Lignin content as an estimator of rumen degradability of grasses

  • V. V. Jouve Universidad Nacional de La Pampa, Facultad de Agronomía
  • N. P. Stritzler Universidad Nacional de La Pampa, Facultad de Agronomía INTA, EEA Ing. Agr. Guillermo Covas
  • C. M. Ferri Universidad Nacional de La Pampa, Facultad de Agronomía
  • H. J. Petruzzi Universidad Nacional de La Pampa, Facultad de Agronomía INTA, EEA Ing. Agr. Guillermo Covas

Keywords:

Warm-season grasses, rumen degradability, Iignin, rumen,

Abstract

The objective of this study was to establish the relationship between lignin content and the degradable fraction of warm-season grasses. The 120 samples used came from plots of the following species, Eragrostis curvula ev. Tanganyka (Ee), Panicum virgatum ev. Pathfinder (Pv), Panicum coIoratum ev. Selection 75 (Pe) and Tetrachne dregeí (Td). The samples were obtained during two consecutive winters, in 1990/91. The forage obtained was divided into its fractions, blade and stem+sheath, on which Iignin content (L) was determined. Each fraction was incubated within nylon bags, in the rumen of three fístulated steers. The Information obtained from incubations was mathematically processed to estimate the asymptote of the hyperbole (Dmax), and, through a non-linear model, the rapidly (a) and slowly (b) degradable dry malter values were determined. The contents of L were related to the values obtained by rumen incubation y, = (a+b) and Y2 = Dmax. Pseudovarlables were used to discriminate between grass species: Ee (Pv, Pe and Td=0); Pv (Pv = 1; Pe and Td=0); Pe (Pe = 1; Pv and Td=0);Td (Td=1; Pv and Pe=0). The equations obtained were, y, = 102.6 - 6.97L + 21.57Pv + 7.70Pe - 1.82L*Pe; R2 = 0.68(P<0.01), SE = 7.8; Y2 = 73.10 - 3.72L + 43.72Pv - 5.55L*Pv + 26.76Pe - 2.85L*Pc + 25.69Td - 3.44L*Td; R2 = 0.77(P<0.01), SE = 5.8. The results demonstrate that, the degradable fraction of warm-season grasses can be estimated by the Iignin content of the forage source.

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References

BERENSON, M.L.: D.M.. LEVINE y M. GOLDZTEIN. 1983. Intermediate statistical methods and applications. Prentice. Hall, Inc. 326 p.

CHANOLER, J.A.; ves. JEWELL, J.M.GOSSETT, P.J. VAN SOEST y J.B. ROBERTSON. 1980. Predicting methane fermentation biodegradability. Biotechnol. Bioeng. Symp. 10: 93-107.

OEMEYER, D./. 1981. Rumen microbes and digestion of plant cell walls. Agric. Environm. 6: 295-337.

GOERING, H.K. Y P.J. VAN SOEST. 1970. Forage fiber analysis (apparatus, reagents, procedures and sorne applications). Agr. Handb. 379, A.RS.., Oept. Agr. U.SA 21 p.

HARTLEY, RO. 1981. Chemical constitution, properties and processing of Iignocellulosic wastes in relation to nutritional quality for animals. Agric. Environm. 6: 91-113.

JUNG, H.G. Y M.S. ALLEN. 1995. Characteristics of plant cell walls affecting intake and digestibility of forage by ruminants. J. Anim. Sci. 73: 2774-2790.

JUNG, H.G. y DA OEETZ. 1993. Cell wall lignification and degradability. En: Forage cell wall structure and dígestíbility (H.G.Jung; O.R Buxton; RO. Hatfield y J. Ralph eds), ASA, CSSA, SSSA, Madison, Wisconsín, U.S.A. pp. 315-346.

LAPIERRE, C. 1993. Application of new methods for the ínvestigatíon of Iignin structure. En: Forage ce11 wall structure and digestibility (H.G. Jung; O.R Buxton; R.O. Hatfield y J. Ralph eds.), ASA, CSSA, SSSA, Madison, Wisconsin, U.S.A. pp. 133-166.

MAOSEN, J. y T. HVELPLUNO. 1985. Protein degradation In the rumen. A comparison between in vivo, nylon bag, in vitro and buffer measurements. Acta Agric. Scand. (SuppI.25): 103-124.

MEHREZ, A.Z. y E.R. ORSKOV. 1977. The use of a dacron bag technique lo determine rate of degradation of protein and energy in the rumen. J. Agric. Sc!. (Camb.) 88: 645-650.

MERTENS, O.R. Y P.J. VAN SOEST. 1972. Estimation of lhe maximal extent of digestion. J. Anim. Sci. 35: 286 (Abstract).

NKJ, 1985. Introduction to the Nordíc proteín evaluation system for ruminants into practice and further research requlrements. Acta Agric. Scand. (SuppI.25): 216-220.

ORSKOV, E.R Y /. MCOONALO. 1979. The estimatlon of protein degradabillty in the rumen from incubation measurements weighted according to rate of passage. J. Agric. Sci. (Camb.) 92: 499-503.

ORSKOV, E.R.; GW. REIO Y M. KAY. 1988. Prediction of intake by cattle from degradalion characteristics of roughages. Anim. Prod. 46: 29-34.

ORSKOV, E.R Y M. RYLE. 1990. Energy nulrition in ruminants. Elsevier Applied Science, Londres, New York. 149 p.

REEVES, J.B. 1987. Lignin and fiber compositional changes in forages over a growing season and their effects on in vitro digestibillty. J. Oairy Sci. 70: 1583-1594.

REEVES, J.B. Y G.C. GALLETTI. 1991. Observations on lignln assays: what do they really determinine? En: Production and utilizatlon of Iignocellulosics. (G.C. Galletti ed.), Elsevier Applied Science, London, New York. pp. 183-198.

SAUVANT, O. Y B. RAMANGASOAVINA. 1991. Rumen modelling. En: Ruman microblal metabolism and ruminant digestion (J.P. Jouany ed.), INRA, Paris, Francia. pp. 283-296.

SMITH, L.W.; H.K. GOERING Y C.H. GOROON. 1972. Relationships of forage eompositions with rates of cell wall dlgestion and indegestibility of cell walls. J. Dairy Sei. 55: 1140- 1147.

THEANDER, O. y P. AMAN. 1979. The ehemistry, morphology and analysis of dletary tiber components. En: Dietary tibers: Chemistry and nutrition (G.E. Inglett y S.1. Falkehag eds.), Academic Press, U.S.A. pp. 215-244.

VAN SOEST. P.J. 1981. Limiting faetors in plant residues of low biodegradability. Agrie. Environm. 6: 135-143.

VAN SOEST, P.J. 1993. Cell wall matrix interactlons and degradation. Session synopsis. En: Forage cell wall structure and digestibility (H.G. Jung; D.R. Buxton; R.D. Hatfield y J. Ralph eds.), ASA, CSSA, SSSA, Madison, Wisconsin, U.S.A. pp. 315-346.

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2020-05-04

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Artículos Científicos y Técnicos