Scottish Fish Immunology Research Centre, Institute of Biological and Environmental Sciences, University of Aberdeen, Tillydrone Avenue, Aberdeen AB242TZ, UK.
Fish Shellfish Immunol. 2011 Nov;31(5):704-15. doi: 10.1016/j.fsi.2011.02.023. Epub 2011 Mar 4.
Functional feeds are diets that have positive effects on both health and growth promoting performance of the animals ingesting them, by supplying additional compounds above and beyond the basic nutritional requirements for animal growth alone. The most common additives used in aquaculture diets are probiotics, prebiotics, immunostimulants, vitamins and nucleotides. Inclusion of these components to fish diets can increase feed conversion efficiency and growth, as well as having positive effects on the fish immune system. This review discusses the results from previous studies on fish nutrition and includes a novel genomic approach, using microarray analysis, to elucidate nutritional responses in Atlantic salmon (Salmo salar) fed a newly developed functional feed health premix diet. The transcriptome analysis demonstrated that compared to the standard diet feeding with the functional feed had significant effects on biological processes in the liver. This resulted in a reduction of the expression of genes related to protein turnover, reduced circulating plasma proteins and a down regulation of genes involved in the immune response. These results suggest that the functional feed may infer a decrease in whole body metabolic demands, suppressing both protein turnover and whole body oxygen demand, as well as down regulating several genes involved in the innate immune system. Together these changes appear to result in less energy wastage in fish and an enhanced growth and performance.
功能性饲料是指通过提供除动物生长基本营养需求以外的额外化合物,对摄入它们的动物的健康和生长性能产生积极影响的饲料。水产养殖中最常用的添加剂有益生菌、益生元、免疫刺激剂、维生素和核苷酸。将这些成分添加到鱼类饲料中可以提高饲料转化率和生长速度,同时对鱼类的免疫系统产生积极影响。本综述讨论了之前关于鱼类营养的研究结果,包括一种新的基因组方法,即使用微阵列分析,来阐明用新开发的功能性饲料健康预混料喂养的大西洋鲑(Salmo salar)的营养反应。转录组分析表明,与标准饮食相比,功能性饲料喂养对肝脏中的生物过程有显著影响。这导致与蛋白质周转相关的基因表达减少,循环血浆蛋白减少,参与免疫反应的基因下调。这些结果表明,功能性饲料可能会降低全身代谢需求,抑制蛋白质周转和全身耗氧量,并下调参与先天免疫系统的几个基因。这些变化似乎导致鱼类的能量浪费减少,生长和性能增强。