Literature DB >> 24473455

Lipid and citric acid production by wild yeasts grown in glycerol.

Karla Silva Teixeira Souza1, Rosane Freitas Schwan, Disney Ribeiro Dias.   

Abstract

In this study, crude glycerol was used as a carbon source in the cultivation of wild yeasts, aiming for the production of microbial lipids and citric acid. Forty yeasts of different sources were tested concerning their growth in crude and commercial glycerol. Four yeasts (Lidnera saturnus UFLA CES-Y677, Yarrowia lipolytica UFLA CM-Y9.4, Rhodotorula glutinis NCYC 2439, and Cryptococcus curvatus NCYC 476) were then selected owing to their ability to grow in pure (OD600 2.133, 1.633, 2.055, and 2.049, respectively) and crude (OD600 2.354, 1.753, 2.316, and 2.281, respectively) glycerol (10%, 20%, and 30%). Y. lipolytica UFLA CM-Y9.4 was selected for its ability to maintain cell viability in concentrations of 30% of crude glycerol, and high glycerol intake (18.907 g/l). This yeast was submitted to lipid production in 30 g/l of crude glycerol, and therefore obtained 63.4% of microbial lipids. In the fatty acid profile, there was a predominance of stearic (C18:0) and palmitic (C16:0) acids in the concentrations of 87.64% and 74.67%, respectively. We also performed optimization of the parameters for the production of citric acid, which yielded a production of 0.19 g/l of citric acid in optimum conditions (38.4 g/l of crude glycerol, agitation of 184 rpm, and temperature of 30°C). Yarrowia lipolytica UFLA CM-Y9.4 presented good lipid production when in the concentration of 30 g/l of glycerol. These data may be used for production in large quantities for the application of industrial biodiesel.

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Year:  2014        PMID: 24473455     DOI: 10.4014/jmb.1310.10084

Source DB:  PubMed          Journal:  J Microbiol Biotechnol        ISSN: 1017-7825            Impact factor:   2.351


  3 in total

1.  An Effective Method of Continuous Production of Erythritol from Glycerol by Yarrowia lipolytica MK1.

Authors:  Magdalena Rakicka; Aleksandra M Mirończuk; Ludwika Tomaszewska-Hetman; Anita Rywińska; Waldemar Rymowicz
Journal:  Food Technol Biotechnol       Date:  2017-03       Impact factor: 3.918

2.  Production of γ-Decalactone by Yeast Strains under 
Different Conditions.

Authors:  Dayana Pereira de Andrade; Beatriz Ferreira Carvalho; Rosane Freitas Schwan; Disney Ribeiro Dias
Journal:  Food Technol Biotechnol       Date:  2017-06       Impact factor: 3.918

3.  Using techno-economic modelling to determine the minimum cost possible for a microbial palm oil substitute.

Authors:  Eleni E Karamerou; Sophie Parsons; Marcelle C McManus; Christopher J Chuck
Journal:  Biotechnol Biofuels       Date:  2021-03-04       Impact factor: 6.040

  3 in total

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