Fatty acid profiling of Chlamydomonas reinhardtii under nitrogen deprivation
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Authors
James, Gabriel
Hocart, Charles
Hillier, Warwick
Chen, Hancai
Kordbacheh, Farzaneh
Price, Graeme (Dean)
Djordjevic, Michael
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Elsevier
Abstract
The Chlamydomonas reinhardtii starch-less mutant, BAF-J5, was found to store lipids up to 65% of dry cell
weight when grown photoheterotrophically and subjected to nitrogen starvation. Fourier transform
infrared spectroscopy was used as a high-throughput method for semi-quantitative measurements of
protein, carbohydrate and lipid content. The fatty acids of wild-type and starch mutants were identified
and quantified by gas chromatography mass spectrometry. C. reinhardtii starch mutants, BAF-J5 and I7,
produce significantly elevated levels of 16:0, 18:1D9
, 18:2D9,12 and 18:3D9,12,15 fatty acids. Long-chain saturated,
mono- and polyunsaturated fatty acids were found under nitrogen starvation. Oleosin-like and
caleosin-like genes were identified in the C. reinhardtii genome. However, proteomic analysis of isolated
lipid bodies only identified a key lipid droplet associated protein. This study shows it is possible to
manipulate algal biosynthetic pathways to produce high levels of lipid that may be suitable for conversion
to liquid fuels.
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Bioresource Technology
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Restricted until
2037-12-31
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