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首页> 外文期刊>Planta >Magnesium deficiency in sugar beets alters sugar partitioning and phloem loading in young mature leaves
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Magnesium deficiency in sugar beets alters sugar partitioning and phloem loading in young mature leaves

机译:甜菜中的镁缺乏会改变成熟叶片中糖的分配和韧皮部的含量

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摘要

Magnesium deficiency has been reported to affect plant growth and biomass partitioning between root and shoot. The present work aims to identify how Mg deficiency alters carbon partitioning in sugar beet (Beta vulgaris L.) plants. Fresh biomass, Mg and sugar contents were followed in diverse organs over 20 days under Mg-sufficient and Mg-deficient conditions. At the end of the treatment, the aerial biomass, but not the root biomass, of Mg-deficient plants was lower compared to control plants. A clear inverse relationship between Mg and sugar contents in leaves was found. Mg deficiency promoted a marked increase in sucrose and starch accumulation in the uppermost expanded leaves, which also had the lowest content of Mg among all the leaves of the rosette. The oldest leaves maintained a higher Mg content. [14C]Sucrose labelling showed that sucrose export from the uppermost expanded leaves was inhibited. In contrast, sucrose export from the oldest leaves, which are close to, and export mainly to, the roots, was not restricted. In response to Mg deficiency, the BvSUT1 gene encoding a companion cell sucrose/H+ symporter was induced in the uppermost expanded leaves, but without further enhancement of sucrose loading into the phloem. The observed increase in BvSUT1 gene expression supports the idea that sucrose loading into the phloem is defective, resulting in its accumulation in the leaf.
机译:据报镁缺乏会影响植物的生长和根与芽之间的生物量分配。本工作旨在确定镁缺乏症如何改变甜菜(Beta vulgaris L.)植物中的碳分配。在镁充足和镁缺乏的条件下,在20天内跟踪不同器官中的新鲜生物量,镁和糖含量。在处理结束时,与对照植物相比,缺镁植物的空中生物量而不是根生物量较低。叶片中的镁和糖含量之间存在明显的反比关系。镁缺乏促进最上部膨胀叶片中蔗糖和淀粉积累的显着增加,在玫瑰花结的所有叶片中,镁的含量也最低。最老的叶子​​保持较高的镁含量。 [14 C]蔗糖标记显示蔗糖从最上层扩张叶片的出口受到抑制。相反,蔗糖从最接近其根部并且主要向根部出口的最老叶子中出口不受限制。响应于镁缺乏,在最上层扩张的叶片中诱导了编码伴侣细胞蔗糖/ H + 同向转运蛋白的BvSUT1基因,但蔗糖的负载量并未进一步增加。观察到的BvSUT1基因表达的增加支持了蔗糖加载到韧皮部中的缺陷,导致其在叶中积累的想法。

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  • 来源
    《Planta 》 |2005年第4期| 541-549| 共9页
  • 作者单位

    Laboratoire de Physiologie et de Génétique Moléculaire des Plantes Université Libre de BruxellesBioenergetics Laboratory University of GenevaBiology Department Colorado State University;

    Laboratoire de Physiologie et de Génétique Moléculaire des Plantes Université Libre de BruxellesCentre IRD de Montpellier;

    Laboratoire de Physiologie Biochimie et Biologie Moléculaire Végétales Unité Mixte de Recherches Centre National de la Recherche Scientifique 6161 Université de Poitiers;

    Bioenergetics Laboratory University of Geneva;

    Laboratoire de Physiologie Biochimie et Biologie Moléculaire Végétales Unité Mixte de Recherches Centre National de la Recherche Scientifique 6161 Université de Poitiers;

    Laboratoire de Physiologie et de Génétique Moléculaire des Plantes Université Libre de Bruxelles;

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

    Beta; Magnesium deficiency; Sugar transport; Mineral profile;

    机译:Beta;镁缺乏症;糖运输;矿物质特征;

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