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转录组分析揭示富含花生四烯酸的微藻 Myrmecia incisa Reisigl H4301 中独特的 C4 样光合作用和油体形成。

Transcriptome analysis reveals unique C4-like photosynthesis and oil body formation in an arachidonic acid-rich microalga Myrmecia incisa Reisigl H4301.

机构信息

College of Aqua-life Sciences and Technology, Shanghai Ocean University, 999 Hucheng Huan Road, Pudong New District, Shanghai 201306, China.

出版信息

BMC Genomics. 2013 Jun 13;14:396. doi: 10.1186/1471-2164-14-396.

Abstract

BACKGROUND

Arachidonic acid (ArA) is important for human health because it is one of the major components of mammalian brain membrane phospholipids. The interest in ArA inspired the search for a new sustainable source, and the green microalga Myrmecia incisa Reisigl H4301 has been found a potential ArA-producer due to a high content of intracellular ArA. To gain more molecular information about metabolism pathways, including the biosynthesis of ArA in the non-model microalga, a transcriptomic analysis was performed.

RESULTS

The 454 pyrosequencing generated 371,740 high-quality reads, which were assembled into 51,908 unique sequences consisting of 22,749 contigs and 29,159 singletons. A total of 11,873 unique sequences were annotated through BLAST analysis, and 3,733 were assigned to Gene Ontology (GO) categories. Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway analysis uncovered a C4-like photosynthesis pathway in M. incisa. The biosynthesis pathways of lipid particularly those of ArA and triacylglycerol (TAG) were analyzed in detail, and TAG was proposed to be accumulated in oil bodies in the cytosol with the help of caleosin or oil globule-associated proteins. In addition, the carotenoid biosynthesis pathways are discussed.

CONCLUSION

This transcriptomic analysis of M. incisa enabled a global understanding of mechanisms involved in photosynthesis, de novo biosynthesis of ArA, metabolism of carotenoids, and accumulation of TAG in M. incisa. These findings provided a molecular basis for the research and possibly economic exploitation of this ArA-rich microalga.

摘要

背景

花生四烯酸(ArA)对人类健康很重要,因为它是哺乳动物脑细胞膜磷脂的主要成分之一。由于富含细胞内 ArA,绿微藻 Myrmecia incisa Reisigl H4301 被发现是一种有潜力的 ArA 生产源,这激发了人们对寻找新的可持续来源的兴趣。为了获得更多关于代谢途径的分子信息,包括非模式微藻中 ArA 的生物合成,进行了转录组分析。

结果

454 焦磷酸测序生成了 371740 条高质量读数,这些读数组装成 51908 个独特序列,包括 22749 个重叠群和 29159 个单序列。通过 BLAST 分析对总共 11873 个独特序列进行注释,3733 个序列被分配到基因本体论(GO)类别。京都基因与基因组百科全书(KEGG)途径分析揭示了 M. incisa 中的 C4 样光合作用途径。详细分析了脂质,特别是 ArA 和三酰基甘油(TAG)的生物合成途径,并提出 TAG 在质体中的油体中积累,这得益于钙调蛋白或油球相关蛋白的帮助。此外,还讨论了类胡萝卜素生物合成途径。

结论

对 M. incisa 的转录组分析使我们能够全面了解光合作用、ArA 从头生物合成、类胡萝卜素代谢以及 TAG 在 M. incisa 中的积累的相关机制。这些发现为该富含 ArA 的微藻的研究和可能的经济开发提供了分子基础。

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