Author
Listed:
- Miroslav Juráček
(Department of Animal Nutrition, Institute of Nutrition and Genomics, Slovak University of Agriculture in Nitra, Trieda A. Hlinku 2, 94976 Nitra, Slovakia)
- Patrícia Vašeková
(Department of Animal Nutrition, Institute of Nutrition and Genomics, Slovak University of Agriculture in Nitra, Trieda A. Hlinku 2, 94976 Nitra, Slovakia)
- Peter Massányi
(Department of Animal Physiology, Institute of Applied Biology, Slovak University of Agriculture in Nitra, Trieda A. Hlinku 2, 94976 Nitra, Slovakia)
- Anton Kováčik
(Department of Animal Physiology, Institute of Applied Biology, Slovak University of Agriculture in Nitra, Trieda A. Hlinku 2, 94976 Nitra, Slovakia)
- Daniel Bíro
(Department of Animal Nutrition, Institute of Nutrition and Genomics, Slovak University of Agriculture in Nitra, Trieda A. Hlinku 2, 94976 Nitra, Slovakia)
- Milan Šimko
(Department of Animal Nutrition, Institute of Nutrition and Genomics, Slovak University of Agriculture in Nitra, Trieda A. Hlinku 2, 94976 Nitra, Slovakia)
- Branislav Gálik
(Department of Animal Nutrition, Institute of Nutrition and Genomics, Slovak University of Agriculture in Nitra, Trieda A. Hlinku 2, 94976 Nitra, Slovakia)
- Michal Rolinec
(Department of Animal Nutrition, Institute of Nutrition and Genomics, Slovak University of Agriculture in Nitra, Trieda A. Hlinku 2, 94976 Nitra, Slovakia)
- Ondrej Hanušovský
(Department of Animal Nutrition, Institute of Nutrition and Genomics, Slovak University of Agriculture in Nitra, Trieda A. Hlinku 2, 94976 Nitra, Slovakia)
- Renata Kolláthová
(Department of Animal Nutrition, Institute of Nutrition and Genomics, Slovak University of Agriculture in Nitra, Trieda A. Hlinku 2, 94976 Nitra, Slovakia)
- Eva Mixtajová
(Department of Animal Nutrition, Institute of Nutrition and Genomics, Slovak University of Agriculture in Nitra, Trieda A. Hlinku 2, 94976 Nitra, Slovakia)
- Mária Kalúzová
(Department of Animal Nutrition, Institute of Nutrition and Genomics, Slovak University of Agriculture in Nitra, Trieda A. Hlinku 2, 94976 Nitra, Slovakia)
Abstract
The aim of this study was to find the effect of dried grape pomace (GP) feeding on the nutrients digestibility coefficients and biochemical parameters of sheep blood serum. The experiment was divided into three feeding periods—C (control), GP1 (1% grape pomace concentration), and GP2 (2% grape pomace concentration). Wethers in three groups in balance cages were housed for right feces collection. The C feed diet consisted of hay, ground wheat, soybean meal, mineral and vitamin lick. An experimental diet with 1% and 2% addition of GP from the daily dry matter intake was fed. After that, digestibility coefficients (in %) were calculated by the difference between nutrient intake and excretion. Furthermore, in the wethers’ blood, biochemical parameters (mineral, energetic, nitrogen, and enzymatic profile) were analyzed. After the GP2 feeding, statistically significant higher digestibility of CP (crude protein), NFC (nonfiber carbohydrates), NDF (neutral detergent fiber), and OM (organic matter) was found. However, the addition of dried GP increased significantly the content of Cl − and decreased the value of glucose, nevertheless, their concentrations were within the reference interval. Parameters of the wethers’ blood serum nitrogen and enzymatic profile were not affected by GP feeding. Dried grape pomace in an amount of 2% diet dry matter can be considered a suitable source of nutrients in sheep feeding, which in addition should improve the digestibility of diet crude protein.
Suggested Citation
Miroslav Juráček & Patrícia Vašeková & Peter Massányi & Anton Kováčik & Daniel Bíro & Milan Šimko & Branislav Gálik & Michal Rolinec & Ondrej Hanušovský & Renata Kolláthová & Eva Mixtajová & Mária Kal, 2021.
"The Effect of Dried Grape Pomace Feeding on Nutrients Digestibility and Serum Biochemical Profile of Wethers,"
Agriculture, MDPI, vol. 11(12), pages 1-10, November.
Handle:
RePEc:gam:jagris:v:11:y:2021:i:12:p:1194-:d:689170
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