Matches in SemOpenAlex for { <https://semopenalex.org/work/W2002016147> ?p ?o ?g. }
- W2002016147 endingPage "841" @default.
- W2002016147 startingPage "824" @default.
- W2002016147 abstract "A study was conducted to determine the effects of replacing canola meal (CM) as the major protein source with wheat-based dried distillers grains with solubles (W-DDGS) on ruminal fermentation, microbial protein production, omasal nutrient flow and animal performance. Eight lactating dairy cows were fed in a replicated 4 × 4 Latin square design with 28-d periods (20 d of dietary adaptation and 8 d of measurements). Four cows in one Latin square were ruminally cannulated for measurements of ruminal fermentation characteristics and flow of nutrients at the omasal canal. Cows were fed either a standard barley silage-based total mixed ration containing CM as the major protein supplement (0% W-DDGS, control) or diets formulated to contain 10, 15, and 20% W-DDGS (dry matter basis), with W-DDGS replacing primarily CM. Diets were isonitrogenous (18.9% crude protein) and contained 3.0, 3.2, 3.5, and 3.7% ether extract for 0, 10, 15, and 20% W-DDGS, respectively. Diets contained 50% forage and 50% concentrate. Inclusion of W-DDGS linearly increased dry matter intake (29.5, 31.2, 30.2, and 31.9 kg/d for 0, 10, 15, and 20% W-DDGS, respectively). The addition of W-DDGS in place of CM resulted in a 1.2- to 1.8-kg increase in milk yield (42.9, 44.7, 44.1, and 44.5 kg/d for 0, 10, 15, and 20% W-DDGS); however, a quadratic change in feed efficiency (i.e., milk yield/DM intake) occurred as the dietary level of W-DDGS increased. Treatments did not differ for milk fat, protein, and lactose concentrations; however, quadratic changes were observed in milk yields of fat (1.48, 1.56, 1.62, and 1.55 kg/d for 0, 10, 15, and 20% W-DDGS, respectively), protein (1.44, 1.46, 1.49, and 1.42 kg/d) and lactose (1.96, 2.02, 2.09, and 1.93 kg/d). Ruminal fermentation characteristics did not change except that the inclusion of 20% W-DDGS resulted in a decrease and a tendency for a decrease in molar concentrations of isobutyrate and total volatile fatty acids, respectively. Omasal flow of total bacterial nonammonia N (NAN) and bacterial efficiency (g of total bacterial NAN flow/kg of organic matter truly digested in the rumen) were not different among diets; however, feeding W-DDGS resulted in a quadratic increase in nonammonia nonbacterial N flow at the omasal canal (271, 318, 336, and 311 g/d for 0, 10, 15, and 20% W-DDGS, respectively). These data indicate that W-DDGS can substitute for CM as the major protein source in dairy cow diets without negatively affecting ruminal fermentation, microbial protein production, and omasal nutrient flow, and can potentially increase dry matter intake and milk yield." @default.
- W2002016147 created "2016-06-24" @default.
- W2002016147 creator A5018198933 @default.
- W2002016147 creator A5039378176 @default.
- W2002016147 creator A5077582699 @default.
- W2002016147 date "2012-02-01" @default.
- W2002016147 modified "2023-10-16" @default.
- W2002016147 title "Effects of replacing canola meal as the major protein source with wheat dried distillers grains with solubles on ruminal function, microbial protein synthesis, omasal flow, and milk production in cows" @default.
- W2002016147 cites W1507204855 @default.
- W2002016147 cites W1964390684 @default.
- W2002016147 cites W1965965933 @default.
- W2002016147 cites W1972044128 @default.
- W2002016147 cites W1978357956 @default.
- W2002016147 cites W1988194920 @default.
- W2002016147 cites W1989182538 @default.
- W2002016147 cites W1997087247 @default.
- W2002016147 cites W1999175506 @default.
- W2002016147 cites W2000450636 @default.
- W2002016147 cites W2001264188 @default.
- W2002016147 cites W2003208091 @default.
