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海洋产油硅藻日光瘘壳藻JPCC DA0580中极性脂质的分析:二十碳五烯酸掺入三酰甘油的潜在机制预测

Profiling of polar lipids in marine oleaginous diatom Fistulifera solaris JPCC DA0580: prediction of the potential mechanism for eicosapentaenoic acid-incorporation into triacylglycerol.

作者信息

Liang Yue, Maeda Yoshiaki, Yoshino Tomoko, Matsumoto Mitsufumi, Tanaka Tsuyoshi

机构信息

Division of Biotechnology and Life Science, Institute of Engineering, Tokyo University of Agriculture and Technology, 2-24-16, Naka-cho, Koganei, Tokyo 184-8588, Japan.

Biotechnology Laboratory, Electric Power Development Co., Ltd., 1, Yanagisaki-machi, Wakamatsu-ku, Kitakyusyu 808-0111, Japan.

出版信息

Mar Drugs. 2014 May 28;12(6):3218-30. doi: 10.3390/md12063218.

Abstract

The marine oleaginous diatom Fistulifera solaris JPCC DA0580 is a candidate for biodiesel production because of its high lipid productivity. However, the substantial eicosapentaenoic acid (EPA) content in this strain would affect the biodiesel quality. On the other hand, EPA is also known as the essential health supplement for humans. EPAs are mainly incorporated into glycerolipids in the microalgal cell instead of the presence as free fatty acids. Therefore, the understanding of the EPA biosynthesis including the incorporation of the EPA into glycerolipids especially triacylglycerol (TAG) is fundamental for regulating EPA content for different purposes. In this study, in order to identify the biosynthesis pathway for the EPA-containing TAG species, a lipidomic characterization of the EPA-enriched polar lipids was performed by using direct infusion electrospray ionization (ESI)-Q-TRAP-MS and MS/MS analyses. The determination of the fatty acid positional distribution showed that the sn-2 position of all the chloroplast lipids and part of phosphatidylcholine (PC) species was occupied by C16 fatty acids. This result suggested the critical role of the chloroplast on the lipid synthesis in F. solaris. Furthermore, the exclusive presence of C18 fatty acids in PC highly indicated the biosynthesis of EPA on PC. Finally, the PC-based acyl-editing and head group exchange processes were proposed to be essential for the incorporation of EPA into TAG and chloroplast lipids.

摘要

海洋产油硅藻日光细管藻JPCC DA0580因其高脂质生产率而成为生物柴油生产的候选物种。然而,该菌株中大量的二十碳五烯酸(EPA)含量会影响生物柴油质量。另一方面,EPA也是人类必需的健康补充剂。EPA主要以甘油酯的形式掺入微藻细胞中,而非以游离脂肪酸的形式存在。因此,了解EPA生物合成,包括EPA掺入甘油酯尤其是三酰甘油(TAG)的过程,对于出于不同目的调节EPA含量至关重要。在本研究中,为了确定含EPA的TAG种类的生物合成途径,通过直接进样电喷雾电离(ESI)-Q-TRAP-MS和MS/MS分析对富含EPA的极性脂质进行了脂质组学表征。脂肪酸位置分布的测定表明,所有叶绿体脂质和部分磷脂酰胆碱(PC)种类的sn-2位均被C16脂肪酸占据。这一结果表明叶绿体在日光细管藻脂质合成中起关键作用。此外,PC中仅存在C18脂肪酸强烈表明EPA在PC上的生物合成。最后,基于PC的酰基编辑和头部基团交换过程被认为是EPA掺入TAG和叶绿体脂质所必需的。

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