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1.
J Anim Sci ; 1012023 Jan 03.
Article in English | MEDLINE | ID: mdl-37549905

ABSTRACT

This study proposes a strategy to manipulate the fatty acid (FA) content in slow-growing Korat chicken (KRC) meat using tuna oil (TO). To determine the optimal level and feeding period of TO supplementation, we conducted a study investigating the effects of dietary TO levels and feeding periods on meat quality, omega-3 polyunsaturated fatty acid (n-3 PUFA) composition, and gene expression related to FA metabolism in KRC breast meat. At 3 wk of age, 700 mixed-sex KRC were assigned to seven augmented factorial treatments with a completely randomized design, each consisting of four replicate pens containing 25 chickens per pen. The control group received a corn-soybean-based diet with 4.5% rice bran oil (RBO), while varying amounts of TO (1.5%, 3.0%, or 4.5%) replaced a portion of the RBO content in the experimental diets. The chickens were fed these diets for 3 and 6 wk, respectively, before being slaughtered at 9 wk. Our results indicated no significant interactions between TO levels and feeding periods on the growth performance or meat quality of KRC (P > 0.05). However, the liver fatty acid-binding protein gene (L-FABP, also known as FABP1), responsible for FA transport and accumulation, showed significantly higher expression in the chickens supplemented with 4.5% TO (P < 0.05). The chickens supplemented with 4.5% TO for a longer period (3 to 9 wk of age) exhibited the lowest levels of n-6 PUFA and n-6 to n-3 ratio, along with the highest levels of eicosapentaenoic acid, docosahexaenoic acid, and n-3 PUFA in the breast meat (P < 0.05). However, even a short period of supplementation with 4.5% TO (6 to 9 wk of age) was adequate to enrich slow-growing chicken meat with high levels of n-3 PUFA, as recommended previously. Our findings indicated that even a short period of tuna oil supplementation could lead to desirable levels of omega-3 enrichment in slow-growing chicken meat. This finding has practical implications for the poultry industry, providing insights into optimal supplementation strategies for achieving desired FA profiles without adversely affecting growth performance or meat quality.


This study investigated the effect of different levels and feeding periods of tuna oil (TO), a source of omega-3 polyunsaturated fatty acids (n-3 PUFA), was used to modify the fatty acid (FA) profile in slow-growing Korat chicken (KRC) meat. The interaction between TO supplementation levels and feeding periods did not influence growth performance or meat quality in KRC. However, higher level of TO supplementation led to increased expression of the liver fatty acid-binding protein gene, which is involved in FA transport and accumulation. The highest levels of eicosapentaenoic acid, docosahexaenoic acid, and n-3 PUFA were detected in the chickens that were fed 4.5% TO supplementation for a long period (3 to 9 wk of age). These chickens also had the lowest amounts of omega-6 polyunsaturated fatty acids (n-6 PUFA) and n-6 to n-3 ratio. Interestingly, even a short period of 4.5% TO supplementation (6 to 9 wk of age) in slow-growing chickens was sufficient to enrich the KRC meat with n-3 PUFA. These findings highlight the potential for improving the nutritional profile of chicken meat by regulating TO supplementation in the diet.


Subject(s)
Chickens , Fatty Acids, Omega-3 , Animals , Tuna/genetics , Tuna/metabolism , Fatty Acids, Omega-3/metabolism , Fatty Acids , Dietary Supplements , Diet/veterinary , Meat/analysis , Docosahexaenoic Acids , Animal Feed/analysis
2.
Animals (Basel) ; 12(5)2022 Feb 24.
Article in English | MEDLINE | ID: mdl-35268139

ABSTRACT

This study was to determine the effect of the organic raising system (OR) on growth performance, meat quality, and physicochemical properties of slow-growing chickens. Three hundred and sixty (one-day-old) Korat chickens (KRC) were randomly assigned to control (CO) and OR groups. The groups comprised six replicates of thirty chickens each. The chickens were housed in indoor pens (5 birds/m2), wherein those in OR had free access to Ruzi pasture (1 bird/4 m2) from d 21 to d 84 of age. In the CO group, chickens were fed with a mixed feed derived from commercial feedstuffs, while those in the OR group were fed with mixed feed derived from organic feedstuffs. The results revealed a lower feed intake (p < 0.0001) and feed conversion ratio (p = 0.004) in the OR. The OR increased total collagen, protein, shear force, color of skin and meat, and decreased abdominal fat (p < 0.05). The OR improved fatty acid with increased DHA, n-3 PUFA, and decreased the ratio of n-6 to n-3 PUFA in KRC meat (p < 0.05). The synchrotron radiation-based Fourier transform infrared spectroscopy and correlation loading analyses confirmed these results. In conclusion, our results proved that OR could improve growth performance and meat quality and suggested the raising system be adopted commercially. In addition, the observed differences in biochemical molecules could also serve as markers for monitoring meat quality.

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