Truly Absorbed Microbial Protein Synthesis, Rumen Bypass Protein, Endogenous Protein, and Total Metabolizable Protein from Starchy and Protein-Rich Raw Materials: Model Comparison and Predictions

J Agric Food Chem. 2015 Jul 29;63(29):6518-24. doi: 10.1021/jf505961e. Epub 2015 Jul 21.

Abstract

This study was carried out to measure truly absorbed microbial protein synthesis, rumen bypass protein, and endogenous protein loss, as well as total metabolizable protein, from starchy and protein-rich raw feed materials with model comparisons. Predictions by the DVE2010 system as a more mechanistic model were compared with those of two other models, DVE1994 and NRC-2001, that are frequently used in common international feeding practice. DVE1994 predictions for intestinally digestible rumen undegradable protein (ARUP) for starchy concentrates were higher (27 vs 18 g/kg DM, p < 0.05, SEM = 1.2) than predictions by the NRC-2001, whereas there was no difference in predictions for ARUP from protein concentrates among the three models. DVE2010 and NRC-2001 had highest estimations of intestinally digestible microbial protein for starchy (92 g/kg DM in DVE2010 vs 46 g/kg DM in NRC-2001 and 67 g/kg DM in DVE1994, p < 0.05 SEM = 4) and protein concentrates (69 g/kg DM in NRC-2001 vs 31 g/kg DM in DVE1994 and 49 g/kg DM in DVE2010, p < 0.05 SEM = 4), respectively. Potential protein supplies predicted by tested models from starchy and protein concentrates are widely different, and comparable direct measurements are needed to evaluate the actual ability of different models to predict the potential protein supply to dairy cows from different feedstuffs.

Keywords: DVE/OEB system; NRC-2001 model; concentrates; dairy cows; protein evaluation.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animal Feed* / analysis
  • Animal Nutritional Physiological Phenomena
  • Animals
  • Bacterial Proteins / biosynthesis
  • Bacterial Proteins / metabolism*
  • Cattle
  • Dairying
  • Dietary Proteins / metabolism*
  • Digestion
  • Edible Grain
  • Intestinal Absorption
  • Models, Biological
  • Rumen / metabolism*
  • Rumen / microbiology*
  • Starch / metabolism*

Substances

  • Bacterial Proteins
  • Dietary Proteins
  • Starch