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首页> 外文期刊>The British Journal of Nutrition >Dietary inclusion of Antarctic krill meal during the finishing feed period improves health and fillet quality of Atlantic salmon (Salmo salarL.)
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Dietary inclusion of Antarctic krill meal during the finishing feed period improves health and fillet quality of Atlantic salmon (Salmo salarL.)

机译:在整理饲料期间膳食包装南极磷虾膳食可提高大西洋鲑鱼的健康和圆角质量(Salmo Salarl。)

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摘要

There is an urgent need to find alternative feed resources that can further substitute fishmeal in Atlantic salmon diets without compromising health and food quality, in particular during the finishing feeding period when the feed demand is highest and flesh quality effects are most significant. This study investigates efficacy of substituting a isoprotein (35 %) and isolipid (35 %) low fishmeal diet (FM, 15 %) with Antarctic krill meal (KM, 12 %) during 3 months with growing finishing 2 center dot 3 kg salmon (quadruplicate sea cages/diet). Final body weight (3 center dot 9 (se0 center dot 04) kg) was similar in the dietary groups, but the KM group had more voluminous body shape, leaner hearts and improved fillet integrity, firmness and colour. Ectopic epithelial cells and focal Ca deposits in intestine were only detected in the FM group. Transcriptome profiling by microarray of livers showed dietary effects on several immune genes, and a panel of structural genes were up-regulated in the KM group, including cadherin and connexin. Up-regulation of genes encoding myosin heavy chain proteins was the main finding in skeletal muscle. Morphology examination by scanning electron microscopy and secondary structure by Fourier transform IR spectroscopy revealed more ordered and stable collagen architecture of the KM group. NEFA composition of skeletal muscle indicated altered metabolism ofn-3,n-6 and SFA of the KM group. The results demonstrated that improved health and meat quality in Atlantic salmon fed krill meal were associated with up-regulation of immune genes, proteins defining muscle properties and genes involved in cell contacts and adhesion, altered fatty acid metabolism and fat deposition, and improved gut health and collagen structure.
机译:迫切需要寻找替代饲料资源,可以进一步替代大西洋鲑鱼饮食的鱼粉,而不会影响健康和食品质量,特别是在饲料需求最高,富含肉质效应最显着的过程中。本研究研究了在3个月内用南极磷香蛋白(35%)和isolipid(35%)低鱼粉饮食(FM,15%)与南极磷虾(Km,12%)的疗效取代的疗效在3个月内与生长精加工2中心点3公斤鲑鱼(四套海笼/饮食)。最终体重(3中心点9(SE0中心点04)kg)在膳食组中相似,但KM组具有更大的体形,精致的心脏和改善的圆角完整性,坚固性和颜色。仅在FM组中检测到肠中的异位上皮细胞和焦炭CA沉积物。通过肝脏微阵列的转录组分析表现出对几种免疫基因的膳食作用,并且在KM组中占据了结构基因的面板,包括钙粘蛋白和Connexin。编码肌球蛋白重链蛋白的基因的上调是骨骼肌中的主要发现。通过扫描电子显微镜和傅立叶变换IR光谱扫描电子显微镜和二次结构的形态学检查揭示了KM组的更有序和稳定的胶原型结构。骨骼肌的Nefa组成表明了KM-3,N-6和SFA的改变了新代谢。结果表明,大西洋鲑鱼喂养克里尔膳食中的健康和肉质的改善与免疫基因的上调相关,蛋白质限定肌肉性质和基因,参与细胞接触和粘附,改变脂肪酸代谢和脂肪沉积,改善肠道健康和胶原蛋白结构。

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