1School of Life and Environmental Sciences, Deakin University, Geelong, VIC 3216,Australia.
2Institute of Aquaculture,University of Stirling,Stirling FK9 4LA,UK.
Br J Nutr. 2019 May;121(10):1108-1123. doi: 10.1017/S0007114519000473. Epub 2019 Mar 5.
A more efficient utilisation of marine-derived sources of dietary n-3 long-chain PUFA (n-3 LC PUFA) in cultured Atlantic salmon (Salmo salar L.) could be achieved by nutritional strategies that maximise endogenous n-3 LC PUFA synthesis. The objective of the present study was to quantify the extent of n-3 LC PUFA biosynthesis and the resultant effect on fillet nutritional quality in large fish. Four diets were manufactured, providing altered levels of dietary n-3 substrate, namely, 18 : 3n-3, and end products, namely, 20 : 5n-3 and 22 : 6n-3. After 283 d of feeding, fish grew in excess of 3000 g and no differences in growth performance or biometrical parameters were recorded. An analysis of fatty acid composition and in vivo metabolism revealed that endogenous production of n-3 LC PUFA in fish fed a diet containing no added fish oil resulted in fillet levels of n-3 LC PUFA comparable with fish fed a diet with added fish oil. However, this result was not consistent among all treatments. Another major finding of this study was the presence of abundant dietary n-3 substrate, with the addition of dietary n-3 end product (i.e. fish oil) served to increase final fillet levels of n-3 LC PUFA. Specifically, preferential β-oxidation of dietary C18 n-3 PUFA resulted in conservation of n-3 LC PUFA from catabolism. Ultimately, this study highlights the potential for endogenous synthesis of n-3 LC PUFA to, partially, support a substantial reduction in the amount of dietary fish oil in diets for Atlantic salmon reared in seawater.
通过最大化内源性 n-3 长链多不饱和脂肪酸(n-3 LC PUFA)合成的营养策略,可以更有效地利用海洋来源的膳食 n-3 LC PUFA。本研究的目的是量化 n-3 LC PUFA 生物合成的程度及其对大规格鱼鱼片营养质量的影响。本研究共配制了 4 种饲料,改变了饲料中 n-3 底物(即 18:3n-3)和终产物(即 20:5n-3 和 22:6n-3)的水平。经过 283 天的投喂,鱼体重增长超过 3000 克,且生长性能或生物计量学参数无差异。脂肪酸组成和体内代谢分析表明,摄食不含鱼油饲料的鱼内源性产生 n-3 LC PUFA,可使鱼片 n-3 LC PUFA 水平与摄食添加鱼油饲料的鱼相当。然而,这一结果在所有处理中并不一致。本研究的另一个主要发现是存在丰富的膳食 n-3 底物,添加膳食 n-3 终产物(即鱼油)可增加最终鱼片的 n-3 LC PUFA 水平。具体而言,膳食 C18 n-3 PUFA 的优先β-氧化导致 n-3 LC PUFA 免于分解代谢。最终,本研究强调了内源性合成 n-3 LC PUFA 的潜力,可部分支持在海水养殖大西洋鲑鱼饲料中减少大量的膳食鱼油。