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Effects of Selenium Dietary Yeast on Growth Performance, Slaughter Performance, Antioxidant Capacity, and Selenium Deposition in Broiler Chickens

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Journal Animals (Basel)
Date 2023 Dec 23
PMID 38136867
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Abstract

Selenium (Se) yeast, a bioavailable form of selenium, exhibits enhanced bioavailability due to its unique organic matrix and superior metabolic availability compared to the inorganic selenium sources. This study aims to evaluate the effects of Se yeast on the growth performance, slaughter performance, antioxidant capacity, and Se deposition in broiler chickens. A total of 264 1-day-old male AA broilers (38.7 ± 0.1 g) were randomly assigned to four treatment groups, with six replicates of 11 chickens per replicate. The broilers were fed a basal diet or a diet supplemented with 0.1, 0.2, and 0.4 mg/kg Se yeast. The experiment lasted for 42 days. Although the results showed that Se yeast did not significantly improve the growth performance of broilers, it did significantly decrease the abdominal fat ratio. Additionally, supplementation of Se yeast significantly improved the antioxidant capacity of broilers. The quadratic regression models were used to simulate the relationship between Se content in the feed and Se deposition in broiler tissues. The regression equations were as follows: pectoral muscle, Y = 2.628X - 0.340X - 0.592 (R = 0.927); leg muscle, Y = 2.317X - 0.272X - 0.490 (R = 0.937); liver, Y = 3.357X - 0.453X - 0.493 (R = 0.961); kidney, Y = 4.084X - 0.649X + 0.792 (R = 0.932). Based on these findings, the Se deposition in broiler tissues can be predicted by the Se content of the additive, which is of great significance for the precise production of Se-enriched functional chicken products.

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References
1.
Chen G, Wu J, Li C . Effect of different selenium sources on production performance and biochemical parameters of broilers. J Anim Physiol Anim Nutr (Berl). 2013; 98(4):747-54. DOI: 10.1111/jpn.12136. View

2.
Righetti Arnaut P, Viana G, da Fonseca L, Junior Alves W, Cunha Lima Muniz J, Pettigrew J . Selenium source and level on performance, selenium retention and biochemical responses of young broiler chicks. BMC Vet Res. 2021; 17(1):151. PMC: 8033718. DOI: 10.1186/s12917-021-02855-4. View

3.
Mahan D, Parrett N . Evaluating the efficacy of selenium-enriched yeast and sodium selenite on tissue selenium retention and serum glutathione peroxidase activity in grower and finisher swine. J Anim Sci. 1996; 74(12):2967-74. DOI: 10.2527/1996.74122967x. View

4.
Ahmad H, Tian J, Wang J, Khan M, Wang Y, Zhang L . Effects of dietary sodium selenite and selenium yeast on antioxidant enzyme activities and oxidative stability of chicken breast meat. J Agric Food Chem. 2012; 60(29):7111-20. DOI: 10.1021/jf3017207. View

5.
Payne R, Southern L . Comparison of inorganic and organic selenium sources for broilers. Poult Sci. 2005; 84(6):898-902. DOI: 10.1093/ps/84.6.898. View