Effects of a combination of feed additives on methane production, diet digestibility, and animal performance in lactating dairy cows

Two experiments were conducted to assess the effects of a mixture of dietary additives on enteric methane production, rumen fermentation, diet digestibility, energy balance, and animal performance in lactating dairy cows. Identical diets were fed in both experiments. The mixture of feed additives investigated contained lauric acid, myristic acid, linseed oil, and calcium fumarate. These additives were included at 0.4, 1.2, 1.5, and 0.7% of dietary dry matter, respectively (treatment ADD). Experimental fat sources were exchanged for a rumen inert source of fat in the control diet (treatment CON) to maintain isolipidic rations. Cows (experiment 1, n = 20; experiment 2, n = 12) were fed restricted amounts of feed to avoid confounding effects of dry matter intake on methane production. In experiment 1, methane production and energy balance were studied using open-circuit indirect calorimetry. In experiment 2, 10 rumen-fistulated animals were used to measure rumen fermentation characteristics. In both experiments animal performance was monitored. The inclusion of dietary additives decreased methane emissions (g/d) by 10%. Milk yield and milk fat content tended to be lower for ADD in experiment 1. In experiment 2, milk production was not affected by ADD, but milk fat content was lower. Fat- and protein-corrected milk was lower for ADD in both experiments. Milk urea nitrogen content was lowered by ADD in experiment 1 and tended to be lower in experiment 2. Apparent total tract digestibility of fat, but not that of starch or neutral detergent fiber, was higher for ADD. Energy retention did not differ between treatments. The decrease in methane production (g/d) was not evident when methane emission was expressed per kilogram of milk produced. Feeding ADD resulted in increases of C12:0 and C14:0 and the intermediates of linseed oil biohydrogenation in milk in both experiments. In experiment 2, ADD-fed cows tended to have a decreased number of protozoa in rumen fluid when compared with that in control cows. Total volatile fatty acid concentrations were lower for ADD, whereas molar proportions of propionate increased at the expense of acetate and butyrate

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Main Authors: van Zijderveld, S.M., Fonken, B.C.J., Dijkstra, J., Gerrits, W.J.J., Perdok, H.B., Fokkink, W.B., Newbold, J.R.
Format: Article/Letter to editor biblioteca
Language:English
Subjects:beef-cattle, chain fatty-acids, coconut oil, crude linseed, detergent fiber, extruded linseed, fumaric-acid, linseed oil, myristic acid, ruminal methanogenesis,
Online Access:https://research.wur.nl/en/publications/effects-of-a-combination-of-feed-additives-on-methane-production--3
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spelling dig-wur-nl-wurpubs-4042062024-12-04 van Zijderveld, S.M. Fonken, B.C.J. Dijkstra, J. Gerrits, W.J.J. Perdok, H.B. Fokkink, W.B. Newbold, J.R. Article/Letter to editor Journal of Dairy Science 94 (2011) 3 ISSN: 0022-0302 Effects of a combination of feed additives on methane production, diet digestibility, and animal performance in lactating dairy cows 2011 Two experiments were conducted to assess the effects of a mixture of dietary additives on enteric methane production, rumen fermentation, diet digestibility, energy balance, and animal performance in lactating dairy cows. Identical diets were fed in both experiments. The mixture of feed additives investigated contained lauric acid, myristic acid, linseed oil, and calcium fumarate. These additives were included at 0.4, 1.2, 1.5, and 0.7% of dietary dry matter, respectively (treatment ADD). Experimental fat sources were exchanged for a rumen inert source of fat in the control diet (treatment CON) to maintain isolipidic rations. Cows (experiment 1, n = 20; experiment 2, n = 12) were fed restricted amounts of feed to avoid confounding effects of dry matter intake on methane production. In experiment 1, methane production and energy balance were studied using open-circuit indirect calorimetry. In experiment 2, 10 rumen-fistulated animals were used to measure rumen fermentation characteristics. In both experiments animal performance was monitored. The inclusion of dietary additives decreased methane emissions (g/d) by 10%. Milk yield and milk fat content tended to be lower for ADD in experiment 1. In experiment 2, milk production was not affected by ADD, but milk fat content was lower. Fat- and protein-corrected milk was lower for ADD in both experiments. Milk urea nitrogen content was lowered by ADD in experiment 1 and tended to be lower in experiment 2. Apparent total tract digestibility of fat, but not that of starch or neutral detergent fiber, was higher for ADD. Energy retention did not differ between treatments. The decrease in methane production (g/d) was not evident when methane emission was expressed per kilogram of milk produced. Feeding ADD resulted in increases of C12:0 and C14:0 and the intermediates of linseed oil biohydrogenation in milk in both experiments. In experiment 2, ADD-fed cows tended to have a decreased number of protozoa in rumen fluid when compared with that in control cows. Total volatile fatty acid concentrations were lower for ADD, whereas molar proportions of propionate increased at the expense of acetate and butyrate en application/pdf https://research.wur.nl/en/publications/effects-of-a-combination-of-feed-additives-on-methane-production--3 10.3168/jds.2010-3635 https://edepot.wur.nl/163532 beef-cattle chain fatty-acids coconut oil crude linseed detergent fiber extruded linseed fumaric-acid linseed oil myristic acid ruminal methanogenesis Wageningen University & Research
institution WUR NL
collection DSpace
country Países bajos
countrycode NL
component Bibliográfico
access En linea
databasecode dig-wur-nl
tag biblioteca
region Europa del Oeste
libraryname WUR Library Netherlands
language English
topic beef-cattle
chain fatty-acids
coconut oil
crude linseed
detergent fiber
extruded linseed
fumaric-acid
linseed oil
myristic acid
ruminal methanogenesis
beef-cattle
chain fatty-acids
coconut oil
crude linseed
detergent fiber
extruded linseed
fumaric-acid
linseed oil
myristic acid
ruminal methanogenesis
spellingShingle beef-cattle
chain fatty-acids
coconut oil
crude linseed
detergent fiber
extruded linseed
fumaric-acid
linseed oil
myristic acid
ruminal methanogenesis
beef-cattle
chain fatty-acids
coconut oil
crude linseed
detergent fiber
extruded linseed
fumaric-acid
linseed oil
myristic acid
ruminal methanogenesis
van Zijderveld, S.M.
