Saadaoui Imen, Rasheed Rihab, Aguilar Ana, Cherif Maroua, Al Jabri Hareb, Sayadi Sami, Manning Schonna R
Center for Sustainable Development, College of Arts and Sciences, Qatar University, P.O.Box.2713, Doha, Qatar.
Department of Molecular Biosciences, UTEX Culture Collection of Algae, University of Texas at Austin, Austin, TX, 78712, USA.
J Anim Sci Biotechnol. 2021 Jun 17;12(1):76. doi: 10.1186/s40104-021-00593-z.
There is an immediate need to identify alternative sources of high-nutrient feedstocks for domestic livestock production and poultry, not only to support growing food demands but also to produce microalgae-source functional foods with multiple health benefits. Various species of microalgae and cyanobacteria are used to supplement existing feedstocks. In this review, microalgae have been defined as a potential feedstock for domestic animals due to their abundance of proteins, carbohydrates, lipids, minerals, vitamins, and other high-value products. Additionally, the positive physiological effects on products of animals fed with microalgal biomass have been compiled and recommendations are listed to enhance the assimilation of biomolecules in ruminant and nonruminant animals, which possess differing digestive systems. Furthermore, the role of microalgae as prebiotics is also discussed. With regards to large scale cultivation of microalgae for use as feed, many economic trade-offs must be considered such as the selection of strains with desired nutritional properties, cultivation systems, and steps for downstream processing. These factors are highlighted with further investigations needed to reduce the overall costs of cultivation. Finally, this review outlines the pros and cons of utilizing microalgae as a supplementary feedstock for poultry and cattle, existing cultivation strategies, and the economics of large-scale microalgal production.
当前迫切需要为家畜养殖和家禽业确定高营养饲料原料的替代来源,这不仅是为了满足不断增长的食物需求,也是为了生产具有多种健康益处的微藻源功能性食品。多种微藻和蓝细菌被用于补充现有饲料原料。在本综述中,微藻因其富含蛋白质、碳水化合物、脂质、矿物质、维生素及其他高价值产物,而被定义为家畜的潜在饲料原料。此外,还汇总了饲喂微藻生物质的动物产品所产生的积极生理效应,并列出了相关建议,以提高反刍动物和非反刍动物(它们具有不同的消化系统)对生物分子的同化作用。此外,还讨论了微藻作为益生元的作用。关于大规模培养微藻用作饲料,必须考虑许多经济权衡因素,例如选择具有所需营养特性的菌株、培养系统以及下游加工步骤。这些因素得到了强调,还需要进一步研究以降低总体培养成本。最后,本综述概述了将微藻用作家禽和牛的补充饲料原料的利弊、现有的培养策略以及大规模微藻生产的经济学情况。