Yield and quality of Mavuno grass forage and silage mixed with agro-industrial by-products

Authors

DOI:

https://doi.org/10.19136/era.a12n1.4063

Keywords:

Additives, silage, cutting interval, agronomic management, Urochloa hybrid

Abstract

The objective was to evaluate the yield and quality of forage and silage of Mavuno grass at different cutting intervals with the use of additives. Forage yield was evaluated at intervals of 3, 6 and 9 weeks of regrowth, with two additives (orange peel and molasses). The treatments were: 1) Mavuno grass; 2) Mavuno grass + orange peel; 3) Mavuno grass + molasses and 4) Mavuno grass + orange peel + molasses. Dry matter yield (kg ha-1) and nutritional value; content (g kg-1 DM) of crude protein, acid detergent fiber, neutral detergent fiber, lignin; silage quality variables: pH, brix degrees and percentage of dry matter of the forage, were determined by a randomized complete block design. The data were analyzed by analysis of variance and the Tukey test was applied for comparison of means (α = 0.05). When harvesting the forage at nine-week intervals, the dry matter yield was 50 and 45% higher than that obtained in the third and sixth weeks, while the protein content at three-week intervals was 14 and 25% higher than that obtained in the sixth and ninth weeks, respectively. The increase in the cutting interval induced a higher dry matter yield, however, the protein content decreased and the fiber and lignin values increased, while the addition of additives to the ensiled forage improved quality parameters such as protein, brix degrees and dry matter percentage.

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Author Biographies

  • Juan Eduardo Godina-Rodríguez , Instituto Nacional de Investigaciones Forestales, Agrícolas y Pecuarias

    Instituto Nacional de Investigaciones Forestales, Agrícolas y Pecuarias, Campo Experimental Uruapan

  • Jonathan Raúl Garay-Martínez , Instituto Nacional de Investigaciones Forestales, Agrícolas y Pecuarias

    Instituto Nacional de Investigaciones Forestales, Agrícolas y Pecuarias, Campo Experimental Las Huastecas

  • José Felipe Orzuna-Orzuna, Universidad Autónoma Chapingo

    Universidad Autónoma Chapingo, Departamento de Zootecnia

  • Andrés Gilberto Limas-Martínez, Universidad Autónoma de Tamaulipas

    Universidad Autónoma de Tamaulipas, Facultad de Ingeniería y Ciencias

  • Jairo Jeu Quintanilla-Medina, Universidad Autónoma de Tamaulipas

    Universidad Autónoma de Tamaulipas, Facultad de Ingeniería y Ciencias

  • Santiago Joaquín-Cancino, Universidad Autónoma de Tamaulipas

    Facultad  de Ingeniería  y  Ciencias-Universidad  Autónoma  de Tamaulipas, Ciudad Victoria, Tamaulipas, México

References

Abo-Donia MF, El-Shora AM, Abd-Elaziz RW, Elgamal BN, El-Hamady AW (2022) Improve the nutritional value and utilization of rice straw via an ensiling process with different sources of energy and nitrogen enrichment. Journal of Applied Animal Research 50: 333-341. https://doi.org/10.1080/09712119.2022.2076685.

AOAC (2000) Official Methods of Analysis of AOAC International. Association of Official Analytical Chemists. USA. 2000p.

Caicedo W, Viáfara D, Pérez M, Ferreira AFN, Rubio G, Yanza R, Caicedo M, Caicedo L, Valle S, Ferreira MW (2020) Características químicas del ensilado de raquis de plátano (Musa paradisiaca) y banano orito (Musa acuminata AA) tratado con suero de leche y urea. Revista de Investigaciones Veterinarias del Perú 31: e19035. http://dx.doi.org/10.15381/rivep.v31i4.19035

Cañaveral-Martínez UR, Sánchez-Santillán P, Torres-Salado N, Sánchez-Hernández D, Herrera Pérez J, Rojas-García AR (2020) Características de calidad, bromatológicas y fermentativas in vitro de ensilado de mango maduro. Revista Mexicana Agroecosistemas 8(1): 82-90.