Fonken, B.C.J.
Dijkstra, J.
Gerrits, W.J.J.
Perdok, H.B.
Fokkink, W.B.
Newbold, J.R.
Effects of a combination of feed additives on methane production, diet digestibility, and animal performance in lactating dairy cows
description Two experiments were conducted to assess the effects of a mixture of dietary additives on enteric methane production, rumen fermentation, diet digestibility, energy balance, and animal performance in lactating dairy cows. Identical diets were fed in both experiments. The mixture of feed additives investigated contained lauric acid, myristic acid, linseed oil, and calcium fumarate. These additives were included at 0.4, 1.2, 1.5, and 0.7% of dietary dry matter, respectively (treatment ADD). Experimental fat sources were exchanged for a rumen inert source of fat in the control diet (treatment CON) to maintain isolipidic rations. Cows (experiment 1, n = 20; experiment 2, n = 12) were fed restricted amounts of feed to avoid confounding effects of dry matter intake on methane production. In experiment 1, methane production and energy balance were studied using open-circuit indirect calorimetry. In experiment 2, 10 rumen-fistulated animals were used to measure rumen fermentation characteristics. In both experiments animal performance was monitored. The inclusion of dietary additives decreased methane emissions (g/d) by 10%. Milk yield and milk fat content tended to be lower for ADD in experiment 1. In experiment 2, milk production was not affected by ADD, but milk fat content was lower. Fat- and protein-corrected milk was lower for ADD in both experiments. Milk urea nitrogen content was lowered by ADD in experiment 1 and tended to be lower in experiment 2. Apparent total tract digestibility of fat, but not that of starch or neutral detergent fiber, was higher for ADD. Energy retention did not differ between treatments. The decrease in methane production (g/d) was not evident when methane emission was expressed per kilogram of milk produced. Feeding ADD resulted in increases of C12:0 and C14:0 and the intermediates of linseed oil biohydrogenation in milk in both experiments. In experiment 2, ADD-fed cows tended to have a decreased number of protozoa in rumen fluid when compared with that in control cows. Total volatile fatty acid concentrations were lower for ADD, whereas molar proportions of propionate increased at the expense of acetate and butyrate
format Article/Letter to editor
topic_facet beef-cattle
chain fatty-acids
coconut oil
crude linseed
detergent fiber
extruded linseed
fumaric-acid
linseed oil
myristic acid
ruminal methanogenesis
author van Zijderveld, S.M.
Fonken, B.C.J.
Dijkstra, J.
Gerrits, W.J.J.
Perdok, H.B.
Fokkink, W.B.
Newbold, J.R.
author_facet van Zijderveld, S.M.
Fonken, B.C.J.
Dijkstra, J.
Gerrits, W.J.J.
Perdok, H.B.
Fokkink, W.B.
Newbold, J.R.
author_sort van Zijderveld, S.M.
title Effects of a combination of feed additives on methane production, diet digestibility, and animal performance in lactating dairy cows
title_short Effects of a combination of feed additives on methane production, diet digestibility, and animal performance in lactating dairy cows
title_full Effects of a combination of feed additives on methane production, diet digestibility, and animal performance in lactating dairy cows
title_fullStr Effects of a combination of feed additives on methane production, diet digestibility, and animal performance in lactating dairy cows
title_full_unstemmed Effects of a combination of feed additives on methane production, diet digestibility, and animal performance in lactating dairy cows
title_sort effects of a combination of feed additives on methane production, diet digestibility, and animal performance in lactating dairy cows
url https://research.wur.nl/en/publications/effects-of-a-combination-of-feed-additives-on-methane-production--3
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