Sarker Pallab K, Kapuscinski Anne R, Lanois Alison J, Livesey Erin D, Bernhard Katie P, Coley Mariah L
Environmental Studies Program, Dartmouth College, Hanover, NH 03755, United States of America.
PLoS One. 2016 Jun 3;11(6):e0156684. doi: 10.1371/journal.pone.0156684. eCollection 2016.
We conducted a 84-day nutritional feeding experiment with dried whole cells of DHA-rich marine microalga Schizochytrium sp. (Sc) to determine the optimum level of fish-oil substitution (partial or complete) for maximum growth of Nile tilapia. When we fully replaced fish oil with Schizochytrium (Sc100 diet), we found significantly higher weight gain and protein efficiency ratio (PER), and lower (improved) feed conversion ratio (FCR) and feed intake compared to a control diet containing fish oil (Sc0); and no significant change in SGR and survival rate among all diets. The Sc100 diet had the highest contents of 22:6n3 DHA, led to the highest DHA content in fillets, and consequently led to the highest DHA:EPA ratios in tilapia fillets. Schizochytrium sp. is a high quality candidate for complete substitution of fish oil in juvenile Nile tilapia feeds, providing an innovative means to formulate and optimize the composition of tilapia juvenile feed while simultaneously raising feed efficiency of tilapia aquaculture and to further develop environmentally and socially sustainable aquafeeds. Results show that replacing fish oil with DHA-rich marine Sc improves the deposition of n3 LC PUFA levels in tilapia fillet. These results support further studies to lower Schizochytrium production costs and to combine different marine microalgae to replace fish oil and fishmeal into aquafeeds.
我们用富含二十二碳六烯酸(DHA)的海洋微藻裂殖壶菌(Schizochytrium sp.,简称Sc)的干燥全细胞进行了为期84天的营养投喂实验,以确定尼罗罗非鱼最大生长所需的鱼油替代(部分或完全替代)的最佳水平。当我们用裂殖壶菌完全替代鱼油(Sc100日粮)时,与含鱼油的对照日粮(Sc0)相比,我们发现罗非鱼的体重增加和蛋白质效率比(PER)显著更高,饲料转化率(FCR)和采食量更低(改善);并且所有日粮组的特定生长率(SGR)和存活率没有显著变化。Sc100日粮中二十二碳六烯酸(22:6n3 DHA)含量最高,导致鱼片DHA含量最高,进而使罗非鱼片中DHA:EPA比例最高。裂殖壶菌是尼罗罗非鱼幼鱼饲料中完全替代鱼油的优质候选物,为配制和优化罗非鱼幼鱼饲料的组成提供了一种创新方法,同时提高罗非鱼养殖的饲料效率,并进一步开发环境和社会可持续的水产饲料。结果表明,用富含DHA的海洋裂殖壶菌替代鱼油可提高罗非鱼片n3长链多不饱和脂肪酸(LC PUFA)水平的沉积。这些结果支持进一步研究以降低裂殖壶菌的生产成本,并将不同的海洋微藻结合起来替代水产饲料中的鱼油和鱼粉。