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Symplasmic phloem unloading and radial post-phloem transport via vascular rays in tuberous roots of Manihot esculenta

机译:i鱼块根中的对称韧皮部卸载和径向韧皮部通过血管射线的运输

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摘要

Cassava (Manihot esculenta) is one of the most important staple food crops worldwide. Its starchy tuberous roots supply over 800 million people with carbohydrates. Yet, surprisingly little is known about the processes involved in filling of those vital storage organs. A better understanding of cassava carbohydrate allocation and starch storage is key to improving storage root yield. Here, we studied cassava morphology and phloem sap flow from source to sink using transgenic pAtSUC2::GFP plants, the phloem tracers esculin and 5(6)-carboxyfluorescein diacetate, as well as several staining techniques. We show that cassava performs apoplasmic phloem loading in source leaves and symplasmic unloading into phloem parenchyma cells of tuberous roots. We demonstrate that vascular rays play an important role in radial transport from the phloem to xylem parenchyma cells in tuberous roots. Furthermore, enzymatic and proteomic measurements of storage root tissues confirmed high abundance and activity of enzymes involved in the sucrose synthase-mediated pathway and indicated that starch is stored most efficiently in the outer xylem layers of tuberous roots. Our findings form the basis for biotechnological approaches aimed at improved phloem loading and enhanced carbohydrate allocation and storage in order to increase tuberous root yield of cassava.
机译:木薯(Manihot esculenta)是世界上最重要的主食作物之一。它的块根状淀粉为超过8亿人提供碳水化合物。然而,令人惊讶的是,关于这些重要的储存器官的填充过程所知甚少。更好地了解木薯碳水化合物的分配和淀粉的贮藏是提高贮藏根产量的关键。在这里,我们研究了使用转基因pAtSUC2 :: GFP植物,韧皮部示踪剂esculin和5(6)-羧基荧光素二乙酸酯,以及几种染色技术从源到汇的木薯形态和韧皮部汁液流动。我们显示木薯在源叶中执行无质韧皮部韧皮部加载和结节根部的韧皮部薄壁组织细胞中的同质卸载。我们证明血管射线在结节根中从韧皮部到木质部薄壁细胞的径向运输中起重要作用。此外,对贮藏根组织的酶促和蛋白质组学测定证实了蔗糖合酶介导的途径中涉及的酶的丰度和活性很高,表明淀粉在块根根的外木质部层中的贮藏效率最高。我们的发现为旨在改善韧皮部负载和增强碳水化合物分配和储存以增加木薯块根产量的生物技术方法奠定了基础。

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