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Effects of capsicum and propyl-propane thiosulfonate on rumen fermentation, digestion, and milk production and composition in dairy cows

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Autor
Foskolos A., Ferret A., Siurana A., Castillejos L., Calsamiglia S.
Datum
2020
Language
en
DOI
10.3390/ani10050859
Schlagwort
amylase
Capsicum oleoresin
dicarboxylic acid
essential oil
lactose
methylcellulose
milk fat
molasses
organic matter
polyunsaturated fatty acid
propionic acid
propyl propane thiosulfonate
soybean oil
unclassified drug
volatile fatty acid
animal experiment
animal model
Article
bacterium isolation
body weight
centrifugation
clinical article
colorimetry
controlled study
dairy cattle
digestion
esterification
feces
fermentation
gas liquid chromatography
human
infrared spectroscopy
lactation
milk production
milk yield
nitrogen balance
nonhuman
omasum
pH
rumen
rumen fluid
sampling
urine
MDPI AG
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Zusammenfassung
Essential oils may affect rumen fermentation, nutrient digestion, and milk production and composition. The objective of this study was to test the effects of capsicum oleoresin (CAP) and propyl-propane thiosulfonate (PTSO) on rumen fermentation, total tract digestibility, and milk yield and composition in lactating dairy cattle. Six lactating Holstein cows (averaging (mean ± SD) 130 ± 40 days in milk and 723 ± 55 kg of body weight) fitted with rumen cannulae were used in a duplicated 3 × 3 Latin square design. Treatments were: a control diet (CTR), the CTR diet with the addition of 500 mg/d/cow of CAP, and the CTR diet with the addition of 250 mg/d/cow of PTSO. Dry matter intake (DMI) averaged 20.7 kg/d with a tendency towards higher intake in cows fed CAP and lower in those fed PTSO (p = 0.08). Milk yield averaged 31.8 kg/d with no difference among treatments. However, feed efficiency was higher in PTSO supplemented cows compared with CTR (1.65 and 1.41 kg of milk yield/kg of DMI, respectively; p < 0.01). At the doses used in this experiment, CAP and PTSO failed to demonstrate any effects on rumen fermentation, but PTSO increased the efficiency of feed utilization to produce milk. © 2020 by the authors. Licensee MDPI, Basel, Switzerland.
URI
http://hdl.handle.net/11615/71656
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