Cardona-Iglesias JL, Urbano-Estrada MF, Castro-Rincón E (2020) Evaluación de sólidos solubles en recursos forrajeros del trópico alto en el departamento de Nariño. CES Medicina Veterinaria y Zootecnia 15: 8-22. https://doi.org/10.21615/cesmvz.15.2.1

Cruz-Sánchez OE, Cruz-Hernández A, Gómez-Vázquez A, Chay-Canul AJ, Joaquín-Cancino S, De la Cruz-Lázaro E, Márquez-Quiroz C, Osorio-Osorio R, Hernández-Garay A (2018) Producción de forraje y valor nutritivo del pasto mulato II (Bracharia híbrido 36087) a diferente régimen de pastoreo. Agroproductividad 11: 18-23.

Cunha BT, Pereira VA, Lédo SFJ, Daher FR, Machado CJ (2022) Sugar content variation in elephant grass germplasm. Ciência Rural 52: e20200739. https://doi.org/10.1590/0103-8478cr20200739

Dahiru M, Abdurrahaman LS, Umar MA, Muhammad Y, Muhammad SA, Rahama MH, Halilu H, Abdullahi B (2022) Effects of fruits peels as an additives on ensiling qualities of gamba grass. Journal of Agriculture and Agricultural Technology 8: 145-149. https://doi.org/10.33003/jaat.2022.0802.19

Da-Silva SHM, Vendramini BJM, De Oliveira LFC, Filho SCV, Kaneko M, Silveira LM, Sanchez DJM, Yarborough KJ (2020) Harvest frequency effects on herbage characteristics of ‘Mavuno’ Brachiaria grass. Crop Science 60: 1113-1122. https://doi.org/10.1002/csc2.20046

Dos-Anjos ANA, Almeida CJC, Viegas CR, Silva FPH, Morais FL, Nepomuceno DD, De-Carvalho CAB, Soares FA (2022) Protein and carbohydrate profiles of 'Massai' grass silage with pelleted citrus pulp and microbial inoculant. Pesquisa Agropecuaria Brasileira 57: e02732. https://doi.org/10.1590/ S1678-3921.pab2022.v57.02732

Ebrahimi M, Rajion MA, Goh YM, Farjam AS, Sazili AQ, Schonewille JT (2016) The effects of adding lactic acid bacteria and cellulase in oil palm (Elais Guineensis Jacq.) frond silages on fermentation quality. Italian Journal of Animal Science 13: 557-562. https://doi.org/10.4081/ijas.2014.3358

Espinoza-Zamora A, Orozco-Benítez G, Vázquez-López Y, Romo-Rubio J, Escalera-Valente F, Martínez-González S (2019) Una revisión sobre la pulpa de naranja: Cantidad, composición y usos. Abanico Agroforestal 1: 1-14.

Garay JR, Estrada B, Bautista Y, Bernal-Flores A, Mendoza SI, Martínez JC, Sosa E, Santiago J (2020) Forage yield and quality of buffel H-17 and Urochloa hybrids at different regrowth ages under semi-arid conditions. Grassland Science 66: 277-284. https://doi.org/10.1111/grs.12278

Garay-Martínez JR, Joaquín-Cancino S, Estrada-Drouaillet B, Martínez-González JC, Joaquín-Torres B, Limas-Martínez AG, Hernández-Meléndez J (2018) Acumulación de forraje de pasto buffel e híbridos de Urochloa a diferente edad de rebrote. Ecosistemas y Recursos Agropecuarios 5: 573-581. https://doi.org/10.19136/era.a5n15.1634

Garcés MAM, Roa BL, Alzate RS, León SGJ, Arango BAF (2004) Ensilaje como fuente de alimentación para el ganado. Revista Lasallista de Investigación 1(1): 66-71

