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光照制度和生长阶段会影响盐藻的蛋白质产量和质量。

Light regime and growth phase affect the microalgal production of protein quantity and quality with Dunaliella salina.

机构信息

Research Group of Sustainable Energy, Air and Water Technology, Department of Bioscience Engineering, University of Antwerp, Groenenborgerlaan 171, 2020 Antwerpen, Belgium.

Laboratory of Chemical Analysis, Department of Green Chemistry and Technology, Gent University, Valentin Vaerwyckweg 1, 9000 Gent, Belgium.

出版信息

Bioresour Technol. 2019 Mar;275:145-152. doi: 10.1016/j.biortech.2018.12.046. Epub 2018 Dec 16.

Abstract

The microalga Dunaliella salina has been widely studied for carotenogenesis, yet its protein production for human nutrition has rarely been reported. This study unveils the effects of growth phase and light regime on protein and essential amino acid (EAA) levels in D. salina. Cultivation under 24-h continuous light was compared to 12-h/12-h light/dark cycle. The essential amino acid index (EAAI) of D. salina showed accumulating trends up to 1.53 in the stationary phase, surpassing FAO/WHO standard for human nutrition. Light/dark conditions inferred a higher light-usage efficiency, yielding 5-97% higher protein and 18-28% higher EAA mass on light energy throughout the growth, accompanied by 138% faster growth during the light phase of the light/dark cycle, compared to continuous light. The findings revealed D. salina to be especially suitable for high-quality protein production, particularly grown under light/dark conditions, with nitrogen limitation as possible trigger, and harvested in the stationary phase.

摘要

盐生杜氏藻已被广泛研究用于类胡萝卜素的生物合成,但它作为人类营养的蛋白质生产却很少被报道。本研究揭示了生长阶段和光照制度对盐生杜氏藻蛋白质和必需氨基酸(EAA)水平的影响。将 24 小时连续光照与 12 小时/12 小时光照/黑暗循环进行了比较。在稳定期,盐生杜氏藻的必需氨基酸指数(EAAI)呈现出积累趋势,达到 1.53,超过了 FAO/WHO 人类营养标准。光照/黑暗条件推断出更高的光利用效率,在整个生长过程中,光能产生的蛋白质和必需氨基酸质量分别高出 5-97%和 18-28%,并且在光照/黑暗循环的光照阶段,与连续光照相比,生长速度快 138%。研究结果表明,盐生杜氏藻特别适合于高质量蛋白质的生产,特别是在氮限制作为可能的触发因素下,在光/暗条件下生长,并在稳定期收获。

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