Effect of dietary high-oleic acid sunflower seed, palm oil and vitamin E supplementation on broiler performance, fatty acid composition and oxidation susceptibility of meat
Влияние включения в рацион семян подсолнечника с высоким содержанием олеиновой кислоты, пальмового масла и добавления витамина E на продуктивность бройлеров, состав жирных кислот и восприимчивость мяса к окислению
2006-10-01
SCID: 54.1/6vzv57dn
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alpha-tocopheryl acetate (vitamin E)high-oleic acid sunflower seed (HOASS)lipid oxidation / TBARS in chicken meatmonounsaturated fatty acids (MUFA)palm oil (PO)
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Abstract (AI)
1. A study was conducted to evaluate the effect of inclusion of two fat sources: high-oleic acid sunflower seed (HOASS; 0, 50, 100, 150 and 200 g/kg diet) and palm oil (PO), and dietary supplementation of vitamin E (alpha-tocopheryl acetate, 200 mg/kg diet) on performance, fatty acid composition and susceptibility to oxidation of white and dark chicken meat during refrigerated storage. Female chicks (3 to 6 weeks) were given one of 5 diets containing 90 g/kg of added fat with increasing monounsaturated fatty acid (MUFA) content, adjusted by progressively replacing PO by HOASS. 2. Body weight gain and gain:food ratio of birds were depressed in diets containing the highest proportions of HOASS (150 and 200 g/kg). Relative abdominal fat was reduced in birds fed diets including HOASS, except in the diet containing 100 g HOASS/kg. The inclusion of alpha-tocopheryl acetate improved body weight gain and gain:food ratio. 3. According to the fatty acid profile of the diets, saturated and polyunsaturated fatty acid (SFA and PUFA, respectively) contents were significantly reduced and MUFA content was significantly increased in white and dark chicken meats when the saturated oil, PO, was replaced progressively by HOASS in the diet. The inclusion of alpha-tocopheryl acetate increased PUFA content in both meats. 4. After 4 and 7 d of refrigerated storage, white and dark meat samples obtained from birds fed on diets containing HOASS had significantly lower thiobarbituric acid reacting substance (TBARS) values than those derived from the PO diet. The addition of alpha-tocopheryl acetate significantly reduced the lipid oxidation in white and dark meat. 5. Overall, the results showed that increasing MUFA content of chicken meat by replacing dietary PO with HOASS (up to 100 g/kg) did not adversely affect broiler performance and reduced the susceptibility of meat to oxidation during refrigerated storage. Dietary alpha-tocopherol supplementation improved chicken performance and was effective in protecting lipid meat from oxidation.
Key Findings
1
Dietary alpha-tocopheryl acetate significantly reduced lipid oxidation in white and dark meat and effectively protected meat lipids during refrigerated storage.
2
Diets with the highest HOASS levels (150 and 200 g/kg) depressed body weight gain and gain:food ratio, while HOASS inclusion generally reduced relative abdominal fat except at 100 g/kg.
3
Inclusion of alpha-tocopheryl acetate (200 mg/kg) improved body weight gain and gain:food ratio and increased PUFA content in both white and dark meats.
4
Meat from birds fed HOASS-containing diets showed significantly lower TBARS values after 4 and 7 days refrigerated storage, indicating reduced lipid oxidation versus palm oil diet.
5
Replacing palm oil with high-oleic acid sunflower seed (HOASS) progressively increased MUFA and decreased SFA and PUFA in white and dark chicken meats according to diet fatty acid profiles.
Research Object
Broiler chickens and their white and dark meat as affected by dietary fat sources and vitamin E supplementation
Research Subject
Effects of dietary high-oleic acid sunflower seed, palm oil replacement levels and alpha-tocopheryl acetate supplementation on broiler performance, meat fatty acid composition (SFA, MUFA, PUFA) and lipid oxidation susceptibility during refrigerated storage
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2006-10-01
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