4.3 Article

Detection of Genes Involved in Fatty Acid Elongation and Desaturation in Thraustochytrid Marine Eukaryotes

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JOURNAL OF OLEO SCIENCE
卷 60, 期 9, 页码 475-481

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JAPAN OIL CHEMISTS SOC
DOI: 10.5650/jos.60.475

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thraustochytrids; polyunsaturated fatty acid; elongase; desaturase

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Heterotrophic marine protists known as thraustochytrids can synthesize polyunsaturated fatty acids (PUFAs) such as docosahexaenoic acid (DHA). The biosynthetic pathways of PUFAs in thraustochytrids are poorly understood, however. In this study, we attempted to reveal the enzymes involved in DHA synthesis in thraustochytrids. Nine thraustochytrid strains representing 3 genera (Aurantiochytrium, Schizochytrium, and Thraustochytrium) were used for PCR-based detection of the genes encoding Delta 5-elongase and Delta 4-desaturase and for fatty acid analysis. The degenerate primers were designed to amplify the Delta 5-elongase and Delta 4-desaturase genes, and the partial sequences of the enzymes were obtained from the genera Thraustochytrium and Schizochytrium. These fragments were identical to those of known Delta 5-elongase and Delta 4-desaturase. Neither Delta 5-elongase nor Delta 4-desaturase was detected in the strains belonging to the genus Aurantiochytrium, however, suggesting that this group likely synthesizes DHA not via the elongation/desaturation pathway but via an alternate pathway such as the polyketide synthase pathway. The fatty acid profiles of thraustochytrids were consistent with the presence of genes involved in PUFA biosynthesis in thraustochytrid genera. Thus, our findings suggest that two biosynthetic pathways for PUFAs exist in these organisms.

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