Chen Fufeng, Qian Jun, He Yu, Leng Yunyue, Zhou Wenguang
Key Laboratory of Poyang Lake Environment and Resource Utilization, Ministry of Education, School of Resources and Environment, Nanchang University, Nanchang, China.
Xinjiang Rao River Hydrological and Water Resources Monitoring Center, Shangrao, China.
Front Nutr. 2022 Dec 7;9:1069760. doi: 10.3389/fnut.2022.1069760. eCollection 2022.
This work attempted to identify if microalgal biomass can be utilized as an alternative nutrition source in aquaculture feed by analyzing its nutritional value and the anti-nutritional factors (ANFs). The results showed that contained high-value nutrients, including essential amino acids and unsaturated fatty acids. The protein content in reached 52.4%, suggesting that microalgal biomass can be a good protein source for aquatic animals. We also discovered that contained some ANFs, including saponin, phytic acid, and tannins, which may negatively impact fish productivity. The high-molecular-weight proteins in microalgae may not be effectively digested by aquatic animals. Therefore, based on the findings of this study, proper measures should be taken to pretreat microalgal biomass to improve the nutritional value of a microalgae-based fish diet.
这项工作试图通过分析微藻生物质的营养价值和抗营养因子(ANFs)来确定其是否可作为水产养殖饲料的替代营养源。结果表明,微藻生物质含有高价值营养成分,包括必需氨基酸和不饱和脂肪酸。微藻生物质中的蛋白质含量达到52.4%,这表明微藻生物质可以成为水生动物良好的蛋白质来源。我们还发现微藻生物质含有一些抗营养因子,包括皂苷、植酸和单宁,这些可能会对鱼类生产力产生负面影响。微藻中的高分子量蛋白质可能无法被水生动物有效消化。因此,基于本研究的结果,应采取适当措施对微藻生物质进行预处理,以提高基于微藻的鱼类饲料的营养价值。