| Literature DB >> 32079159 |
Christopher D Powell1, Mewa S Dhanoa2, Anna Garber3, Jo-Anne M D Murray3, Secundino López4,5, Jennifer L Ellis1, James France1.
Abstract
Two models are proposed to describe atypical biphasic gas production profiles obtained from in vitro digestibility studies. The models are extensions of the standard Mitscherlich equation, comprising either two Mitscherlich terms or one Mitscherlich and one linear term. Two models that describe typical monophasic gas production curves, the standard Mitscherlich and the France model [a generalised Mitscherlich (root-t) equation], were assessed for comparison. Models were fitted to 25 gas production profiles resulting from incubating feedstuffs with faecal inocula from equines. Seventeen profiles displayed atypical biphasic patterns while the other eight displayed typical monophasic patterns. Models were evaluated using statistical measures of goodness-of-fit and by analysis of residuals. Good agreement was found between observed atypical profiles values and fitted values obtained with the two biphasic models, and both can revert to a simple Mitscherlich allowing them to describe typical monophasic profiles. The models contain kinetic fermentation parameters that can be used in conjunction with substrate degradability information and digesta passage rate to calculate extent of substrate degradation in the rumen or hindgut. Thus, models link the in vitro gas production technique to nutrient supply in the animal by providing information relating to digestion and nutritive value of feedstuffs.Entities:
Keywords: Mitscherlich equation; feedstuff evaluation; fermentation kinetics; gas production technique; in vitro digestibility; substrate degradation
Year: 2020 PMID: 32079159 DOI: 10.3390/ani10020308
Source DB: PubMed Journal: Animals (Basel) ISSN: 2076-2615 Impact factor: 2.752