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Methane mitigation potential of 3-nitrooxypropanol in lactating cows is influenced by basal diet composition

Authors :
van Gastelen, Sanne
Dijkstra, Jan
Heck, Jeroen M.L.
Kindermann, Maik
Klop, Arie
de Mol, Rudi
Rijnders, Dennis
Walker, Nicola
Bannink, André
van Gastelen, Sanne
Dijkstra, Jan
Heck, Jeroen M.L.
Kindermann, Maik
Klop, Arie
de Mol, Rudi
Rijnders, Dennis
Walker, Nicola
Bannink, André
Source :
ISSN: 0022-0302
Publication Year :
2022

Abstract

The objective of this study was to investigate whether the CH4 mitigation potential of 3-nitrooxypropanol (3-NOP) in dairy cattle was affected by basal diet (BD) composition. The experiment involved 64 Holstein-Friesian dairy cows (146 ± 45 d in milk at the start of trial; mean ± SD) in 2 overlapping crossover trials, each consisting of 2 measurement periods. Cows were blocked according to parity, d in milk, and milk yield, and randomly allocated to 1 of 3 diets: a grass silage-based diet (GS) consisting of 30% concentrates and 70% grass silage (DM basis), a grass silage- and corn silage-mixed diet (GSCS) consisting of 30% concentrates, 42% grass silage, and 28% corn silage (DM basis), or a corn silage-based diet (CS) consisting of 30% concentrates, 14% grass silage, and 56% corn silage (DM basis). Two types of concentrates were formulated, viz. a concentrate for the GS diet and a concentrate for the CS diet, to meet the energy and protein requirements for maintenance and milk production. The concentrate for the GSCS diet consisted of a 50:50 mixture of both concentrates. Subsequently, the cows within each type of BD received 2 treatments in a crossover design: either 60 mg of 3-NOP/kg of DM (NOP60) and a placebo with 0 mg of 3-NOP/kg of DM (NOP0) in one crossover or 80 mg of 3-NOP/kg of DM (NOP80) and NOP0 in the other crossover. Diets were provided as total mixed ration in feed bins, which automatically recorded feed intake. Additional concentrate was fed in the GreenFeed system that was used to measure emissions of CH4 and H2. The CS diets resulted in a reduced CH4 yield (g/kg DMI) and CH4 intensity (g/kg milk). Feeding 3-NOP resulted in a decreased DMI. Milk production and composition did not differ between NOP60 and NOP0, whereas milk yield and the yield of major components decreased for NOP80 compared with NOP0. Feed efficiency was not affected by feeding 3-NOP. Interactions between BD and supplementation of 3-NOP were observed for the production (g/d) and yie

Details

Database :
OAIster
Journal :
ISSN: 0022-0302
Notes :
application/pdf, Journal of Dairy Science 105 (2022) 5, ISSN: 0022-0302, ISSN: 0022-0302, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1323247856
Document Type :
Electronic Resource