A Response Surface Methodology Study for Mixotrophic Culture Optimization.

Microorganisms

Biology and Breeding Research Program, Colombian OiI Palm Research Center, Bogotá 111121, Colombia.

Published: February 2024

Glycerol is a carbon source that produces good biomass under mixotrophic conditions. Enhancing the composition of culture media in algae biomass production improves growth rates, biomass yield, nutrient utilization efficiency, and overall cost-effectiveness. Among the key nutrients in the medium, nitrogen plays a pivotal role. Urea can be effectively used as a nitrogen source and is considered a low-cost form of nitrogen compared to other sources. Urea metabolism releases some CO in photosynthesis, and magnesium plays a major role in urea uptake. Magnesium is another key nutrient that is key in photosynthesis and other metabolic reactions. To maximize glycerol consumption in the mixotrophic system and to obtain high biomass and lipid productions, the variations in MgSO4·7HO and urea concentrations were evaluated in the growth medium of the microalgae. A response surface methodology (RSM) using a central composite design (CCD) was designed to maximize glycerol consumption at the initial cellular growth rates (up to four days). The magnesium and urea supply varied from 0.3 to 1.7 g L. Response surface methodology was utilized to analyze the results, and the highest glycerol consumption rate, 770.2 mg L d, was observed when was grown at 1.7 g L urea, 1.0 g L MgSO4·7HO. Using the optimal urea and magnesium concentrations with acetate, glucose, and glycerol as carbon sources, the same lipid content (10% average) was achieved on day 4 of mixotrophic culture. Overall, the results show that mixotrophic growth of using urea with an optimum magnesium concentration yields large amounts of fatty acids and that the carbon source greatly influences the profile of the fatty acids.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10892752PMC
http://dx.doi.org/10.3390/microorganisms12020379DOI Listing

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