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Screening of <Emphasis Type="Italic">Isochrysis</Emphasis> Strains and Utilization of a Two-Stage Outdoor Cultivation Strategy for Algal Biomass and Lipid Production
Authors:Zheng Sun  Hehong Wei  Zhi-gang Zhou  Muthupandian Ashokkumar  Jin Liu
Institution:1.International Research Center for Marine Biosciences, Ministry of Science and Technology,Shanghai Ocean University,Shanghai,China;2.Key Laboratory of Exploration and Utilization of Aquatic Genetic Resources, Ministry of Education,Shanghai Ocean University,Shanghai,China;3.National Demonstration Center for Experimental Fisheries Science Education,Shanghai Ocean University,Shanghai,China;4.Institute for Food and Bioresource Engineering, Department of Energy and Resources Engineering and BIC-ESAT, College of Engineering,Peking University,Beijing,China;5.School of Chemistry,University of Melbourne,Melbourne,Australia
Abstract:Isochrysis is a genus of marine algae without cell wall and capable of accumulating lipids. In this study, the lipid production potential of Isochrysis was assessed by comparing 15 Isochrysis strains with respect to their growth rate, lipid production, and fatty acid profiles. Three best strains were selected (lipid productivity, 103.0~121.7 mg L?1 day?1) and their lipid-producing capacities were further examined under different controlled parameters, e.g., growth phase, medium nutrient, and light intensity in laboratory cultures. Furthermore, the three Isochrysis strains were monitored in outdoor panel photobioreactors with various initial cell densities and optical paths, and the strain CS177 demonstrated the superior potential for outdoor cultivation. A two-stage semi-continuous strategy for CS177 was subsequently developed, where high productivities of biomass (1.1 g L?1 day?1) and lipid (0.35 g L?1 day?1) were achieved. This is a comprehensive study to evaluate the lipid-producing capability of Isochrysis strains under both indoor and outdoor conditions. Results of the present work lay a solid foundation for the physiological and biochemical responses of Isochrysis to various conditions, shedding light on the future utilization of this cell wall-lacking marine alga for biofuel production.
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