Nguyễn Lương Hiếu Hòa, Nguyen Thi Bich Ngoc, Nguyen Thi Thuy Dung, Nguyen Hoang Dung, Huynh Tran My Hoa, Nguyen Hoang Hung, Van Van Vu, Dae Geun Kim, Tran Viet Cuong
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引用次数: 0
摘要
虾青素是最重要的次生代谢物之一,因其具有很高的抗氧化活性而身价不菲。它可用于商业用途,包括营养保健品、药品和水产养殖。"蓝藻 "是虾青素最丰富的天然来源,因此它在商业化生产虾青素方面受到广泛关注。有研究表明,H. pluvialis 可通过两阶段过程生产虾青素,即在最佳条件下生长生物质,然后将生物质置于应激条件下,使其积累虾青素。在这项研究中,我们采用了两阶段 LED 照明技术,在塑料袋光生物反应器中生产大量虾青素。近年来,塑料袋光生物反应器因其成本低、培养控制简单而受到越来越多的关注。研究结果表明,在塑料袋上使用红蓝光 LED 的两阶段程序能够以较低的生产成本生产出高质量的虾青素。最高干生物量和虾青素含量分别为 2.53 g L-1 和 5.09%。在母鸡日粮中添加褐藻虾青素生物质可改善蛋黄颜色和产蛋率。与对照组(59.05%)相比,饲喂 0.2%、0.5% 和 1%生物质的母鸡分别提高了 8%(63.81%)、16%(68.57%)和 17%(69.52%)。® 2023 科技期刊 - NTTU
Two-stage LEDs illuminated plastic bag photobioreactor for production of astaxanthin from Haematococcus pluvialis and manipulated egg yolk pigment by astaxanthin
Astaxanthin is one of the most significant secondary metabolites with high price because of its high antioxidant activity. It can be used in commercial applications, including the nutraceutical, pharmaceutical, and aquaculture Haematococcus pluvialis contains the richest natural source for astaxanthin, so it has gained a lot of attention for commercial astaxanthin production. It is suggested that H. pluvialis can produce astaxanthin through a two-stage process that involves growing biomass under optimal conditions and then subjecting this biomass to stress conditions to cause astaxanthin accumulation. In this study, we used a two-stage LED-illuminated technique to produce high level of astaxanthin in a plastic bag photobioreactor. Plastic bag PBRs have received increased attention in recent years due to low cost and simplicity of controlling the culture. The results demonstrated that the two-stage procedure on plastic bags using shifting red-blue LED had the ability to produce high quality astaxanthin at a low production cost. The highest dry biomass and astaxanthin content were 2.53 g L-1 and 5.09%, respectively. The yolk color and egg-laying rate of hens improved when their diets were supplemented with H. pluvialis biomass. Hens fed with 0.2%, 0.5%, and 1% biomass rose by 8% (63.81%), 16% (68.57%), and 17% (69.52%), respectively, as compared to controls (59.05%).
® 2023 Journal of Science and Technology - NTTU