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首页> 外文期刊>Plant Molecular Biology >Metabolite Profiling Reveals a Role for Atypical Cinnamyl Alcohol Dehydrogenase CAD1 in the Synthesis of Coniferyl Alcohol in Tobacco Xylem
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Metabolite Profiling Reveals a Role for Atypical Cinnamyl Alcohol Dehydrogenase CAD1 in the Synthesis of Coniferyl Alcohol in Tobacco Xylem

机译:代谢物分析揭示了非典型肉桂醇脱氢酶CAD1在烟草木质部中的针叶树醇合成中的作用。

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摘要

In angiosperms, lignin is built from two main monomers, coniferyl and sinapyl alcohol, which are incorporated respectively as G and S units in the polymer. The last step of their synthesis has so far been considered to be performed by a family of dimeric cinnamyl alcohol dehydrogenases (CAD2). However, previous studies on Eucalyptus gunnii xylem showed the presence of an additional, structurally unrelated, monomeric CAD form named CAD1. This form reduces coniferaldehyde to coniferyl alcohol, but is inactive on sinapaldehyde. In this paper, we report the functional characterization of CAD1 in tobacco (Nicotiana tabacum L.). Transgenic tobacco plants with reduced CAD1 expression were obtained through an RNAi strategy. These plants displayed normal growth and development, and detailed biochemical studies were needed to reveal a role for CAD1. Lignin analyses showed that CAD1 down-regulation does not affect Klason lignin content, and has a moderate impact on G unit content of the non-condensed lignin fraction. However, comparative metabolic profiling of the methanol-soluble phenolic fraction from basal xylem revealed significant differences between CAD1 down-regulated and wild-type plants. Eight compounds were less abundant in CAD1 down-regulated lines, five of which were identified as dimers or trimers of monolignols, each containing at least one moiety derived from coniferyl alcohol. In addition, 3-trans-caffeoyl quinic acid accumulated in the transgenic plants. Together, our results support a significant contribution of CAD1 to the synthesis of coniferyl alcohol in planta, along with the previously characterized CAD2 enzymes.
机译:在被子植物中,木质​​素由两种主要单体-松柏醇和芥子醇组成,它们分别作为G和S单元掺入聚合物中。迄今为止,它们合成的最后一步被认为是由二聚肉桂醇脱氢酶(CAD2)家族进行的。但是,以前对桉木木质部的研究表明存在名为CAD1的另一种结构上不相关的单体CAD形式。这种形式将松柏醛还原为松柏醇,但对芥子醛无活性。在本文中,我们报告了烟草(Nicotiana tabacum L.)中CAD1的功能表征。通过RNAi策略获得了CAD1表达降低的转基因烟草植物。这些植物表现出正常的生长和发育,需要详细的生化研究来揭示CAD1的作用。木质素分析表明,CAD1下调不会影响Klason木质素含量,对非缩合木质素馏分的G单位含量具有中等影响。但是,从基础木质部的甲醇可溶性酚类馏分的比较代谢谱分析显示,CAD1下调植物和野生型植物之间存在显着差异。 8种化合物在CAD1下调谱系中含量较低,其中5种被鉴定为单木酚的二聚体或三聚体,每一种均包含至少一个衍生自松柏醇的部分。另外,3-反式咖啡酰奎尼酸在转基因植物中积累。总之,我们的研究结果支持了CAD1对植物中针叶醇合成的重大贡献,以及先前表征的CAD2酶。

著录项

  • 来源
    《Plant Molecular Biology》 |2005年第5期|753-769|共17页
  • 作者单位

    UMR UPS/CNRS 5546 “Surfaces Cellulaires et Signalisation chez les Végétaux” Pôle de Biotechnologie Végétale;

    Department of Plant Systems Biology Flanders Interuniversity Institute for Biotechnology (VIB) Ghent University;

    UMR UPS/CNRS 5546 “Surfaces Cellulaires et Signalisation chez les Végétaux” Pôle de Biotechnologie Végétale;

    Department of Plant Systems Biology Flanders Interuniversity Institute for Biotechnology (VIB) Ghent University;

    UMR UPS/CNRS 5546 “Surfaces Cellulaires et Signalisation chez les Végétaux” Pôle de Biotechnologie VégétaleInstitute of Plant Biology University of Zürich;

    UMR UPS/CNRS 5546 “Surfaces Cellulaires et Signalisation chez les Végétaux” Pôle de Biotechnologie Végétale;

    Max-Planck Institute of Molecular Plant Physiology;

    Department of Plant Systems Biology Flanders Interuniversity Institute for Biotechnology (VIB) Ghent University;

    UMR UPS/CNRS 5546 “Surfaces Cellulaires et Signalisation chez les Végétaux” Pôle de Biotechnologie Végétale;

    Department of Plant Systems Biology Flanders Interuniversity Institute for Biotechnology (VIB) Ghent University;

    UMR UPS/CNRS 5546 “Surfaces Cellulaires et Signalisation chez les Végétaux” Pôle de Biotechnologie Végétale;

    UMR UPS/CNRS 5546 “Surfaces Cellulaires et Signalisation chez les Végétaux” Pôle de Biotechnologie Végétale;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    cinnamyl alcohol dehydrogenase; coniferyl alcohol; lignin; xylem;

    机译:肉桂醇脱氢酶;松柏醇;木质素;木质部;

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