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CAN FEEDING DEFATTED MICROALGAE PRODUCE HEALTHIER ANIMALFOODS?

机译:喂食缺陷的微藻会产生更健康的动物食品吗?

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The increasing demand of good quality animal products and limited supply of traditional feed lead to exploration of alternative and sustainable food and feed resources. Microalgae are microscopic or single cell algae, usually found in freshwater and marine systems (Thurman, 1997). Recently, they have gained popularity as a feedstock for biofuel production (Chisti, 2007). After oil extraction, the defatted microalgal biomass still contains good amounts of polyunsaturated fatty acids (PUFA), protein, carbohydrates, minerals, and vitamins (Brune et al., 2009; Shields and Lupatsch, 2012). PUFA, particularly n-3 fatty acids, in defatted biomass may bolster its appeal as a source for developing n-3 fatty acids-enriched animal products (Lum et al., 2013).Likewise, the desirable profile of protein, mineral and vitamin makes microalgae a potential replacement for soybean or corn meal in animal feed (Austic et al., 2013). In this paper, potential utilization of defatted microalgae in producing health-valueimproved animal foods will be discussed.
机译:良好质量的动物产品的需求越来越大,传统饲料供应有限,导致勘探替代和可持续的食品和饲料资源。微藻是微观或单细胞藻类,通常在淡水和海洋系统中发现(Thurman,1997)。最近,他们越来越受到生物燃料生产的原料(Chisti,2007)。萃取后,脱脂的微藻生物质仍然含有良好量的多不饱和脂肪酸(PUFA),蛋白质,碳水化合物,矿物质和维生素(Brune等,2009;盾牌和Lupatsch,2012)。 Pufa,特别是N-3脂肪酸,在脱乳糖生物质中可以将其吸引力作为用于开发N-3富含脂肪酸的动物产品的源(Lum等,2013).LikeWise,蛋白质,矿物质和维生素的理想剖面使Microalgae在动物饲料中对大豆或玉米粉的潜在替代品(Austic等,2013)。本文将讨论将讨论缺陷微藻在生产健康价值的动物食物中的潜在利用。

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