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February 26, 2026Applied Microbiology and Biotechnology0 citationsOpen Access

Blue LED–assisted bioreactor cultivation enhances carotenoid accumulation in Rhodotorula mucilaginosa LB-01

ACAldana L. Delgado CuadrosCatholic University of Santa MaríaNSN. O. SilosUniversidade de São PauloKBKiara Garcia BustosUniversidade de São Paulo

Key Points

  • This research aims to evaluate the carotenoid biosynthetic potential of Rhodotorula mucilaginosa LB-01 and the effect of light quality on accumulation.
  • Isolated Rhodotorula mucilaginosa LB-01 and optimized growth medium with glucose and yeast extract.
  • Assessed the influence of different LED light colors on carotenoid accumulation.
  • Cultivated yeast in a stirred-tank bioreactor under blue LED illumination to measure carotenoid levels.
  • Medium optimization achieved 10.13 Abs/g dry biomass for carotenoids.
  • Blue LED illumination enhanced accumulation to 12.4 Abs/g compared to other light colors.
  • Cultivation in a bioreactor under blue LED increased carotenoid levels to 16 Abs/g dry biomass, a 20% increase over control.

Abstract

Microbial production of carotenoids provides a sustainable alternative to plant-derived sources. In this study, a yeast strain, Rhodotorula mucilaginosa LB-01, was isolated and its carotenoid biosynthetic potential was evaluated. Medium optimization (10 g/L glucose and 3 g/L yeast extract) improved relative carotenoid accumulation, reaching 10.13 Abs/g dry biomass. The influence of light quality was subsequently assessed, showing that blue LED illumination was associated with higher relative carotenoid accumulation (12.4 Abs/g) compared with red, orange, white, and green light conditions. Cultivation in a stirred-tank bioreactor (2.5 L working volume) under blue LED illumination resulted in further increases in carotenoid accumulation, reaching 16 Abs/g and 311 µg/g dry biomass, corresponding to an approximately 20% increase compared with control conditions operated without direct light exposure. Purification and quantification of individual pigments identified torularhodin (173 µg/g), torulene (71 µg/g), and β-carotene (67 µg/g), all present at higher levels than in the control. Overall, these results indicate that R. mucilaginosa LB-01, combined with controlled LED illumination, represents a promising microbial system for carotenoid accumulation. • Rhodotorula mucilaginosa LB-01 was identified as a carotenoid-producing yeast. • Blue LED illumination yielded the highest relative carotenoid accumulation (12.4 Abs/g). • Blue LED bioreactor cultivation increased accumulation to 16 Abs/g dry biomass (+ 20%).

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Cite This Study

Cuadros et al. (2026) studied this question.

synapsesocial.com/papers/699fe34695ddcd3a253e712ahttps://doi.org/10.1007/s00253-026-13760-x
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1LED-Illuminated Bioreactor as a Novel Strategy to Maximize Carotenoid Production by Rhodotorula mucilaginosa LB-012025
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  4. 4Effect of extraction conditions on carotenoids from Rhodotorula mucilaginosa2024
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