluded that the inclusion of parota pods can be an alternative for use in nutritional blocks due to the preference registered in sheep.
Downloads
References
Albores-Moreno S, Alayón-Gamboa JA, Ayala-Burgos AJ, Solorio-Sánchez FJ, Aguilar-Pérez CF, Olivera-Castillo L, Ku-Vera JC (2017) Effects of feeding ground pods of Enterolobium cyclocarpum Jacq. Griseb on dry matter intake, rumen fermentation, and enteric methane production by Pelibuey sheep fed tropical grass. Tropical Animal Health and Production 49(4): 857-866. https://doi.org/10.1007/s11250-017-1275-y.
Amanzougarene Z, Fondevila M (2020) Fitting of the in vitro gas production technique to the study of high concentrate diets. Animals 10(10): 1935. https://doi.org/10.3390/ani10101935.
AOAC (2005) Official methods of analysis. 18th edn. Arlington, VA, USA: Association of Official Analytical Chemist.
Chay-Canul AJ, Magaña-Monforte JG, Chizzotti ML, Piñeiro-Vázquez AT, Canul-Solís JR, Ayala-Burgos AJ, Ku-Vera JC, Tedeschi LO (2016) Requerimientos energéticos de ovinos de pelo en las regiones tropicales de Latinoamérica. Revisión. Revista Mexicana de Ciencias Pecuarias 7(1): 105-125. https://doi.org/10.22319/rmcp.v7i1.4152.
CSIRO (2007) Nutrient requirements of domesticated ruminants. CSIRO Publishing. Australia. 270p.
De K, Kumar D, Saxena V, Thirumurugan P, Naqvi S (2017) Effect of high ambient temperature on behavior of sheep under semi-arid tropical environment. International Journal of Biometeorology 61(7): 1269-1277. https://doi.org/10.1007/s00484-016-1304-y.
Di-Rienzo J, Balzarini M, González L, Cazanoves F, Tablada M, Walter C (2020) ‘InfoStat’. Cordoba, Colombia. Fecha de acceso: 19 de september de 2024.
Farooq MZ (2017) Effect of feeding frequency on dry matter intake weight gain feed conversion efficiency and its relation with body measurements in Lohi lambs. Pakistan Journal of Agricultural Sciences 54(03): 689-692. https://doi.org/10.21162/PAKJAS/17.3895.
García DE, Medina MG, Cova LJ, Torres A, Soca M, Pizzani P, Baldizán A, Domínguez CE (2008) Preferencia de vacunos por el follaje de doce especies con potencial para sistemas agrosilvopastoriles en el Estado Trujillo, Venezuela. Pastos y Forrajes 31(3): 255-270.
Hernández-Morales J, Sánchez-Santillán P, Torres-Salado N, Herrera-Pérez J, Rojas-García AR, Reyes-Vázquez I, Mendoza-Núñez MA (2018) Composición química y degradaciones in vitro de vainas y hojas de leguminosas arbóreas del trópico seco de México. Revista Mexicana de Ciencias Pecuarias 9(1): 105-120. https://doi.org/10.22319/rmcp.v9i1.4332.
Hoffman PC, Lundberg LM, Shaver RD, Contreras-Govea FE (2007) El Efecto de la madurez en la digestibilidad del FDN (fibra detergente neutro). Focus on Forage 15(5): 1-2.
Indu S, Sejian V, Kumar D, Pareek A, Naqvi SMK (2015) Ideal proportion of roughage and concentrate for Malpura ewes to adapt and reproduce in a semi-arid tropical environment. Tropical Animal Health and Production 47(8): 1487-1495. https://doi.org/10.1007/s11250-015-0889-1.
Junior MSFS, De Souza KA, De Jesus AB, De Araújo FL, Da Silva CS, De Oliveira APD, Cardoso CAL, De Tonissi EBG, Bagaldo AR (2022) Mesquite pod (Prosopis juliflora) meal on meat quality of pasture-finishing lambs. Tropical Animal Health and Production 54(1): 7. https://doi.org/10.1007/s11250-021-03015-4.
Khan FA, Sahoo A, Dixit SK (2015) Evaluation of administering Duddingtonia flagrans through complete feed block for controlling Haemonchus contortus in sheep. Animal Nutrition and Feed Technology 15(3): 447. https://doi.org/10.5958/0974-181X.2015.00045.1.
Lavrenčič A, Stefanon B, Susmel P (1997) An evaluation of the Gompertz model in degradability studies of forage chemical components. Animal Science 64(3): 423-431. https://doi.org/10.1017/S1357729800016027.
