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1.
J Sci Food Agric ; 98(3): 891-895, 2018 Feb.
Article in English | MEDLINE | ID: mdl-28686295

ABSTRACT

BACKGROUND: In situ estimates of ruminally undegraded protein (RUP) and intestinally digested protein (IDP) of ten concentrates, uncorrected or corrected for the ruminal microbial colonization, were used to examine the effects of this correction on the relationship between IDP and RUP values. Both variables were established for three rumen and duodenum cannulated wethers using 15 N labeling-techniques and considering measured rates of ruminal particle comminution (kc ) and outflow (kp ). RESULTS: A covariance analysis showed that the close relationship found between both variables (IDP = -0.0132 ± 0.00679 + 0.776 ± 0.0002 RUP; n = 60; P < 0.001; r = 0.960) is not affected by correcting for microbial colonization (P = 0.682). CONCLUSION: The IDP content in concentrates and industrial by-products can be predicted from RUP values, thus avoiding the laborious and complex procedure of determining intestinal digestibility; however, a larger sample of feeds is necessary to achieve more accurate predictions. The lack of influence of the correction for microbial contamination on the prediction observed in the present study increases the data available for this prediction. However, only the use of corrected values may provide an accurate evaluation. © 2017 Society of Chemical Industry.


Subject(s)
Animal Feed/microbiology , Bacteria/growth & development , Dietary Proteins/metabolism , Intestinal Mucosa/metabolism , Rumen/metabolism , Animal Feed/analysis , Animals , Bacteria/genetics , Bacteria/isolation & purification , Digestion , Gastrointestinal Microbiome , Intestines/microbiology , Rumen/microbiology
2.
Arch Anim Nutr ; 69(4): 237-50, 2015.
Article in English | MEDLINE | ID: mdl-26107289

ABSTRACT

In situ estimates of ruminal undegraded fraction (RU) and effective intestinal digestibility (EID, corrected for microbial colonisation) of dry matter (DM), crude protein (CP) and total analysed amino acids (TAA) of rye, wheat and corn grains, wheat bran, wheat and barley distillers' dried grains with solubles (DDGS) and corn gluten feed were measured on three rumen and duodenum cannulated wethers using (15)N labelling techniques and considering ruminal rates of particle comminution (kc) and outflow. Results indicate that not considering kc and microbial colonisation led to considerable overestimations of RU which increased with feed ruminal degradation. Microbial colonisation may be also associated with overestimations of EID, whose estimates for DM, CP and TAA were predicted from parameters related with the ruminal escape of intestinally indigestible materials. The RU estimates were higher for TAA than for CP in grains, but the opposite was observed in by-products, whereas EID estimates were higher for TAA in all feeds. To obtain accurate protein values in these feedstuffs, it is required to consider both kc and ruminal microbial colonisation. The CP-based results underestimate the intestinally digested protein in grains and the opposite is evidenced in cereal by-products. Microbial protein synthesised in the rumen is largely the major fraction of the feedstuff protein value with the exception of DDGS.


Subject(s)
Animal Feed , Edible Grain , Goats/metabolism , Plant Proteins/metabolism , Rumen/metabolism , Animal Nutritional Physiological Phenomena , Animals , Biological Availability , Diet/veterinary , Digestion , Male , Ruminants/metabolism
3.
J Sci Food Agric ; 94(12): 2448-55, 2014 Sep.
Article in English | MEDLINE | ID: mdl-24425584

ABSTRACT

BACKGROUND: Microbial corrected in situ estimates of the ruminal undegraded fraction (RU) and intestinal effective digestibility (IED) of amino acids (AA), except tryptophan, of rye, wheat and corn grains, wheat bran, wheat and barley distilled dried grains and corn gluten feed were measured on three rumen- and duodenum-cannulated wethers using (15)N-labelling techniques and considering ruminal rates of particle comminution and outflow. RESULTS: The lack of microbial correction led to overestimations of the intestinal digested fraction that rose with the increase in ruminal degradability. Thus these overestimations varied widely among feeds (from 4.3 to 32.1% for total analysed AA) and among AA. Digestion led to large changes in the AA supply that were greater in the rumen than in the intestine. The impact of these changes on the protein value is conditioned by the magnitude of the undegraded protein fraction. CONCLUSION: Microbial contamination taking place in the rumen and changes in the AA supply with digestion should be considered to attain accurate estimates of AA digestion. Globally, digestion improved the AA supply in rye, wheat and wheat distilled dried grain and decreased it in corn and corn gluten feed by reducing the supply of valine and basic AA, especially lysine.


Subject(s)
Amino Acids/metabolism , Animal Feed , Digestion , Edible Grain/chemistry , Rumen/metabolism , Ruminants/metabolism , Animals , Biological Availability , Duodenum , Rumen/microbiology , Ruminants/microbiology
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