King Oyster, Eryngii · 2012 · Research Support, Non U.S. Gov'T
High relevanceEffect of Pleurotus eryngii stalk residue on the oxidative status and meat quality of broiler chickens.
Pleurotus eryngii
Key points
- Pleurotus eryngii stalk residue (PESR) is a byproduct of the edible portion of the fruiting body
- The present study was conducted to evaluate the effects of PESR on the oxidative status and meat quality of broilers
- Two hundred fifty 1-d-old male broilers (Arbor Acre) were evenly divided by gender and randomly allocated into control (corn-soybean meal diet) or 1.0, 5.0, 10.0, or 20.0 g/kg dried PESR groups
- The results revealed that at 35 d, the dried PESR groups displayed a significantly increased water-holding capacity and decreased storage loss of breast and thigh fillets when compared to the control group
- In 5.0-20.0 g/kg PESR supplementation groups, the activities of antioxidative enzymes were significantly elevated in serum, liver, spleen, and fillet tissues when compared to control group
- In conclusion, PESR may potentially be used as an antioxidant to decrease lipid peroxidation and improve meat quality in broilers
Metadata-grounded summary
Citation abstract
Pleurotus eryngii stalk residue (PESR) is a byproduct of the edible portion of the fruiting body. The present study was conducted to evaluate the effects of PESR on the oxidative status and meat quality of broilers. Two hundred fifty 1-d-old male broilers (Arbor Acre) were evenly divided by gender and randomly allocated into control (corn-soybean meal diet) or 1.0, 5.0, 10.0, or 20.0 g/kg dried PESR groups. The results revealed that at 35 d, the dried PESR groups displayed a significantly increased water-holding capacity and decreased storage loss of breast and thigh fillets when compared to the control group. Regarding fillets color, the L* (lightness) values were lower and the a* (redness) and b* (yellowness) values were higher following dried PESR supplementation. In 5.0-20.0 g/kg PESR supplementation groups, the activities of antioxidative enzymes were significantly elevated in serum, liver, spleen, and fillet tissues when compared to control group. Additionally, malondialdehyde production was slightly decreased in the PESR supplementation groups. Lower crude fat contents were observed in fillet tissues of 5.0-20.0 g/kg PESR groups when compared with the control group. In conclusion, PESR may potentially be used as an antioxidant to decrease lipid peroxidation and improve meat quality in broilers.
Citation
Lee TT, Ciou JY, Chiang CJ, Chao YP, Yu B (2012). Effect of Pleurotus eryngii stalk residue on the oxidative status and meat quality of broiler chickens. Journal of agricultural and food chemistry https://doi.org/10.1021/jf302740h PMID: 23075076
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