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首页> 外文期刊>Food Chemistry >Mechanical stress rapidly induces E-resveratrol and E-piceatannol biosynthesis in grape canes stored as a freshly-pruned byproduct
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Mechanical stress rapidly induces E-resveratrol and E-piceatannol biosynthesis in grape canes stored as a freshly-pruned byproduct

机译:机械应力迅速导致葡萄藤中的E-白藜芦醇和E-皮二酚生物合成,这是新鲜修剪的副产品。

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摘要

Grape canes represent a promising source of bioactive phytochemicals. However the stabilization of the raw material after pruning remains challenging. We recently reported the induction of stilbenoid metabolism after winter pruning including a strong accumulation of E-resveratrol and E-piceatannol during the first six weeks of storage. In the present study, the effect of mechanical wounding on freshly-pruned canes was tested to increase the induction of stilbenoid metabolism. Cutting the grape canes in short segments immediately after pruning triggered a transient expression of phenylalanine ammonia-lyase (PAL) and stilbene synthase (STS) genes, followed by a rapid accumulation of E-resveratrol and E-piceatannol. The degree of stilbenoid induction was related to the intensity of mechanical wounding. Data suggest that a global defense response is triggered involving jasmonate signaling, PR proteins and stilbenoid metabolism. Mechanical wounding of freshly-pruned canes drastically shortens the time required to reach maximal stilbenoid accumulation from 6 to 2 weeks.
机译:葡萄藤是有前途的生物活性植物化学物质的来源。然而,修剪后原材料的稳定化仍然具有挑战性。我们最近报道了冬季修剪后诱导类胡萝卜素的代谢,包括在储存的前六周中大量积累了白藜芦醇和E-皮三醇。在本研究中,对刚修剪的甘蔗进行机械创伤的效果进行了测试,以增加对类胡萝卜素代谢的诱导作用。修剪后立即将葡萄藤切成短段会触发苯丙氨酸氨裂合酶(PAL)和二苯乙烯合酶(STS)基因的瞬时表达,然后迅速积聚E-白藜芦醇和E-piceatannol。二苯乙烯类化合物的诱导程度与机械伤的强度有关。数据表明,涉及茉莉酸酯信号传导,PR蛋白和类胡萝卜素代谢的整体防御反应被触发。对刚修剪过的甘蔗进行机械伤可大大缩短达到最大类胡萝卜素积累所需的时间,从6周缩短至2周。

著录项

  • 来源
    《Food Chemistry》 |2018年第1期|1022-1027|共6页
  • 作者单位

    Univ Francois Rabelais Tours, EA Biomol & Biotechnol Vegetales 2106, UFR Sci Pharmaceut, 31 Av Monge, F-37200 Tours, France;

    Univ Francois Rabelais Tours, EA Biomol & Biotechnol Vegetales 2106, UFR Sci Pharmaceut, 31 Av Monge, F-37200 Tours, France;

    Univ Francois Rabelais Tours, EA Biomol & Biotechnol Vegetales 2106, UFR Sci Pharmaceut, 31 Av Monge, F-37200 Tours, France;

    Univ Francois Rabelais Tours, EA Biomol & Biotechnol Vegetales 2106, UFR Sci Pharmaceut, 31 Av Monge, F-37200 Tours, France;

    Univ Francois Rabelais Tours, EA Biomol & Biotechnol Vegetales 2106, UFR Sci Pharmaceut, 31 Av Monge, F-37200 Tours, France;

    Univ Angers, Grp Etud Interact Hote Pathogene, Angers, France;

    Univ Francois Rabelais Tours, EA Biomol & Biotechnol Vegetales 2106, UFR Sci Pharmaceut, 31 Av Monge, F-37200 Tours, France;

    Univ Francois Rabelais Tours, EA Biomol & Biotechnol Vegetales 2106, UFR Sci Pharmaceut, 31 Av Monge, F-37200 Tours, France;

    Univ Francois Rabelais Tours, EA Biomol & Biotechnol Vegetales 2106, UFR Sci Pharmaceut, 31 Av Monge, F-37200 Tours, France;

    Univ Francois Rabelais Tours, EA Biomol & Biotechnol Vegetales 2106, UFR Sci Pharmaceut, 31 Av Monge, F-37200 Tours, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    E-resveratrol; E-piceatannol; Grape canes; Byproduct; Stress induction; Stilbenoid biosynthesis; Mechanical wounding;

    机译:E-白藜芦醇;E-皮三醇;葡萄棒;副产物;应力诱导;类胡萝卜素的生物合成;机械损伤;

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