Elucidation of EPA and DHA biosynthetic capacity of marine copepods in the ecosystem

项目来源

日本学术振兴会基金(JSPS)

项目主持人

壁谷 尚樹

项目受资助机构

東京海洋大学

立项年度

2022

立项时间

未公开

项目编号

22H02433

项目级别

国家级

研究期限

未知 / 未知

受资助金额

17290000.00日元

学科

水圏生命科学関連

学科代码

未公开

基金类别

基盤研究(B)

关键词

カイアシ ; 多価不飽和脂肪酸 ; 一次生産 ; 生合成 ; DHA

参与者

未公开

参与机构

未公开

项目标书摘要:Outline of Research at the Start:生理学的に重要なドコサヘキサエン酸(DHA)などの脂肪酸は、そのほぼ全てが海洋由来である。イワシやサバなどの海産魚は、微細藻類等によって一次生産されたDHAを食物連鎖を介して蓄積している。このことは海洋生態系においてDHAを自ら生産可能な生物の重要性を示している。本研究は、海洋生態系に大量に存在する小型の甲殻類であるカイアシ類を対象とし、その生態系へのDHAの供給能力を解明することを目的とする。

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  • 1.Functional characterization reveals a diverse array of metazoan fatty acid biosynthesis genes

    • 关键词:
    • functional characterization; harpacticoids copepods; heterologousexpression; polyunsaturated fatty acid biosynthesis;DESATURASE-LIKE GENE; HARPACTICOID COPEPODS; LIVE FOOD; TISBE SP;TEMPERATURE; EXPRESSION; ELONGASES; BIOCONVERSION; ADAPTATION; INSIGHTS
    • Boyen, Jens;Ribes-Navarro, Alberto;Kabeya, Naoki;Monroig, Oscar;Rigaux, Annelien;Fink, Patrick;Habluetzel, Pascal I.;Navarro, Juan Carlos;De Troch, Marleen
    • 《MOLECULAR ECOLOGY》
    • 2022年
    • 32卷
    • 4期
    • 期刊

    Long-chain (>= C-20) polyunsaturated fatty acids (LC-PUFAs) are physiologically important fatty acids for most animals, including humans. Although most LC-PUFA production occurs in aquatic primary producers such as microalgae, recent research indicates the ability of certain groups of (mainly marine) invertebrates for endogenous LC-PUFA biosynthesis and/or bioconversion from dietary precursors. The genetic pathways for and mechanisms behind LC-PUFA biosynthesis remain unknown in many invertebrates to date, especially in non-model species. However, the numerous genomic and transcriptomic resources currently available can contribute to our knowledge of the LC-PUFA biosynthetic capabilities of metazoans. Within our previously generated transcriptome of the benthic harpacticoid copepod Platychelipus littoralis, we detected expression of one methyl-end desaturase, one front-end desaturase, and seven elongases, key enzymes responsible for LC-PUFA biosynthesis. To demonstrate their functionality, we characterized eight of them using heterologous expression in yeast. The P. littoralis methyl-end desaturase has Delta 15/17/19 desaturation activity, enabling biosynthesis of alpha-linolenic acid, eicosapentaenoic acid and docosahexaenoic acid (DHA) from 18:2 n-6, 20:4 n-6 and 22:5 n-6, respectively. Its front-end desaturase has Delta 4 desaturation activity from 22:5 n-3 to DHA, implying that P. littoralis has multiple pathways to produce this physiologically important fatty acid. All studied P. littoralis elongases possess varying degrees of elongation activity for saturated and unsaturated fatty acids, producing aliphatic hydrocarbon chains with lengths of up to 30 carbons. Our investigation revealed a functionally diverse range of fatty acid biosynthesis genes in copepods, which highlights the need to scrutinize the role that primary consumers could perform in providing essential nutrients to upper trophic levels.

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