Lipid synthesis by an acidic acid tolerant Rhodotorula glutinis.
- Author:
Zhangnan LIN
;
Hongjuan LIU
;
Jian'an ZHANG
;
Gehua WANG
- Publication Type:Journal Article
- MeSH:
Acetic Acid;
Biofuels;
Biomass;
Culture Media;
Fatty Acids;
Hydrolysis;
Industrial Microbiology;
Lignin;
chemistry;
Linoleic Acid;
Lipids;
biosynthesis;
Oleic Acid;
Rhodotorula;
metabolism
- From:
Chinese Journal of Biotechnology
2016;32(3):339-346
- CountryChina
- Language:Chinese
-
Abstract:
Acetic acid, as a main by-product generated in the pretreatment process of lignocellulose hydrolysis, significantly affects cell growth and lipid synthesis of oleaginous microorganisms. Therefore, we studied the tolerance of Rhodotorula glutinis to acetic acid and its lipid synthesis from substrate containing acetic acid. In the mixed sugar medium containing 6 g/L glucose and 44 g/L xylose, and supplemented with acetic acid, the cell growth was not:inhibited when the acetic acid concentration was below 10 g/L. Compared with the control, the biomass, lipid concentration and lipid content of R. glutinis increased 21.5%, 171% and 122% respectively when acetic acid concentration was 10 g/L. Furthermore, R. glutinis could accumulate lipid with acetate as the sole carbon source. Lipid concentration and lipid yield reached 3.20 g/L and 13% respectively with the initial acetic acid concentration of 25 g/L. The lipid composition was analyzed by gas chromatograph. The main composition of lipid produced with acetic acid was palmitic acid, stearic acid, oleic acid, linoleic acid and linolenic acid, including 40.9% saturated fatty acids and 59.1% unsaturated fatty acids. The lipid composition was similar to that of plant oil, indicating that lipid from oleaginous yeast R. glutinis had potential as the feedstock of biodiesel production. These results demonstrated that a certain concentration of acetic acid need not to be removed in the detoxification process when using lignocelluloses hydrolysate to produce microbial lipid by R. glutinis.