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首页> 外文期刊>American journal of enology & viticulture >Grape Berry Vacuole: A Complex and Heterogeneous Membrane System Specialized in the Accumulation of Solutes
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Grape Berry Vacuole: A Complex and Heterogeneous Membrane System Specialized in the Accumulation of Solutes

机译:葡萄浆果液泡:专门用于溶质积累的复杂且异质的膜系统。

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摘要

Vacuoles fulfill highly specialized functions depending on cell type and tissue and plant developmental stage. This complex and dynamic organelle is the main reservoir of grape berry cells, playing a major role during fruit development and ripening. Berry development is accompanied by modifications in size, composition, color, texture, flavor, and pathogen susceptibility, primarily because of changes in vacuolar content. Most aroma and flavor compounds are not evenly distributed in the berry, and the number and type of vacuoles may vary depending on the tissue (skin, flesh, and seeds). Together with the lytic and protein storage vacuoles widely distributed in plant cells, phenolic vacuoles are also implicated in cellular storage in grape cells. After veraison, when grape berry growth exclusively results from cell enlargement, tonoplast transporter proteins mediate a massive sugar import and water intake into the vacuole, leading to a large vacuolar expansion. The V-ATPase and V-PPase pumps create a proton electrochemical gradient across the tonoplast, which, in turn, energizes the uptake of charged and uncharged solutes. Several tonoplast proteins mediating the uptake of sugars, organic acids, water, ions, and anthocyanins have been cloned and some have been functionally characterized. The present review focuses on the storage function of vacuoles and on their structure and diversity in relation to development and ripening of the grape berry
机译:液泡根据细胞类型和组织以及植物发育阶段来实现高度专门化的功能。这种复杂而动态的细胞器是葡萄浆果细胞的主要贮藏库,在果实发育和成熟过程中起着重要作用。浆果发育伴随着大小,组成,颜色,质地,风味和病原体敏感性的改变,这主要是由于液泡含量的变化。大多数香气和风味化合物在浆果中分布不均,并且液泡的数量和类型可能取决于组织(皮肤,果肉和种子)。连同广泛分布在植物细胞中的裂解液和蛋白质贮藏液泡,酚液空泡也与葡萄细胞中的细胞贮藏有关。检验之后,当葡萄浆果的生长完全是由于细胞膨胀而引起的时,液泡膜转运蛋白会介导大量的糖分进口和水进入液泡,从而导致液泡大量膨胀。 V-ATPase和V-PPase泵在液泡膜上形成质子电化学梯度,从而激发带电和不带电溶质的吸收。已经克隆了几种介导糖,有机酸,水,离子和花青素摄取的液泡膜蛋白,并且已经对某些功能进行了表征。本综述着重于空泡的贮藏功能及其与葡萄浆果发育和成熟有关的结构和多样性。

著录项

  • 来源
    《American journal of enology & viticulture》 |2011年第3期|p.270-278|共9页
  • 作者单位

    Centra de Investigate) e de Tecnologias Agro-Ambientais e Biologicas(CITAB), Quinta de Prados, 5001-801 Vila Real, Portugal Departamento de Biologia, Universidade do Minho, Campus de Gualtar, 4710-057 Braga, Portugal;

    Centra de Investigate) e de Tecnologias Agro-Ambientais e Biologicas(CITAB), Quinta de Prados, 5001-801 Vila Real, Portugal Departamento de Biologia, Universidade do Minho, Campus de Gualtar, 4710-057 Braga, Portugal;

    UMR 1287 Ecophysiology and Grape Functional Genomics, University of Bordeaux, INRA, Institut des Sciences de la Vigne et du Vin, Domaine de la Grande Ferrade, 210 chemin de Leysotte, 33883 Villenave d'Ornon, France;

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

    grape berry; vacuole; tonoplast transporters; sugars; organic acids; phenolics; aroma compounds;

    机译:葡萄浆果空泡液泡膜转运蛋白;糖;有机酸酚醛树脂香气化合物;

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