4.5 Article

From crude glycerol to carotenoids by using a Rhodotorula glutinis mutant

Journal

WORLD JOURNAL OF MICROBIOLOGY & BIOTECHNOLOGY
Volume 29, Issue 6, Pages 1009-1017

Publisher

SPRINGER
DOI: 10.1007/s11274-013-1264-x

Keywords

Rhodotorula glutinis; beta-carotene; Crude glycerol; Central composite design; Bioconversion

Funding

  1. Ministero delle Politiche Agricole e Forestali (MIPAF) [D.M. 26285/7303/2009]

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In this work eighteen red yeasts were screened for carotenoids production on glycerol containing medium. Strain C2.5t1 of Rhodotorula glutinis, that showed the highest productivity, was UV mutagenized. Mutant 400A15, that exhibited a 280 % increase in beta-carotene production in respect to the parental strain, was selected. A central composite design was applied to 400A15 to optimize carotenoids and biomass productions. Regression analyses of the quadratic polynomial equations obtained (R-2 = 0.87 and 0.94, for carotenoids and biomass, respectively) suggest that the models are reliable and significant (P < 0.0001) in the prediction of carotenoids and biomass productions on the basis of the concentrations of crude glycerol, yeast extract and peptone. Accordingly, total carotenoids production achieved (14.07 +/- A 1.45 mg l(-1)) under optimized growth conditions was not statistically different from the maximal predicted (14.64 +/- A 1.57 mg l(-1)) (P < 0.05), and it was about 100 % higher than that obtained under un-optimized conditions. Therefore mutant 400A15 may represent a biocatalyst of choice for the bioconversion of crude glycerol into value-added metabolites, and a tool for the valorization of this by-product of the biodiesel industry.

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