The Effect of Graded Levels of Crude Glycerin in BRS Capiaçu Grass Silage: Fermentation Profile and Bromatological Composition
محورهای موضوعی : Camelم.سی.آ. سیلوا 1 , ن.م. کستا 2 , جی.پی.اس. ریگوریا 3 , د.ل.اس. جسوس 4 , ن.ب.اس. سیلوا 5 , و.اس. سیلوا فیلهو 6 , جی.ت. سیلوا 7 , جی.جی.اس. آرایوجو 8 , وی.ر. روچا جونیور 9 , د.د. آلوز 10 , جی.م.آ. چامون 11 , اف.پی. مونکااُ 12
1 - Department of Animal Science, Faculty of Agricultural Science, State University of Montes Claros (Unimontes), Avenida Reinaldo Vianna, Morada do Sol, Janaúba, Minas Gerais, Brazil
2 - Department of Animal Science, Faculty of Agricultural Science, State University of Montes Claros (Unimontes), Avenida Reinaldo Vianna, Morada do Sol, Janaúba, Minas Gerais, Brazil
3 - Department of Animal Science, Faculty of Agricultural Science, State University of Montes Claros (Unimontes), Avenida Reinaldo Vianna, Morada do Sol, Janaúba, Minas Gerais, Brazil
4 - Department of Animal Science, Faculty of Agricultural Science, State University of Montes Claros (Unimontes), Avenida Reinaldo Vianna, Morada do Sol, Janaúba, Minas Gerais, Brazil
5 - Department of Animal Science, Faculty of Agricultural Science, State University of Montes Claros (Unimontes), Avenida Reinaldo Vianna, Morada do Sol, Janaúba, Minas Gerais, Brazil
6 - Department of Animal Science, Faculty of Agricultural Science, State University of Montes Claros (Unimontes), Avenida Reinaldo Vianna, Morada do Sol, Janaúba, Minas Gerais, Brazil
7 - Department of Animal Science, Faculty of Agricultural Science, State University of Montes Claros (Unimontes), Avenida Reinaldo Vianna, Morada do Sol, Janaúba, Minas Gerais, Brazil
8 - Department of Animal Science, Faculty of Agricultural Science, State University of Montes Claros (Unimontes), Avenida Reinaldo Vianna, Morada do Sol, Janaúba, Minas Gerais, Brazil
9 - Department of Animal Science, Faculty of Agricultural Science, State University of Montes Claros (Unimontes), Avenida Reinaldo Vianna, Morada do Sol, Janaúba, Minas Gerais, Brazil
10 - Department of Animal Science, Faculty of Agricultural Science, State University of Montes Claros (Unimontes), Avenida Reinaldo Vianna, Morada do Sol, Janaúba, Minas Gerais, Brazil
11 - Department of Animal Science, Faculty of Agricultural Science, State University of Montes Claros (Unimontes), Avenida Reinaldo Vianna, Morada do Sol, Janaúba, Minas Gerais, Brazil
12 - Department of Animal Science, Faculty of Agricultural Science, State University of Montes Claros (Unimontes), Avenida Reinaldo Vianna, Morada do Sol, Janaúba, Minas Gerais, Brazil
کلید واژه: dry matter, glycerol, effluent loss, total digestible nu-trients, <i>Pennisetum purpureum</i>,
چکیده مقاله :
The objective of this study was to evaluate the effect of crude glycerin inclusion levels on BRS Capiaçu grass (Pennisetum purpureum) silage on the parameters of fermentation and chemical-bromatological composition. Experimental treatments consisted of BRS Capiaçu grass silage with five levels of inclusion of crude glycerin (0, 1, 5, 10 and 15% inclusion in the natural matter) during ensiling. In this study, a completely randomized design was used along with five treatments and six replicates. The inclusion of crude glycerin in BRS capiaçu grass silage linearly reduced pH (P<0.01) and effluent losses (P<0.01). For each percentage unit of glycerin addition, there was a reduction of 0.013 pH units and 0.0485% of the effluent losses. There was no effect of crude glycerin on the ammoniacal nitrogen content (P=0.82, an average of 6.65% of the total nitrogen). The variation in the dry matter content between the highest glycerin inclusion dose (15% of natural matter) and the control group (without glycerin) was 30.5%. The crude protein content (P=0.01), ash (P<0.01), neutral detergent fiber (NDF; P<0.01), neutral detergent fiber corrected for ash and crude protein (NDFap; P<0.01) and acid detergent fiber (ADF; P<0.01) linearly reduced with the inclusion of crude glycerin compare to the control group. In the same order, there was a reduction of 0.115%, 0.08%, 1.95%, 1.84% and 1.06%, respectively, for each percentage unit of glycerin added. The addition of crude glycerin in elephant grass silage vs. BRS Capiaçu up to 15% of the natural material had improved the fermentation profile and the chemical-bromatological composition.
Antunes F.Z. (1994). Caracterização climática. Inf. Agrop. 17, 15-19.
Bolsen K.K., Lin C., Brent B.E. and Gadeken D. (1992). Effect of silage additives on the microbial succession and fermentation process of alfalfa and corn silages. J. Dairy Sci. 75, 3066- 3083.
Borreani G., Tabacco E., Schmidt R.J., Holmes B.J. and Muck R.E. (2018). Silage review: Factors affecting dry matter and quality losses in silages. J. Dairy Sci. 101, 3952-3979.
