Graduate School of Innovation, Science and Technology, Kobe University, 1-1 Rokkodai, Nada, Kobe, 657-8501, Japan.
OP Bio Factory Co., Ltd., 5-8 Aza-Suzaki, Uruma, Okinawa, 904-2234, Japan.
Mar Biotechnol (NY). 2021 Apr;23(2):331-341. doi: 10.1007/s10126-021-10028-5. Epub 2021 Mar 13.
The natural pigment fucoxanthin has attracted global attention because of its superior antioxidant properties. The haptophyte marine microalgae Pavlova spp. are assumed to be promising industrial fucoxanthin producers as their lack of a cell wall could facilitate the commercialization of cultured cells as a whole food. This study screened promising Pavlova strains with high fucoxanthin content to develop an outdoor cultivation method for fucoxanthin production. Initial laboratory investigations of P. pinguis NBRC 102807, P. lutheri NBRC 102808, and Pavlova sp. OPMS 30543 identified OPMS 30543 as having the highest fucoxanthin content. The culture conditions were optimized for OPMS 30543. Compared with f/2 and Walne's media, the use of Daigo's IMK medium led to the highest biomass production and highest fucoxanthin accumulation. The presence of seawater elements in Daigo's IMK medium was necessary for the growth of OPMS 30543. OPMS 30543 was then cultured outdoors using acrylic pipe photobioreactors, a plastic bag, an open tank, and a raceway pond. Acrylic pipe photobioreactors with small diameters enabled the highest biomass production. Using an acrylic pipe photobioreactor with 60-mm diameter, a fucoxanthin productivity of 4.88 mg/L/day was achieved in outdoor cultivation. Thus, this study demonstrated the usefulness of Pavlova sp. OPMS 30543 for fucoxanthin production in outdoor cultivation.
天然色素岩藻黄质因其卓越的抗氧化性能而引起了全球关注。甲藻海洋微藻巴夫藻属被认为是有前途的工业岩藻黄质生产菌,因为它们缺乏细胞壁可以促进整个细胞作为一种全食物的商业化。本研究筛选了具有高岩藻黄质含量的有前途的巴夫藻菌株,以开发一种用于岩藻黄质生产的室外培养方法。对 P. pinguis NBRC 102807、P. lutheri NBRC 102808 和 Pavlova sp. OPMS 30543 的初步实验室研究表明,OPMS 30543 具有最高的岩藻黄质含量。优化了 OPMS 30543 的培养条件。与 f/2 和 Walne 培养基相比,使用 Daigo 的 IMK 培养基可导致最高的生物量生产和最高的岩藻黄质积累。Daigo 的 IMK 培养基中存在海水元素是 OPMS 30543 生长所必需的。然后,使用丙烯酸管光生物反应器、塑料袋、开放式水槽和跑道式池塘在室外培养 OPMS 30543。小直径的丙烯酸管光生物反应器可实现最高的生物量生产。在室外培养中,使用直径为 60 毫米的丙烯酸管光生物反应器,可实现 4.88 mg/L/天的岩藻黄质生产力。因此,本研究表明 Pavlova sp. OPMS 30543 可用于室外培养生产岩藻黄质。