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首页> 外文期刊>North American Journal of Aquaculture >Effects of Fish Oil Sparing on Fillet Fatty Acid Composition in Hybrid Striped Bass Are Influenced by Dietary Levels of Saturated and Unsaturated Fatty Acids
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Effects of Fish Oil Sparing on Fillet Fatty Acid Composition in Hybrid Striped Bass Are Influenced by Dietary Levels of Saturated and Unsaturated Fatty Acids

机译:饮食中饱和和不饱和脂肪酸水平对鱼油备用对混合条纹鲈鱼里脊脂肪酸组成的影响

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We assessed the growth performance and fillet fatty acid composition of hybrid Striped Bass (White Bass Morone chrysops x Striped Bass M. saxatilis; initial weight = 29.1 +/- 0.2 g [mean +/- SE]) fed diets containing only menhaden fish oil (100 FISH); fully hydrogenated saturated fatty acid (SFA)-rich soybean oil (100 SFA SOY); 75: 25, 50: 50, 25: 75, or 0: 100 blends of fish oil and standard C-18 polyunsaturated fatty acid (C-18 PUFA)-rich soybean oil (25 PUFA SOY, 50 PUFA SOY, 75 PUFA SOY, 100 PUFA SOY); or nonhydrogenated monounsaturated fatty acid (MUFA)-rich soybean oil (25 MUFA SOY, 50 MUFA SOY, 75 MUFA SOY, 100 MUFA SOY) for 8 weeks. Feed conversion ratio varied, with the 100 SFA SOY feed yielding a significantly greater value (1.3) than the rest of the feeds (0.9-1.0). Although significant treatment effects were not observed for weight gain, specific growth rate, feed intake, or organosomatic indices, some variation was observed, suggesting some minor (albeit not significant) loss of growth performance among fish fed the 100 SFA SOY and, to a lesser extent, 100 MUFA SOY feeds. Fillets of fish fed diets containing soybean-derived lipids had reduced levels of fish-oil-associated, n-3 long-chain polyunsaturated fatty acids (LC-PUFAs, i.e., 20: 5[n-3] and 22: 6[n-3]) compared with those fed the 100 FISH feed. Conversely, fillets of fish fed diets containing C-18 PUFA-rich soybean oil and nonhydrogenated MUFA-rich soybean oil had higher levels of these fatty acids (i.e., 18:2[n-6] and 18:1[n-9], respectively). Although the 100 SFA SOY diet contained substantially more SFAs (i.e., 18:0) than the other diets, these fatty acids were not proportionally elevated in the fillets. It is possible that blending SFA-rich lipids with ingredients containing some level of unsaturated fatty acids may be a means of addressing digestibility limitations while still mitigating the effects of fish oil sparing on tissue composition.
机译:我们评估了仅含鲱鱼鱼油喂养的混合条纹鲈鱼(白鲈Morone chrysops x条纹鲈M. saxatilis;初始重量= 29.1 +/- 0.2 g [平均+/- SE])的生长性能和鱼片脂肪酸组成。 (100条鱼);完全氢化的富含饱和脂肪酸(SFA)的大豆油(100 SFA SOY); 75:25、50:50、25:75或0:100的鱼油和标准C-18多不饱和脂肪酸(C-18 PUFA)富含大豆油的混合物(25 PUFA大豆,50 PUFA大豆,75 PUFA大豆,100 PUFA大豆);或富含非氢化单不饱和脂肪酸(MUFA)的大豆油(25 MUFA大豆,50 MUFA大豆,75 MUFA大豆,100 MUFA大豆)持续8周。饲料转化率各不相同,其中100 SFA大豆饲料的产值(1.3)比其余饲料(0.9-1.0)大得多。尽管未观察到体重增加,比生长速率,采食量或有机体指数显着的治疗效果,但观察到一些变化,这表明饲喂100 SFA SOY的鱼在生长性能上有一些轻微(尽管不明显)的损失。程度较小的是100 MUFA大豆饲料。鱼饲料中含有大豆衍生脂质的鱼片具有降低的鱼油相关n-3长链多不饱和脂肪酸(LC-PUFAs,即20:5 [n-3]和22:6 [n -3])。相反,鱼粮中含有富含C-18 PUFA的豆油和未氢化富含MUFA的豆油的鱼片中这些脂肪酸的含量较高(即18:2 [n-6]和18:1 [n-9] , 分别)。尽管100 SFA大豆饮食中的SFA(即18:0)比其他饮食中的脂肪酸含量高得多,但这些脂肪酸在鱼片中并未按比例增加。将富含SFA的脂质与包含一定含量的不饱和脂肪酸的成分混合可能是解决消化率限制的一种方法,同时仍然减轻了鱼油稀薄对组织组成的影响。

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