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优化利用巴夫藻生产岩藻黄质的培养策略和放大规模

Optimizing cultivation strategies and scaling up for fucoxanthin production using Pavlova sp.

机构信息

University Center for Bioscience and Biotechnology, National Cheng Kung University, Tainan, Taiwan; Department of Biotechnology and Bioindustry Sciences, National Cheng Kung University, Tainan 701, Taiwan.

Department of Chemical Engineering, National Cheng Kung University, Tainan, Taiwan.

出版信息

Bioresour Technol. 2024 May;399:130609. doi: 10.1016/j.biortech.2024.130609. Epub 2024 Mar 18.

Abstract

The microalgal-based production of fucoxanthin has emerged as an imperative research endeavor due to its antioxidant, and anticancer properties. In this study, three brown marine microalgae, namely Skeletonema costatum, Chaetoceros gracilis, and Pavlova sp., were screened for fucoxanthin production. All strains displayed promising results, with Pavlova sp. exhibiting the highest fucoxanthin content (27.91 mg/g) and productivity (1.16 mg/L·day). Moreover, the influence of various cultivation parameters, such as culture media, salinity, sodium nitrate concentration, inoculum size, light intensity, and iron concentration, were investigated and optimized, resulting in a maximum fucoxanthin productivity of 7.89 mg/L·day. The investigation was further expanded to large-scale outdoor cultivation using 50 L tubular photobioreactors, illustrating the potential of Pavlova sp. and the cultivation process for future commercialization. The biomass and fucoxanthin productivity for the large-scale cultivation were 70.7 mg/L·day and 4.78 mg/L·day, respectively. Overall, the findings demonstrated considerable opportunities for fucoxanthin synthesis via microalgae cultivation and processing.

摘要

由于具有抗氧化和抗癌特性,基于微藻的岩藻黄质生产已经成为一项紧迫的研究工作。在这项研究中,筛选了三种褐海微藻,即中肋骨条藻、柔弱角毛藻和菱形海发藻,以生产岩藻黄质。所有菌株都显示出了有前景的结果,其中菱形海发藻表现出最高的岩藻黄质含量(27.91mg/g)和生产力(1.16mg/L·天)。此外,还研究和优化了各种培养参数的影响,如培养基、盐度、硝酸钠浓度、接种量、光照强度和铁浓度,最终获得了最高的岩藻黄质生产力为 7.89mg/L·天。研究进一步扩展到使用 50L 管状光生物反应器的大规模户外养殖,展示了菱形海发藻和培养过程的潜力,为未来的商业化提供了可能。大规模养殖的生物量和岩藻黄质生产力分别为 70.7mg/L·天和 4.78mg/L·天。总的来说,这些发现表明通过微藻培养和加工来合成岩藻黄质具有相当大的机会。

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