Francis D S, Thanuthong T, Senadheera S P S D, Paolucci M, Coccia E, De Silva S S, Turchini G M
Fish Physiol Biochem. 2014 Apr;40(2):577-93. doi: 10.1007/s10695-013-9868-5.
Largely attributable to concerns surrounding sustainability, the utilisation of omega-3 long-chain polyunsaturated fatty acid-rich (n-3 LC-PUFA) fish oils in aquafeeds for farmed fish species is an increasingly concerning issue. Therefore, strategies to maximise the deposition efficiency of these key health beneficial fatty acids are being investigated. The present study examined the effects of four vegetable-based dietary lipid sources (linseed, olive, palm and sunflower oil) on the deposition efficiency of n-3 LC-PUFA and the circulating blood plasma concentrations of the appetite-regulating hormones, leptin and ghrelin, during the grow-out and finishing phases in rainbow trout culture. Minimal detrimental effects were noted in fish performance; however, major modifications were apparent in tissue fatty acid compositions, which generally reflected that of the diet. These modifications diminished somewhat following the fish oil finishing phase, but longer-lasting effects remained evident. The fatty acid composition of the alternative oils was demonstrated to have a modulatory effect on the deposition efficiency of n-3 LC-PUFA and on the key endocrine hormones involved in appetite regulation, growth and feed intake during both the grow-out and finishing phases. In particular, n-6 PUFA (sunflower oil diet) appeared to 'spare' the catabolism of n-3 LC-PUFA and, as such, resulted in the highest retention of these fatty acids, ultimately highlighting new nutritional approaches to maximise the maintenance of the qualitative benefits of fish oils when they are used in feeds for aquaculture species.
主要由于对可持续性的担忧,在养殖鱼类的水产饲料中使用富含ω-3长链多不饱和脂肪酸(n-3 LC-PUFA)的鱼油成为一个日益令人关注的问题。因此,人们正在研究使这些对健康有益的关键脂肪酸沉积效率最大化的策略。本研究考察了四种植物性膳食脂质来源(亚麻籽、橄榄、棕榈和向日葵油)对虹鳟养殖育成期和育肥期n-3 LC-PUFA沉积效率以及食欲调节激素瘦素和胃饥饿素循环血浆浓度的影响。在鱼类生长性能方面未观察到明显的有害影响;然而,组织脂肪酸组成出现了显著变化,总体上反映了饲料的脂肪酸组成。在鱼油育肥期后,这些变化有所减小,但持久影响仍然明显。结果表明,替代油的脂肪酸组成对n-3 LC-PUFA的沉积效率以及育成期和育肥期参与食欲调节、生长和采食量的关键内分泌激素具有调节作用。特别是,n-6多不饱和脂肪酸(向日葵油饲料)似乎“节省”了n-3 LC-PUFA的分解代谢,因此导致这些脂肪酸的保留率最高,最终突出了新的营养方法,以便在鱼油用于水产养殖物种饲料时最大限度地维持其质量效益。