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通过优化生长培养基组成和分批补料培养提高硅藻 sp. S5 的生物量生产。

Enhancement of Biomass Production of Diatom sp. S5 through Optimisation of Growth Medium Composition and Fed-Batch Cultivation.

机构信息

Faculty of Food Technology and Biotechnology, University of Zagreb, 10000 Zagreb, Croatia.

Laboratory for Aquaculture Biotechnology, Division of Materials Chemistry, Ruđer Bošković Institute, 10000 Zagreb, Croatia.

出版信息

Mar Drugs. 2024 Jan 17;22(1):0. doi: 10.3390/md22010046.

Abstract

The growing commercial application of microalgae in different industry sectors, including the production of bioenergy, pharmaceuticals, nutraceuticals, chemicals, feed, and food, demands large quantities of microalgal biomass with specific compositions produced at reasonable prices. Extensive studies have been carried out on the design of new and improvement of current cultivation systems and the optimisation of growth medium composition for high productivity of microalgal biomass. In this study, the concentrations of the main macronutrients, silicon, nitrogen and phosphorus, essential for the growth of diatom sp. S5 were optimised to obtain a high biomass concentration. The effect of main macronutrients on growth kinetics and cell composition was also studied. Silicon had the most significant effect on diatom growth during batch cultivation. The concentration of biomass increased 5.45-fold (0.49 g L) at 1 mM silicon concentration in modified growth medium compared to the original Guillard f/2 medium. Optimisation of silicon, nitrogen, and phosphorus quantities and ratios further increased biomass concentration. The molar ratio of Si:N:P = 7:23:1 mol:mol:mol yielded the highest biomass concentration of 0.73 g L. Finally, the fed-batch diatom cultivation of diatom using an optimised Guillard f/2 growth medium with four additions of concentrated macronutrient solution resulted in 1.63 g L of microalgal biomass. The proteins were the most abundant macromolecules in microalgal biomass, with a lower content of carbohydrates and lipids under all studied conditions.

摘要

微藻在不同行业中的商业应用不断增加,包括生物能源、制药、营养保健品、化学品、饲料和食品的生产,这需要大量具有特定成分且价格合理的微藻生物质。人们广泛研究了新型培养系统的设计和现有培养系统的改进,以及优化生长培养基组成以实现微藻生物质的高生产力。在这项研究中,优化了主要宏量营养素(硅、氮和磷)的浓度,这些营养物质对硅藻 S5 的生长至关重要,以获得高生物质浓度。还研究了主要宏量营养素对生长动力学和细胞组成的影响。硅对分批培养中的硅藻生长影响最大。与原始的 Guillard f/2 培养基相比,在改良生长培养基中添加 1mM 硅时,生物质浓度增加了 5.45 倍(0.49 g/L)。进一步优化硅、氮和磷的数量和比例,进一步提高了生物质浓度。摩尔比 Si:N:P = 7:23:1 mol:mol:mol 时,生物质浓度最高,为 0.73 g/L。最后,使用优化的 Guillard f/2 生长培养基进行分批补料培养硅藻,四次添加浓缩的大量营养溶液,得到 1.63 g/L 的微藻生物质。在所有研究条件下,蛋白质都是微藻生物质中最丰富的大分子,碳水化合物和脂质的含量较低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/55b6/11154399/254cd9f3c898/marinedrugs-22-00046-g001.jpg

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