Godina-Rodríguez JE, Joaquín-Cancino S, Estrada-Drouaillet B, Garay-Martínez JR, Limas-Martínez AG, Bautista-Martínez Y (2022) Forage yield of Urochloa grass cv Camello I and II at different cutting frequencies and intensities. Agroproductividad 15: 87-93. https://doi.org/10.32854/agrop.v15i7.2315

Gómez OLM, Posada OSL, Olivera ÁM, Rosero NR, Aguirre MP (2017) Análisis de rentabilidad de la producción de leche de acuerdo con la variación de la fuente de carbohidrato utilizada en el suplemento de vacas holstein. Revista de Medicina Veterinaria (34): 9-22. https://doi.org/10.19052/mv.4251

Grizotto KR, Siqueira RG, Campos AF, Modesto TR, Resende DF (2020) Fermentative parameters and aerobic stability of orange peel silage with pelleted citrus pulp. Revista Brasileira de Zootecnia 49: e20190265. https://doi.org/10.37496/rbz4920190265

INEGI (2015) Anuario estadístico y geográfico de Tamaulipas 2015. Instituto Nacional de Estadística y Geografía. Aguascalientes, Aguascalientes, México. 521p.

Lascano CE (2002) Caracterización de las pasturas para maximizar producción animal. Archivos Latinoamericanos de Producción Animal 10: 126-132.

Lorenzo-Hernández R, Torres-Salado N, Sánchez-Santillán P, Herrera-Pérez J, Mayrén-Mendoza FJ, Salinas-Ríos T (2019) Evaluación de las características de calidad y bromatológicas de ensilados elaborados con residuos de calabaza (Cucurbita argyrosperma). Revista Internacional de Contaminación Ambiental 35: 957-963. https://doi.org/10.20937/rica.2019.35.04.14

Marín RF, Soler C, Benavente O, Castillo J, Pérez JA (2007) By-products from different citrus processes as a source of customized functional fibres. Food Chemistry 100(2): 736-741. https://doi.org/10.1016/j.foodchem.2005.04.040

Marques COF, Sales JEC, Monção PF, Silva FA, Rigueira SJP, Pires ADA (2021) Potential for using dehydrated banana peel as an additive in grass silage. Agrarian Sciences Journal 12: 01-08. https://doi.org/10.35699/2447-6218.2021.32807

Mathur S, Umakanth AV, Tonapi VA, Sharma R, Sharma MK (2017) Sweet sorghum as biofuel feedstock: recent advances and available resources. Biotechnology for Biofuels 10: 1-12. https://doi.org/10.1186/s13068-017-0834-9

McAllister TA, Hristov AN (2000) The fundamentals of making good quality silage. Advances in Dairy Technology 12: 381-399.

Prudencio FM, Almeida CLJ, Moreira A, Freitas SG, Heinrichs R, Filho SCV (2023) Effect of phosphorus-containing polymers on the shoot dry weight yield and nutritive value of Mavuno grass. Agronomy 13: e1145. https://doi.org/10.3390/agronomy13041145

Queiroz OCM, Ogunade IM, Weinberg Z, Adesogan AT (2018) Silage review: Foodborne pathogens in silage and their mitigation by silage additives. Journal of Dairy Science 101: 4132-4142. https://doi.org/10.3168/jds.2017-13901

Quero CAR, Enríquez QJF, Miranda JL (2007) Evaluación de especies forrajeras en América Tropical, avances o status quo. Interciencia 32: 566-571.

Ramírez RO, Hernández GA, Da Silva CS, Pérez PJ, Enríquez QJF, Quero CAR, Herrera HJG, Cervantes NA (2009) Acumulación de forraje, crecimiento y características estructurales del pasto Mombaza (Panicum maximum Jacq.) cosechado a diferentes intervalos de corte. Técnica Pecuaria en México 47: 203-213.

