Balancing Carbohydrates and Proteins for Optimum Rumen Microbial Yield
Open Access
- 1 October 1991
- journal article
- review article
- Published by American Dairy Science Association in Journal of Dairy Science
- Vol. 74 (10) , 3630-3644
- https://doi.org/10.3168/jds.s0022-0302(91)78553-6
Abstract
Establishing conditions under which rumen fermentation will be optimized requires an understanding of the nutrient requirements of the mixed microbial population. The major nutrients required by rumen microbes are carbohydrates and proteins, but the most suitable sources and quantities needed to support maximum growth have not been determined. Digestion of proteins results in the production of peptides, which can accumulate in the rumen. Peptides are further hydrolyzed to amino acids, some of which are deaminated, producing ammonia. Although peptides, amino acids, and ammonia all may individually serve as sources of N for various microbes, the total population achieves the highest growth rate on mixtures of all three sources. In a somewhat analogous manner, carbohydrates are digested by exoenzymes to oligosaccharides that are available for crossfeeding by the mixed microbial population. Based on data from both in vitro and in vivo studies, there is general agreement that rate of digestion of carbohydrates is the major factor controlling the energy available for microbial growth; in addition, rate of digestion of total carbohydrate is directly related to proportion of starches, pectins, and sugars. Proteins affect both total fermentation and production of microbial DM per unit of carbohydrate fermented. It appears that the quantity of ruminally available protein needed to optimize microbial growth may, under some conditions, be as high as 14 to 15% of diet DM.Keywords
This publication has 125 references indexed in Scilit:
- Postprandial variations in the activity of polysaccharide‐degrading enzymes in microbial populations from the digesta solids and liquor fractions of rumen contentsJournal of Applied Bacteriology, 1989
- Factors affecting the formation of polysaccharide-degrading enzymes by rumen micro-organismsAnimal Feed Science and Technology, 1988
- Formation and utilization of end products of lignocellulose degradation in ruminantsAnimal Feed Science and Technology, 1988
- RATE OF PROTEIN DEGRADATION AND NUTRIENT DIGESTION OF VARIOUS NITROGEN SOURCES IN CONTINUOUS CULTURE OF RUMEN CONTENTSCanadian Journal of Animal Science, 1987
- Effects of particle size on digestion of hay by sheepThe Journal of Agricultural Science, 1987
- Effect of defaunation and refaunation of the rumen on rumen fermentation and N-flow in the duodenum of sheepArchives of Animal Nutrition, 1986
- The effect of pH on the growth and metabolism of Streptococcus bovis in continuous cultureJournal of Applied Bacteriology, 1986
- Nutritional and germination requirements of the rumen chytridiomycete Neocallimastix patriciarumTransactions of the British Mycological Society, 1986
- Participation of microorganisms adherent on plant fibres in the breakdown of carbohydrates and in the metabolism of lactic acid in the rumenZeitschrift für Tierphysiologie Tierernährung und Futtermittelkunde, 1983
- Protease Production by Bacteroides amylophilus Strain H 18Journal of General Microbiology, 1968