Soto-Sánchez Oscar, Hidalgo Pamela, González Aixa, Oliveira Patricia E, Hernández Arias Adrián J, Dantagnan Patricio
Departamento de Procesos Industriales, Facultad de Ingeniería, Universidad Católica de Temuco, Temuco, Chile.
Núcleo de Investigación en Bioproductos y Materiales Avanzados, Departamento de Procesos Industriales, Facultad de Ingeniería, Universidad Católica de Temuco, Temuco, Chile.
Aquac Nutr. 2023 Jan 6;2023:5110281. doi: 10.1155/2023/5110281. eCollection 2023.
Studies have shown that ancient cultures used microalgae as food for centuries. Currently, scientific reports highlight the value of nutritional composition of microalgae and their ability to accumulate polyunsaturated fatty acids at certain operational conditions. These characteristics are gaining increasing interest for the aquaculture industry which is searching for cost-effective replacements for fish meal and oil because these commodities are one of the most significant operational expenses and their dependency has become a bottleneck for their sustainable development of the aquaculture industry. This review is aimed at highlighting the use of microalgae as polyunsaturated fatty acid source in aquaculture feed formulations, despite their scarce production at industrial scale. Moreover, this document includes several approaches to improve microalgae production and to increase the content of polyunsaturated fatty acids with emphasis in the accumulation of DHA, EPA, and ARA. Furthermore, the document compiles several studies which prove microalgae-based aquafeeds for marine and freshwater species. Finally, the study explores the aspects that intervene in production kinetics and improvement strategies with possibilities for upscaling and facing main challenges of using microalgae in the commercial production of aquafeeds.
研究表明,古代文化已经将微藻作为食物使用了几个世纪。目前,科学报告强调了微藻营养成分的价值以及它们在特定操作条件下积累多不饱和脂肪酸的能力。这些特性越来越受到水产养殖业的关注,该行业正在寻找具有成本效益的鱼粉和鱼油替代品,因为这些商品是最重要的运营成本之一,对它们的依赖已成为水产养殖业可持续发展的瓶颈。本综述旨在强调微藻作为水产养殖饲料配方中多不饱和脂肪酸来源的用途,尽管其在工业规模上产量稀少。此外,本文档包括几种提高微藻产量和增加多不饱和脂肪酸含量的方法,重点是DHA、EPA和ARA的积累。此外,该文档汇编了多项研究,这些研究证明了以微藻为基础的水产饲料适用于海洋和淡水物种。最后,该研究探讨了影响生产动力学的因素和改进策略,以及在水产饲料商业生产中扩大微藻使用规模和应对主要挑战的可能性。