Assunção Joana, Amaro Helena M, Tavares Tânia, Malcata F Xavier, Guedes A Catarina
CIIMAR-CIMAR-LA-Interdisciplinary Centre of Marine and Environmental Research, University of Porto, Novo Edíficio do Terminal de Cruzeiros do Porto de Leixões, Av. General Norton de Matos, s/n, 4450-208 Matosinhos, Portugal.
LEPABE-Laboratory for Process Engineering, Environment, Biotechnology and Energy, Faculty of Engineering, University of Porto, Rua Dr. Roberto Frias, s/n, 4200-465 Porto, Portugal.
Life (Basel). 2023 Jan 9;13(1):187. doi: 10.3390/life13010187.
is a cyanobacterium that has biotechnological potential thanks to its ability to synthesize several bioactive compounds of interest. Therefore, this study aimed to find optimal conditions, in terms of temperature (15-25 °C), pH (6.5-9.5), and NaCl concentration (10-40 g·L), using as objective functions the productivities of biomass, total carotenoids, total PBPs, phycocyanin (PC), allophycocyanin (APC), phycoerythrin (PE), and antioxidants (AOXs) capacity of () strain LEGE 06155, based in factorial design resorting to Box-Behnken. The model predicted higher biomass productivities under a temperature of 25 °C, a pH of 7.5, and low NaCl concentrations (10 g·L). Maximum productivities in terms of bioactive compounds were attained at lower NaCl concentrations (10 g·L) (except for PE), with the best temperature and pH in terms of carotenoids and total and individual PBPs ranging from 23-25 °C to 7.5-9.5, respectively. PE was the only pigment for which the best productivity was reached at a lower temperature (15 °C) and pH (6.5) and a higher concentration of NaCl (≈25 g·L). AOX productivities, determined in both ethanolic and aqueous extracts, were positively influenced by lower temperatures (15-19 °C) and higher salinities (≈15-25 g·L). However, ethanolic AOXs were better recovered at a higher pH (pH ≈ 9.5), while aqueous AOXs were favored by a pH of 8. The model showed that biomass production can be enhanced by 175% (compared to non-optimized conditions), total carotenoids by 91%, PC by 13%, APC by 50%, PE by 130%, and total PBPs by 39%; for AOX productivities, only water extracts exhibited a (marginal) improvement of 1.4%. This study provided insightful information for the eventual upgrading of biomass in the biotechnological market.
是一种蓝细菌,因其能够合成多种有价值的生物活性化合物而具有生物技术潜力。因此,本研究旨在寻找最佳条件,涉及温度(15 - 25°C)、pH(6.5 - 9.5)和NaCl浓度(10 - 40 g·L),以()菌株LEGE 06155的生物量、总类胡萝卜素、总藻胆蛋白、藻蓝蛋白(PC)、别藻蓝蛋白(APC)、藻红蛋白(PE)和抗氧化剂(AOXs)能力的生产力作为目标函数,实际上基于Box - Behnken析因设计。该模型预测在25°C的温度、7.5的pH和低NaCl浓度(10 g·L)下生物量生产力更高。就生物活性化合物而言,在较低的NaCl浓度(10 g·L)下达到最大生产力(PE除外),就类胡萝卜素以及总藻胆蛋白和单个藻胆蛋白而言,最佳温度和pH分别为23 - 25°C至7.