首页> 外文OA文献 >Whole-plant mineral partitioning throughout the life cycle in \u3ci\u3eArabidopsis thaliana\u3c/i\u3e ecotypes Columbia, Landsberg \u3ci\u3eerecta\u3c/i\u3e, Cape Verde Islands, and the mutant line \u3ci\u3eysl1ysl3\u3c/i\u3e
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Whole-plant mineral partitioning throughout the life cycle in \u3ci\u3eArabidopsis thaliana\u3c/i\u3e ecotypes Columbia, Landsberg \u3ci\u3eerecta\u3c/i\u3e, Cape Verde Islands, and the mutant line \u3ci\u3eysl1ysl3\u3c/i\u3e

机译:整个生命周期中的全植物矿物分配 在哥伦比亚,兰茨贝格的生态型生态学中的生物学 佛罗里达群岛和突变线\ u3ci \ u3eysl1ysl3

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摘要

Minimal information exists on whole-plant dynamics of mineral flow through Arabidopsis thaliana or on the source tissues responsible for mineral export to developing seeds. Understanding these phenomena in a model plant could help in the development of nutritionally enhanced crop cultivars. A whole-plant partitioning study, using sequential harvests, was conducted to characterize growth and mineral concentrations and contents of rosettes, cauline leaves, stems, immature fruit, mature fruit hulls, and seeds of three WT lines (Col-0, Ler, and Cvi) and one mutant line (Col-0::ysl1ysl3). Shoot mineral content increased throughout the life cycle for all minerals, although tissue-specific mineral partitioning differed between genotypes. In particular, iron (Fe), zinc (Zn), and copper (Cu) were aberrantly distributed in ysl1ysl3. Remobilization was observed for several minerals from various tissues, including cauline leaves and silique hulls, but the amounts were generally far below the total mineral accretion observed in seeds. When YSL1 and YSL3 are nonfunctional, Cu, Fe, and Zn are not effectively remobilized from, or do not effectively pass through, leaf and maternal fruit tissues. With respect to seed mineral accretion in Arabidopsis, continued uptake and translocation of minerals to source tissues during seed fill are as important, if not more important, than remobilization of previously stored minerals.
机译:关于通过拟南芥的矿物质流的全植物动力学或负责矿物输出到发育中种子的来源组织的信息很少。了解示范植物中的这些现象可能有助于开发营养增强型作物品种。使用连续收获进行了整株植物分配研究,以表征生长和矿物质浓度以及莲座丛,茎生叶,茎,未成熟果实,成熟果壳和三种WT系(Col-0,Ler和Cvi)和一个突变体系(Col-0 :: ysl1ysl3)。尽管不同基因型的组织特异性矿物质分配不同,但所有矿物质的整个生命周期中地上部矿物质含量均增加。特别是,铁(Fe),锌(Zn)和铜(Cu)异常分布在ysl1ysl3中。观察到了来自各种组织的几种矿物质的迁移,包括茎生植物叶片和角果壳,但其含量通常远低于种子中观察到的总矿物质积聚。当YSL1和YSL3不起作用时,Cu,Fe和Zn无法有效地从叶和母果组织中迁移出来,或无法有效地通过。关于拟南芥中种子矿物质的积聚,在种子填充过程中持续吸收和转运矿物质至来源组织与动员先前储存的矿物质同样重要,甚至更为重要。

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