Buccioni A., Decandiab M., Minieria S., Molleb G. and Cabiddub A. (2012). Lipid metabolism in the rumen: New insights on lipolysis and biohydrogenation with an emphasis on the role of endogenous plant factors. Anim. Feed Sci. Technol. 174, 1-25.
Detmann E., Souza M.A., Valadares Filho S.C., Queiroz A.C., Berchielli T.T., Saliba E.O.S., Cabral L.S., Pina D.S., Ladeira M.M. and Azevedo J.A.G. (2012). Métodos Para Análise de Alimentos-INCT.Suprema, Visconde do Rio Branco, Minas Gerais, Brazil.
Dias A.M., Ítavo L.C.V., Ítavo C.C.B.F., Blan L.R., Gomes E.N.O., Soares C.M., Leal E.S., Nogueira E. and Coelho E.M. (2014). Ureia e glicerina bruta como aditivos na ensilagem de cana-de- açúcar. Arq Bras Med Vet Zootec. 66, 1874-1882.
Ferraretto L.F., Shaver R.D. and Luck B.D. (2018). Silage review: Recent advances and future technologies for whole-plant and fractionated corn silage harvesting. J. Dairy Sci. 101, 3937-3951.
Grant R.J. and Ferraretto L.F. (2018). Silage review: Silage feeding management: Silage characteristics and dairy cow feeding behavior. J. Dairy Sci. 101, 4111-4121.
Kung Jr L., Shaver R.D., Grant R.J. and Schmidt R.J. (2018). Silage review: Interpretation of chemical, microbial, and organoleptic components of silages. J. Dairy Sci. 101, 4020-4033.
Manso T., Gallardo B. and Guerra-Rivas C. (2016). Modifying milk and meat fat quality through feed changes. Small Rumin. Res. 142, 31-37.
Monção F.P., Costa M.A.M.S., Rigueira J.P.S., Moura M.M.A., Rocha Júnior V.R., Gomes V.M. Leal D.B., Maranhão C.M.A., Albuquerque C.J.B. and Chamone J.M.A. (2019). Yield and nutritional value of BRS Capiaçu grass in different age of regrowth. Semina Ciên Agr. 40, 1-8.
Muck R.E., Nadeau E.M.G., McAllister T.A., Contreras-Govea F.E., Santos M.C. and Kung J.L. (2018). Silage review: Recent advances and future uses of silage additives. J. Dairy Sci. 101, 3980-4000.
Negawo A., Teshome A., Kumar A., Hanson J. and Jones C.S. (2017). Opportunities for napier grass (Pennisetum purpureum) improvement using molecular genetics. Agronomy. 7, 1-21.
Orrico Junior M.A., Duarte J.A.V., Crone C., Neves F.O., Reis R.A., Orrico A.C.M., Schwingel A.W. and Vilela D.M. (2017). The use of crude glycerin as an alternative to reduce fermentation losses and enhance the nutritional value of piatã grass silage. Rev. Bras. Zootec. 46(8), 638-644.
Pereira A.V., Lédo F.J.S. and Machado J.C. (2017). BRS Kurumi and BRS Capiaçu - new elephant grass cultivars for grazing and cut-and-carry system. Crop Breed Appl. Biotechnol. 17, 59-62.
Rigueira J.P.S., Monção F.P., Sales E.C.J., Brant L.M.S., Pires D.A.A., Alves D.D. and Reis S.T. (2017). Crude glycerin levels in sugarcane silage: Losses and nutritional value. Bolet. Indúst. Anim. 74, 308-316.
Rigueira J.P.S., Monção F.P., Sales E.C.J., Reis S.T., Brant L.M.S., Chamone J.M.A., Rocha Júnior V.R. and Pires D.A.A. (2018). Fermentative profile and nutritional value of elephant grass silage with different levels of crude glycerin. Semina Ciên Agr. 39, 833-844.
Sampaio R.L., Resende F.D., Reis R.A., Oliveira I.M., Custódio L., Fernandes R.M., Pazdiora R.D. and Siqueira G.R. (2017). The nutritional interrelationship between the growing and finishing phases in crossbred cattle raised in a tropical system. Trop. Anim. Health Prod. 49, 1015-1024.
Santos R.J.C., Lira M.A., Guim A., Santos M.V.S., Dubeux Junior J.C.B. and Mello A.C.L. (2013). Elephant grass clones for silage production. Sci. Agric. 70, 6-11.
SAS Institute. (2008). SAS®/STAT Software, Release 9.2. SAS Institute, Inc., Cary, NC. USA.
Schmidt P., Junior P.R., Junges D., Dias T.L., Almeida R. and Mari L.J. (2011). New microbial additives on sugarcane ensilage: Bromatological composition, fermentative losses, volatile compounds and aerobic stability. Rev. Bras. Zootec. 40, 543-549.
Sirait J. (2017). Rumput gajah mini (Pennisetum purpureum) sebagai hijauan pakan untuk Ruminansia. Wartazoa. 27, 167-176
Sniffen C.J., O’Connor J.D., Van Soest P.J., Fox D.G. and Russell J.B. (1992). A net carbohydrat and protein system for evaluating cattle diets: II. Carbohydrate and protein availability. J. Anim. Sci. 70, 3562-3577.
Van Soest P. (1994). Nutritional Ecology of the Ruminant. Cornell University Press, Ithaca, New York.
Weiss W.P. (1998). Estimating the available energy content of feeds for dairy cattle. J. Dairy Sci. 81, 830-839.