López-Leyva Y, González-Garduño R, Cruz-Tamayo AA, Arece-García J, Huerta-Bravo M, Ramírez-Valverde R, Torres-Hernández G, López-Arellano ME (2022) Protein supplementation as a nutritional strategy to reduce gastrointestinal nematodiasis in periparturient and lactating pelibuey ewes in a tropical environment. Pathogens 11(8): 941. https://doi.org/10.3390/pathogens11080941.
Martínez-Martínez R, López-Ortiz S, Ortega-Cerrilla MaE, Soriano-Robles R, Herrera-Haro JG, López-Collado J, Ortega-Jiménez E (2012) Preference, consumption and weight gain of sheep supplemented with multinutritional blocks made with fodder tree leaves. Livestock Science 149(1-2): 185-189. https://doi.org/10.1016/j.livsci.2012.06.032.
Menke KH, Raab L, Salewski A, Steingass H, Fritz D, Schneider W (1979) The estimation of the digestibility and metabolizable energy content of ruminant feedingstuffs from the gas production when they are incubated with rumen liquor in vitro. The Journal of Agricultural Science 93(1): 217-222. https://doi.org/10.1017/S0021859600086305.
Morales-Campos BK, Sánchez-Santillán P, Torres-Salado N, Alaniz-Gutiérrez L, Saavedra-Jiménez LA, Aguilar-Marcelino L (2022) Degradación de materia seca in vitro a diferentes tiempos de fermentación de un bloque nutricional con vaina de algarrobo. Ciencia y Tecnología Agropecuaria de México 10(1): 23-28.
Osuna D, Collantes D, Connell J, Ventura M, Castro C (1999) Estrategias de suplementación para rumiantes durante la estación seca.: I.: Efecto del almacenamiento sobre la calidad de los bloques nutricionales con diferentes niveles de melaza, caliza y leucaena (Leucaena leucocephala). Revista Científica- Facultad de Ciencias Veterinarias 9(2): 129-133.
Peralta N, Palma JMa, Macedo R (2004) Effect of diets with different levels of Enterolobium cyclocarpum fruit meal on growth of Hair sheep in confinement. Livestock Research for Rural Development 16(1): 4.
Piñeiro-Vázquez AT, Ayala-Burgos AJ, Chay-Canul AJ, Ku-Vera JC (2013) Dry matter intake and digestibility of rations replacing concentrates with graded levels of Enterolobium cyclocarpum in pelibuey lambs. Tropical Animal Health and Production 45(2): 577-583. https://doi.org/10.1007/s11250-012-0262-6.
Raju J, Narasimha J, Kumari NN, Raghunanadan T, Preetam VC, Kumar AA, Reddy PRK (2021) Feeding value of sorghum stover fed to tropical hair sheep as complete rations in chop, mash, pellet, and block forms. Veterinary World 14(8): 2273-2281. https://doi.org/10.14202/vetworld.2021.2273-2281.
Ramírez LRG (2009) Nutricion de rumiantes. Sistemas extensivos. Trillas. México. 320p.
Reshi PA, Tabasum T, Ganai AM, Ahmad HA, Sheikh GG, Beigh YA, Haq SA (2022) Use of urea based multinutrient blocks for enhanced performance of dairy cattle-A Review. Skuast Journal of Research 24(1): 12.23. https://doi.org/10.5958/2349-297X.2022.00002.2.
Reyes-Pérez JJ, Méndez-Martínez Y, Espinoza-Cunuhay KA, Bastidas-Espinoza RL, Apolo-Bosquez JA, Ramírez-de la Ribera JL, Ruiz-Espinoza FH (2022) Composición química, digestibilidad y rendimiento de Brachiaria decumbens a diferentes edades de rebrote. Biotecnia 24(2): 84-93. https://doi.org/10.18633/biotecnia.v24i2.1606.
Robles RS, García LIIG, Sánchez LR, Burgos W, Margarito LA (2023) Supplementation of creole sheep with multinutritional blocks in Tlaxcala, Mexico. Journal of Agricultural Sciences Research 3(7): 2-5. https://doi.org/10.22533/at.ed.9733723300510.
SAGARPA (1999) NOM-062-ZOO-1999 Norma oficial mexicana NOM-062-ZOO-1999, especificaciones técnicas para la producción, cuidado y uso de los animales de laboratorio. p. 59.
Salas CA, San Martín HF, Carcelén CF (2001) Preferencias y consumo en ovinos y su relación con las características físicas de los bloques nutricionales. Revista de Investigaciones Veterinarias del Perú 12(1): 112-115. https://doi.org/10.15381/rivep.v12i1.7362.
