Institute of Aquatic Science and Technology, College of Hydrosphere, National Kaohsiung University of Science and Technology, Kaohsiung City 81157, Taiwan.
Institute of Aquatic Science and Technology, College of Hydrosphere, National Kaohsiung University of Science and Technology, Kaohsiung City 81157, Taiwan; Department of Marine Environmental Engineering, National Kaohsiung University of Science and Technology, Kaohsiung City, Taiwan.
Bioresour Technol. 2023 Feb;370:128583. doi: 10.1016/j.biortech.2023.128583. Epub 2023 Jan 5.
Present study focused on optimizing bioprocess condition for microalgal lutein production. From previous baseline yields of biomass (3.46 g/L) and lutein (13.7 mg/g), this study examined few key parameters. The 3X:3X ratio macro- and micronutrients was the most affecting parameter with highest biomass and lutein yields of 4.61 g/L and 14.3 mg/g. Temperature 30 °C enhanced the lutein up to 17.3 mg/g but reduced the biomass to 3 g/L. The light effects study showed 10 k lux was most effective for lutein up to 14 mg/g, and effect of increasing salinity (25-75 %) was detrimental. All the above parameters' optimization resulted in a lipid content of 22.5-26.5 %. A maximum lutein productivity and yield of 0.451 mg/L/d and 65.74 mg/L with a 3X:3X macro- and micronutrient ratio was achieved. The Chlorella sorokiniana Kh12 strain exhibited one of the highest yields among recent reports; hence it could be a source for commercial lutein production.
本研究致力于优化微藻叶黄素生产的生物工艺条件。从前瞻性基线生物量(3.46g/L)和叶黄素(13.7mg/g)产量出发,本研究考察了几个关键参数。3X:3X 倍比的宏量和微量营养物是最具影响的参数,可获得最高的生物量和叶黄素产量,分别为 4.61g/L 和 14.3mg/g。30°C 的温度提高了叶黄素产量,达到 17.3mg/g,但生物量降至 3g/L。光效研究表明,10k lux 对叶黄素最有效,可达到 14mg/g,而增加盐度(25-75%)则有害。所有上述参数的优化使脂质含量达到 22.5-26.5%。在 3X:3X 倍比的宏量和微量营养物条件下,实现了叶黄素的最大生产率和产量,分别为 0.451mg/L/d 和 65.74mg/L。小球藻 Kh12 菌株表现出了近期报道中最高的产量之一;因此,它可能是商业叶黄素生产的来源。