Anin vivostudy of ruminal micro-organisms influencing lactate turnover and its contribution to volatile fatty acid production
- 1 August 1984
- journal article
- research article
- Published by Cambridge University Press (CUP) in The Journal of Agricultural Science
- Vol. 103 (1), 37-51
- https://doi.org/10.1017/s0021859600043306
Abstract
Summary: The ruminal metabolism of lactic acid was investigatedin vivounder normal feeding conditions in four sheep each adapted to one of the following diets: high-concentrate, intermediate, high-roughage containing 65, 43 or 10% maize meal and molasses respectively, or lucerne hay. A continuous basal turnover of ruminal lactate (0·01–0·02 mmol/1/min) was found which increased 10- to 40-fold immediately after feeding when production exceeded utilization and lactate accumulated in the rumen. This was followed by an increase in utilization rate which removed the accumulated lactate. Both lactate and glucose turnover were related to the amount of readily fermentable carbohydrate in the diet. Approximately 8, 6·5, 5 and 2·5% of the total VFA was formed through lactate on the high-concentrate, intermediate, high-roughage and lucerne hay diets respectively.Rumen microbial counts of total culturable, glucolytic, amylolytic and lactateutilizing bacteria, and of ciliate protozoa were also performed on the four sheep. Numbers of micro-organisms in all groups were highest on the high-concentrate diet and lowest on the two roughage diets. The proportions of the predominant genera from the different metabolic groups of bacteria differed, although in most cases the same organisms were present in the rumen on all diets. The succinate pathway was found to be quantitatively more important in the conversion of lactate to propionate in the rumen. Although the numbers of lactate-utilizing bacteria increased as the amount of RFC in the diet increased, their metabolic activity was actually lower. Reasons for this finding are discussed, together with factors influencing the regulation of lactate production and utilization in the rumen.This publication has 51 references indexed in Scilit:
- Role of DL-Lactic Acid as an Intermediate in Rumen Metabolism of Dairy Cows1Journal of Animal Science, 1983
- Carbohydrate fermentation in the rumen—variations on a themeProceedings Of The Nutrition Society, 1979
- Microbial Methane Production—Theoretical Aspects2Journal of Animal Science, 1979
- The Rumen Fermentation: A Model for Microbial Interactions in Anaerobic EcosystemsAdvances in Microbial Ecology, 1979
- Influence of Acidosis on Rumen functionJournal of Animal Science, 1976
- Carbohydrate digestion and glucose supply in the gut of the ruminantProceedings Of The Nutrition Society, 1971
- Ruminal Fermentation and Sugar Concentrations A Model Experiment with Selenomonas ruminantiumAgricultural and Biological Chemistry, 1968
- The Absorption of Lactic Acid from the Reticulo-Rumen of the SheepAustralian Journal of Biological Sciences, 1965
- The Isolation of Glycerol-Fermenting and Lipolytic Bacteria from the Rumen of the SheepJournal of General Microbiology, 1961
- Effect of volatile fatty acids, lactic acid and ammonia on rumen pH in sheepAustralian Journal of Agricultural Research, 1957