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Title: Fatty alcohol production in Lipomyces starkeyi and Yarrowia lipolytica

Journal Article · · Biotechnology for Biofuels

Current biological pathways to produce biofuel intermediates amenable to separations and catalytic upgrading to hydrocarbon fuels are not cost effective. Previously, oleaginous yeasts have been investigated primarily for lipid production. However, yeasts store neutral lipids intracellularly making recovery difficult and expensive. In addition, once recovered from the cells, lipids are difficult to blend directly with the existing fuels without upgrading. We have, therefore, begun to investigate secreted fatty acid-derived products which can be easily recovered and upgraded to fuels. In this study, we successfully demonstrate the production of fatty alcohols by the oleaginous yeasts, Yarrowia lipolytica and Lipomyces starkeyi, through expression of the fatty acyl-CoA reductase gene from Marinobactor aquaeolei VT8. This strategy resulted in the production of 167 and 770 mg/L of fatty alcohols in shake flask from Y. lipolytica and L starkeyi, respectively. When using a dodecane overlay during fermentation, 92 and 99% of total fatty alcohols produced by Y. lipolytica and L. starkeyi, respectively, were extracted into the dodecane phase, which compares favorably to the 3 and 50% recovered, respectively, without the dodecane layer. In both oleaginous yeasts, long chain length, saturated fatty alcohols, i.e., hexadecanol (C16:0) and octadecanol (C18:0), were predominant and accounted for more than 85% of the total fatty alcohols produced. To the best of our knowledge, this is the first report of fatty alcohol production in L. starkeyi. Furthermore, this work demonstrates that the oleaginous yeasts, Y. lipolytica and L. starkeyi, can serve as platform organisms for the production of fatty acid-derived biofuels and bioproducts.

Research Organization:
National Renewable Energy Laboratory (NREL), Golden, CO (United States)
Sponsoring Organization:
USDOE Office of Energy Efficiency and Renewable Energy (EERE), Sustainable Transportation Office. Bioenergy Technologies Office
Grant/Contract Number:
AC36-08-GO28308; AC36-08GO28308
OSTI ID:
1618653
Alternate ID(s):
OSTI ID: 1332481
Report Number(s):
NREL/JA-2700-65740; 227; PII: 647
Journal Information:
Biotechnology for Biofuels, Journal Name: Biotechnology for Biofuels Vol. 9 Journal Issue: 1; ISSN 1754-6834
Publisher:
Springer Science + Business MediaCopyright Statement
Country of Publication:
Netherlands
Language:
English
Citation Metrics:
Cited by: 43 works
Citation information provided by
Web of Science

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Cited By (9)

Oleaginous yeasts: Promising platforms for the production of oleochemicals and biofuels: Microbial Production of Oleochemicals and Biofuels journal May 2017
A metabolic engineering strategy for producing free fatty acids by the Yarrowia lipolytica yeast based on impairment of glycerol metabolism journal November 2017
Lipomyces starkeyi: an emerging cell factory for production of lipids, oleochemicals and biotechnology applications journal September 2018
Expression and secretion of fungal endoglucanase II and chimeric cellobiohydrolase I in the oleaginous yeast Lipomyces starkeyi journal July 2017
Metabolism of aromatics by Trichosporon oleaginosus while remaining oleaginous journal November 2017
Increasing medium chain fatty acids production in Yarrowia lipolytica by metabolic engineering journal September 2018
A GFP-fusion coupling FACS platform for advancing the metabolic engineering of filamentous fungi journal August 2018
Oleaginicity of the yeast strain Saccharomyces cerevisiae D5A journal September 2018
Metabolic Engineering of Oleaginous Yeasts for Production of Fuels and Chemicals journal November 2017