Salem BH, Nefzaoui A (2003) Feed blocks as alternative supplements for sheep and goats. Small Ruminant Research 49(3): 275-288. https://doi.org/10.1016/S0921-4488(03)00144-5.
Salisbury MW, Krehbiel CR, Ross TT, Schultz CL. Melton LL (2004) Effects of supplemental protein type on intake, nitrogen balance, and site, and extent of digestion in whiteface wethers consuming low-quality grass hay. Journal of Animal Science 82(12): 3567-3576. https://doi.org/10.2527/2004.82123567x.
Sánchez-Santillán P, Meneses-Mayo M, Miranda-Romero L, Santellano-Estrada E, Alarcón-Zúñiga B (2015) Fribrinolytic activity and gas production by Pleurotus ostreatus-IE8 and Fomes fomentarius - EUM1 in bagasse cane. Revista MVZ Córdoba 20: 4907-4916. https://doi.org/10.21897/rmvz.6.
Sánchez-Santillán P, Torres-Salado N, Rojas-García AR, Bottini-Luzardo MB, Maldonado-Peralta MÁ, Escobar-España JC, Reyes-Vázquez I, Manuel-Luviano D, Herrera-Pérez J (2019) Kinetics of gas production and in vitro fermentative characteristics of the substitution of cane molasses for mango pulp in the elaboration of nutritional blocks. Agrociencia 53(7): 957-967.
SAS (2011) Statistical Analysis System, SAS, User’s Guide. Cary, NC: SAS Inst. falta dirección electrónica y fecha de consulta.
SENASICA (2012) Ley Federal de Sanidad Animal, gob.mx. http://www.gob.mx/senasica/documentos/ley-federal-de-sanidad-animal. Fecha de acceso: 19 de september de 2024.
Tafa A, Melaku S, Peters KJ (2010) Supplementation with linseed (Linum usitatissimum) cake and/or wheat bran on feed utilization and carcass characteristics of Arsi-Bale sheep. Tropical Animal Health and Production 42(4): 677-685. https://doi.org/10.1007/s11250-009-9475-8.
Valles de la MB, Castillo GE, Bernal BH (2016) Rendimiento y degradabilidad ruminal de materia seca y energía de diez pastos tropicales cosechados a cuatro edades. Revista Mexicana de Ciencias Pecuarias 7(2): 141-158.
Van-Soest PJ (1994) Nutritional ecology of the ruminant. 2nd edn. United States of America: Cornell University Press.
Wang H, Liu Z, Huang M, Wang S, Cui D, Dong S, Li S, Qi Z, Liu Y (2016) Effects of long-term mineral block supplementation on antioxidants, immunity, and health of tibetan sheep. Biological Trace Element Research 172(2): 326-335. https://doi.org/10.1007/s12011-015-0593-z.
Yasin M, Animut G (2014) Replacing cottonseed meal with ground Prosopis juliflora pods; effect on intake, weight gain and carcass parameters of Afar sheep fed pasture hay basal diet. Tropical Animal Health and Production 46(6): 1079-1085. https://doi.org/10.1007/s11250-014-0615-4.
Zagorakis K, Milis C (2022) Prediction of degradability and digestibility parameters of protein supplements used in sheep nutrition from nutrient composition. Tropical Animal Health and Production 54(6): 393. https://doi.org/10.1007/s11250-022-03389-z.
Downloads
Published
Issue
Section
License
Copyright (c) 2024 Ecosistemas y Recursos Agropecuarios
This work is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License.
Aviso de copyright
Los autores que se envían a esta revista aceptan los siguientes términos:
una. Los autores conservan los derechos de autor y garantizan a la revista el derecho a ser la primera publicación del trabajo con una licencia de atribución de Creative Commons que permite a otros compartir el trabajo con un reconocimiento de la autoría del trabajo y la publicación inicial en esta revista.
B. Los autores pueden establecer acuerdos complementarios separados para la distribución no exclusiva de la versión del trabajo publicado en la revista (por ejemplo, en un repositorio institucional o publicarlo en un libro), con un reconocimiento de su publicación inicial en esta revista.
C. Se permite y se anima a los autores a difundir su trabajo electrónicamente (por ejemplo, en repositorios institucionales o en su propio sitio web) antes y durante el proceso de envío, ya que puede conducir a intercambios productivos, así como a una cita más temprana y más extensa del trabajo publicado. (Consulte El efecto del acceso abierto).