Cupo Adelaide, Landi Simone, Morra Salvatore, Nuzzo Genoveffa, Gallo Carmela, Manzo Emiliano, Fontana Angelo, d'Ippolito Giuliana
Institute of Biomolecular Chemistry ICB-CNR, Via Campi Flegrei 34, 80078 Naples, Italy.
Department of Biology, University of Naples "Federico II", Via Cinthia, 80126 Napoli, Italy.
Mar Drugs. 2021 Jun 23;19(7):355. doi: 10.3390/md19070355.
Recently, the marketable value of ω-3 fatty acid, particularly eicosapentaenoic acid (EPA), increased considering their health effects for human consumption. Microalgae are considered a valuable and "green" source of EPA alternative to fish oils, but considerable efforts are necessary for their exploitation at an industrial level. Due to the high operation costs of photoautotrophic microalgae cultivation, heterotrophic growth represents a promising economic solution. Marine diatoms are the major ecological producers of ω-3 fatty acids. Few species of diatoms are capable to grow in the dark using organic carbon sources. The marine diatom was cultivated for 14 days under photoautotrophic and heterotrophic conditions to define the effects on growth parameters, lipid production, total fatty acids and EPA content. Photoautotrophic conditions led to a total EPA production of 1.6% of dry weight, 12.2 mg L culture and productivity of 0.9 mg L day. The heterotrophy cultures reported a total EPA production of 2.7% of dry cell weight, 18 mg L culture, a productivity of 1.3 mg L day, which are promising values in the prospective of improving culture parameters for the biotechnological exploitation of dark cultivation. could be a potential candidate for the heterotrophic production of EPA, also considering its robustness, capacity to resist to bacterial contaminations and plasticity of lipid metabolism.
最近,考虑到ω-3脂肪酸,特别是二十碳五烯酸(EPA)对人类消费的健康影响,其市场价值有所增加。微藻被认为是一种有价值的“绿色”EPA来源,可替代鱼油,但要在工业层面开发利用它们还需要付出巨大努力。由于光合自养微藻培养的运营成本很高,异养生长是一种有前景的经济解决方案。海洋硅藻是ω-3脂肪酸的主要生态生产者。少数硅藻物种能够在黑暗中利用有机碳源生长。对该海洋硅藻在光合自养和异养条件下培养14天,以确定其对生长参数、脂质产量、总脂肪酸和EPA含量的影响。光合自养条件下,EPA的总产量为干重的1.6%,每升培养物中为12.2毫克,生产力为每天0.9毫克/升。异养培养物中EPA的总产量为干细胞重量的2.7%,每升培养物中为18毫克,生产力为每天1.3毫克/升,从改善黑暗培养生物技术开发的培养参数前景来看,这些都是很有前景的值。考虑到其健壮性、抵抗细菌污染的能力和脂质代谢的可塑性,该硅藻可能是EPA异养生产的潜在候选者。