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Characterization of 68Zn uptake, translocation, and accumulation into developing grains and young leaves of high Zn-density rice genotype*

机译:高锌密度基因型水稻对68Zn吸收,转运和积累到发育中的籽粒和幼叶中的特征*

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摘要

Zinc (Zn) is an essential micronutrient for humans, but Zn deficiency has become serious as equally as iron (Fe) and vitamin A deficiencies nowadays. Selection and breeding of high Zn-density crops is a suitable, cost-effective, and sustainable way to improve human health. However, the mechanism of high Zn density in rice grain is not fully understood, especially how Zn transports from soil to grains. Hydroponics experiments were carried out to compare Zn uptake and distribution in two different Zn-density rice genotypes using stable isotope technique. At seedling stage, IR68144 showed higher 68Zn uptake and transport rate to the shoot for the short-term, but no significant difference was observed in both genotypes for the long-term. Zn in xylem sap of IR68144 was consistently higher, and IR68144 exhibited higher Zn absorption ratio than IR64 at sufficient (2.0 µmol/L) or surplus (8.0 µmol/L) Zn supply level. IR64 and IR68144 showed similar patterns of 68Zn accumulation in new leaves at seedling stage and in developing grains at ripening stage, whereas 68Zn in new leaves and grains of IR68144 was consistently higher. These results suggested that a rapid root-to-shoot translocation and enhanced xylem loading capacity may be the crucial processes for high Zn density in rice grains.
机译:锌(Zn)是人类必需的微量营养素,但如今锌的缺乏与铁(Fe)和维生素A的缺乏一样严重。高锌密度作物的选择和育种是改善人类健康的一种合适,具有成本效益且可持续的方式。但是,水稻籽粒中高锌密度的机制尚未得到充分了解,尤其是锌如何从土壤转运到谷粒。利用稳定同位素技术进行了水培实验,比较了两种不同锌密度水稻基因型中锌的吸收和分布。在苗期,IR68144短期显示较高的68Zn吸收和向枝条的转运速率,但长期而言,两种基因型均未观察到显着差异。在充足的(2.0 µmol / L)或过量(8.0 µmol / L)的锌供应水平下,IR68144木质部汁液中的Zn始终较高,并且IR68144表现出比IR64高的锌吸收率。 IR64和IR68144在幼苗期的新叶和成熟期的籽粒中68Zn积累的模式相似,而IR68144的新叶和籽粒中68Zn的积累始终较高。这些结果表明,快速的从根到茎的移位和增强的木质部负载能力可能是稻谷中高锌密度的关键过程。

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