Robles-Vega FJ, Granados-Rivera LD, Joaquín-Cancino S, Aguado-Lara G, Rivas-Jacobo MA, Garay-Martínez JR (2020) Forage yield of Urochloa cultivars in a warm sub-humid environment. Agroproductividad 13: 75-81. https://doi.org/10.32854/agrop.v13i12.1902

Rodrigues LF, Vendramini BJM, Dos Santos CA, Dubeux BJC., Miotto CFR, Sousa FL, Alencar NM (2021) Canopy characteristics of ‘Mavuno’ hybrid Brachiaria grass and ‘Marandu’ palisadegrass harvested at different harvest intensities. Tropical Grasslands-Forrajes Tropicales 9: 249-255. https://doi.org/10.17138/tgft(9)249-255

Rojas GAR, Maldonado PMÁ, Ortega ASÁ, Palemón AF, Pérez HH, Ventura RJ (2024) Dinámica de formación de tallos, rendimiento y análisis bromatológico del pasto Mulato II (Urochloa híbrido) en el Trópico Seco de México. Tropical Grasslands-Forrajes Tropicales 2(1): 1-10. https://doi.org/10.17138/tgft(12)1-10

Rojas-García AR, Torres-Salado N, Maldonado-Peralta MÁ, Sánchez-Santillán P, García-Balbuena A, Mendoza-Pedroza SI, Álvarez-Vázquez P, Herrera-Pérez J, Hernández-Garay A (2018) Curva de crecimiento y calidad del pasto cobra (Brachiaria híbrido BR02/1794) a dos intensidades de corte. Agroproductividad 11: 34-38.

Rotz CA (2003) How to maintain forage quality during harvest and storage. Advances in Dairy Technology 15: 227-239.

SAS (2002) The SAS 9.1 for Windows. Statistical analysis software. SAS institute Inc. Cary, North Carolina. USA.

SIAP (2023) Anuario estadístico de la producción agrícola. Servicio de Información Agroalimentaria y Pesquera https://nube.siap.gob.mx/cierreagricola/. Fecha de consulta: 01 de marzo de 2024.

SMN (2010) Normales climatológicas por Estado. Servicio Meteorológico Nacional. Comisión Nacional de Agua (CONAGUA). Estación: 28197 San José de las Flores https://smn.conagua.gob.mx/es/. Fecha de consulta: 01 de marzo de 2024.

Souza OA, Taveira SJH, Santos MAJ, Fernandes BP, Costa PAK, Costa MC, Gurgel CAL, Silva GAC, Costa CPJV (2022) Chemical composition and fermentation characteristics of maize silage with citrus pulp. Revista Brasileira de Saúde e Produção Animal 23: e 21352022. https://doi.org/10.1590/S1519-9940213502022

Suárez-Paternina E, Reza-García S, Cuadrado-Capella H, Pastrana-Vargas I, Espinosa-Carvajal M, Mejía-Kerguelén S (2015) Variación en la concentración de sólidos solubles durante el día, en tres pasturas en época seca en el valle medio del río Sinú. Corpoica Ciencia Tecnológica Agropecuaria 16: 181-188.

Van-Soest PJ, Robertson BJ, Lewis AB (1991) Methods for dietary fiber, neutral detergent fiber, and nonstarch polysaccharides in relation to animal nutrition. Journal Dairy Science 74: 3583-3597. https://doi.org/10.3168/jds.S0022-0302(91)78551-2

Vargas TV, Hernández RME, Gutiérrez JL, Plácido DCJ, Jiménez AC (2007) Clasificación climática del Estado de Tamaulipas. CienciaUAT 2: 15-19.

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Published

2025-03-25

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SCIENTIFIC ARTICLE

How to Cite

Godina-Rodríguez , J. E., Garay-Martínez , J. R., Orzuna-Orzuna, J. F., Limas-Martínez, A. G., Quintanilla-Medina, J. J., & Joaquín-Cancino, S. (2025). Yield and quality of Mavuno grass forage and silage mixed with agro-industrial by-products. Ecosistemas Y Recursos Agropecuarios, 12(1). https://doi.org/10.19136/era.a12n1.4063

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