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De novo transcriptome sequencing of Torreya grandis reveals gene regulation in sciadonic acid biosynthesis pathway

机译:De Novo转录组测序Torreya Grandis揭示了Sciadonic酸生物合成途径的基因调控

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摘要

Torreya grandis (T. grandis), a conifer of the Cephalotaxaceae family, yields rare and unique dried fruits of great nutritional value that contains a high level of novel UFA, sciadonic acid. The composition of sciadonic acid in different tissues and cultivars, and the molecular mechanisms underlying the biosynthesis of sciadonic acid in T. grandis, both of which remain unknown however, were investigated. Two cultivars, T. grandis cv. Yuanfei and Xifei were used to reveal in comparison the fatty acid composition of roots, stems, leaves, arils and kernels. It was found that the Yuanfei kernels had the highest levels of sciadonic acid with 17% in oil. In transcriptome analysis, a total of 80,235 and 82,454 unigenes were generated from five libraries of Yuanfei and Xifei cultivars, respectively. KEGG orthology enrichment of differentially expressed genes showed that lipid metabolism pathways were the most highly represented. In particular, six candidate unigenes (Delta(6)-elongase and Delta(5)-desaturase) encoding sciadonic acid elongase and desaturases with high expression levels in Yuanfei and Xifei kernels were identified. This study provides the first comprehensive genomic analysis of sciadonic acid biosynthesis and contributes to the understanding of the molecular mechanisms responsible for de novo fatty acid biosynthesis and high sciadonic acid accumulation in gymnosperm species.
机译:Torreya Grandis(T. Grandis)是Cephalotaxaceae家族的针叶树,产生罕见而独特的干燥果实,含有高水平的新型UFA,Sciadonic酸。在不同组织和品种中,Sciadonic酸的组成,以及在T. Grandis中,Sciadonic酸生物合成的分子机制仍然未知。然而,仍然未知。两种品种,T. Grandis CV。 Yuanfei和Xifei用于揭示与脂肪酸组成的根,茎,叶,籽粒和核。结果发现,元飞核的水平最高水平的石油酸17%。在转录体分析中,共有80,235和82,454个未分别从Yuanfei和Xifei品种的5个文库产生。差异表达基因的Kegg矫正富集表明,脂质代谢途径是最高度代表的。特别地,鉴定了编码中福和XIFEI核中具有高表达水平的Sciadonic酸连续酶和去饱和酶的六种候选人(6)-Longase和Delta(5) - 蛋白酶酶)。本研究提供了对Sciadonic酸生物合成的第一个综合基因组分析,有助于了解裸体植物物种中对Novo脂肪酸生物合成和高分子酸积累的分子机制。

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  • 来源
    《Industrial Crops and Products》 |2018年第2018期|共14页
  • 作者单位

    Zhejiang A&

    F Univ State Key Lab Subtrop Silviculture Hangzhou 311300 Zhejiang Peoples R China;

    Zhejiang A&

    F Univ State Key Lab Subtrop Silviculture Hangzhou 311300 Zhejiang Peoples R China;

    Zhejiang A&

    F Univ State Key Lab Subtrop Silviculture Hangzhou 311300 Zhejiang Peoples R China;

    Hubin Adm Hangzhou West Lake Scen Area Hangzhou Municipal Bur Landscape &

    Cultural Rel Hangzhou 310001 Zhejiang Peoples R China;

    Zhejiang A&

    F Univ State Key Lab Subtrop Silviculture Hangzhou 311300 Zhejiang Peoples R China;

    Zhejiang A&

    F Univ State Key Lab Subtrop Silviculture Hangzhou 311300 Zhejiang Peoples R China;

    Zhejiang A&

    F Univ State Key Lab Subtrop Silviculture Hangzhou 311300 Zhejiang Peoples R China;

    Zhejiang A&

    F Univ State Key Lab Subtrop Silviculture Hangzhou 311300 Zhejiang Peoples R China;

    Zhejiang A&

    F Univ State Key Lab Subtrop Silviculture Hangzhou 311300 Zhejiang Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 农作物;
  • 关键词

    Torreya grandis; Transcriptome; Sciadonic acid; Delta(6)-elongase; Delta(5)-desaturase;

    机译:Torreya Grandis;转录组;Sciadonic acid;Delta(6)-Elongase;Delta(5)-Desacuase;

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