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Updated: Jan 10, 2026

Author Spotlight: Optimizing Growth Factors for Production of Biotechnologically Relevant Secondary Metabolites
Published on: October 25, 2024
Physiological responses of microalgae to light and CO2: insights into pigment production
Frizek Nathaniel Morales-Rivera1, Sofia Torres-Momber1, Julio César Jacuinde-Ruíz1,2
1Tecnológico Nacional de México, Instituto Tecnológico de Morelia, Av. Tecnológico 1500, Col. Lomas de Santiaguito, C.P. 58120 Morelia, Michoacán México.
Abstract:
The aim of this research was to evaluate the combined effects of light intensity, light color, and CO2 concentration on chlorophyll a, chlorophyll b, and total chlorophyll and carotenoid production in Chlorella sorokiniana and their relationships with cell growth at the photobioreactor scale. A Taguchi L4 design was applied to assess the impact of these variables systematically. Chlorophylls were quantified via spectrophotometric solvent extraction, and carotenoids were measured on the basis of their absorbance spectra. The highest cell growth (5.89 log10 cells/mL) occurred under violet light, 1.8 × 10- 4 W/nm, and moderate CO2 (0.078 L). The maximum chlorophyll production (0.3049 µg/mL) was observed under violet light, 1.8 × 10- 4 W/nm, and high CO2 (0.15 L), whereas the highest carotenoid concentration (0.0487 µg/mL) coincided with the conditions promoting maximum growth. These findings indicate that pigment biosynthesis is differentially regulated: chlorophylls respond mainly to the light spectrum, whereas carotenoids are correlated more with metabolic activity than with stress responses. This study provides insights for optimizing light and CO2 to increase C. sorokiniana biomass and pigment yields for biotechnological applications.
Supplementary Information:
The online version contains supplementary material available at 10.1007/s13205-025-04603-z.
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