- W2002016147 cites W2004706101 @default.
- W2002016147 cites W2008478005 @default.
- W2002016147 cites W2012144818 @default.
- W2002016147 cites W2028073923 @default.
- W2002016147 cites W2030047000 @default.
- W2002016147 cites W2043232864 @default.
- W2002016147 cites W2043471252 @default.
- W2002016147 cites W2044774677 @default.
- W2002016147 cites W2047269450 @default.
- W2002016147 cites W2049570291 @default.
- W2002016147 cites W2053642637 @default.
- W2002016147 cites W2055783642 @default.
- W2002016147 cites W2055806944 @default.
- W2002016147 cites W2056746857 @default.
- W2002016147 cites W2057758245 @default.
- W2002016147 cites W2061729786 @default.
- W2002016147 cites W2064167566 @default.
- W2002016147 cites W2064338948 @default.
- W2002016147 cites W2073086536 @default.
- W2002016147 cites W2083404688 @default.
- W2002016147 cites W2086228257 @default.
- W2002016147 cites W2088322325 @default.
- W2002016147 cites W2090588917 @default.
- W2002016147 cites W2090639572 @default.
- W2002016147 cites W2090659122 @default.
- W2002016147 cites W2091729387 @default.
- W2002016147 cites W2116821151 @default.
- W2002016147 cites W2120377125 @default.
- W2002016147 cites W2123956240 @default.
- W2002016147 cites W2131177858 @default.
- W2002016147 cites W2139087046 @default.
- W2002016147 cites W2140124068 @default.
- W2002016147 cites W2149877973 @default.
- W2002016147 cites W2150356537 @default.
- W2002016147 cites W2150608392 @default.
- W2002016147 cites W2155513519 @default.
- W2002016147 cites W2157246688 @default.
- W2002016147 cites W2159102417 @default.
- W2002016147 cites W2159842576 @default.
- W2002016147 cites W2163444364 @default.
- W2002016147 cites W2166421314 @default.
- W2002016147 cites W2169249240 @default.
- W2002016147 cites W2169911865 @default.
- W2002016147 cites W2341421605 @default.
- W2002016147 cites W2406224384 @default.
- W2002016147 cites W2442426174 @default.
- W2002016147 cites W37539108 @default.
- W2002016147 doi "https://doi.org/10.3168/jds.2011-4718" @default.
- W2002016147 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/22281346" @default.
- W2002016147 hasPublicationYear "2012" @default.
- W2002016147 type Work @default.
- W2002016147 sameAs 2002016147 @default.
- W2002016147 citedByCount "34" @default.
- W2002016147 countsByYear W20020161472013 @default.
- W2002016147 countsByYear W20020161472014 @default.
- W2002016147 countsByYear W20020161472015 @default.
- W2002016147 countsByYear W20020161472016 @default.
- W2002016147 countsByYear W20020161472017 @default.
- W2002016147 countsByYear W20020161472018 @default.
- W2002016147 countsByYear W20020161472019 @default.
- W2002016147 countsByYear W20020161472020 @default.
- W2002016147 countsByYear W20020161472021 @default.
- W2002016147 countsByYear W20020161472022 @default.
- W2002016147 crossrefType "journal-article" @default.
- W2002016147 hasAuthorship W2002016147A5018198933 @default.
- W2002016147 hasAuthorship W2002016147A5039378176 @default.
- W2002016147 hasAuthorship W2002016147A5077582699 @default.
- W2002016147 hasBestOaLocation W20020161471 @default.
- W2002016147 hasConcept C100544194 @default.
- W2002016147 hasConcept C140793950 @default.
- W2002016147 hasConcept C142796444 @default.
- W2002016147 hasConcept C158887663 @default.
- W2002016147 hasConcept C178790620 @default.
- W2002016147 hasConcept C185592680 @default.
- W2002016147 hasConcept C206139338 @default.
- W2002016147 hasConcept C22641795 @default.
- W2002016147 hasConcept C2776371603 @default.
- W2002016147 hasConcept C2776544680 @default.