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A Vacuolar Phytosiderophore Transporter Alters Iron and Zinc Accumulation in Polished Rice Grains

机译:液泡植物铁载体转运改变了米粒中铁和锌的积累

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摘要

Essential metals, such as iron (Fe) and zinc (Zn), in grains are important sources for seed germination and nutritional requirements, but the molecular mechanisms underlying their loading into grains are poorly understood. Recently, nodes in rice (Oryza sativa) were reported to play an important role in the preferential distribution of mineral elements to the grains. In this study, we functionally characterized a rice gene highly expressed in nodes, OsVMT (VACUOLAR MUGINEIC ACID TRANSPORTER), belonging to a major facilitator superfamily. OsVMT is highly expressed in the parenchyma cell bridges of node I, where Fe and Zn are highly deposited. The expression of OsVMT was induced by Fe deficiency in the roots but not in the shoot basal region and uppermost node. OsVMT localized to the tonoplast and showed efflux transport activity for 2′-deoxymugineic acid (DMA). At the vegetative stage, knockout of OsVMT resulted in decreased DMA but increased ferric Fe in the root cell sap. As a result, the concentration of DMA in the xylem sap increased but that of ferric Fe decreased in the xylem sap in the mutants. In the polished rice grain, the mutants accumulated 1.8- to 2.1-fold, 1.5- to 1.6-fold, and 1.4- to 1.5-fold higher Fe, Zn, and DMA, respectively, than the wild type. Taken together, our results indicate that OsVMT is involved in sequestering DMA into the vacuoles and that knockout of this gene enhances the accumulation of Fe and Zn in polished rice grains through DMA-increased solubilization of Fe and Zn deposited in the node.
机译:谷物中的必需金属(例如铁(Fe)和锌(Zn))是种子发芽和营养需求的重要来源,但对其负载在谷物中的分子机制了解甚少。最近,据报道水稻中的结节在矿物元素向谷物的优先分配中起着重要作用。在这项研究中,我们在功能上表征了一个在节点OsVMT(VACULAR MUGINEIC ACID TRANSPORTER)中高表达的水稻基因,该基因属于主要的促进子超家族。 OsVMT在结点I的实质细胞桥中高度表达,其中Fe和Zn高度沉积。缺铁诱导根部而不是枝条基部区域和最上层结节诱导OsVMT的表达。 OsVMT定位于液泡膜,对2'-脱氧ugineic酸(DMA)具有外排转运活性。在营养阶段,敲除OsVMT导致DMA降低,但根细胞汁液中的三价铁含量增加。结果,在突变体的木质部汁液中,木质部汁液中的DMA浓度增加,而铁的Fe浓度降低。在精制稻谷中,突变体的铁,锌和DMA的积累量分别比野生型高1.8至2.1倍,1.5至1.6倍和1.4至1.5倍。两者合计,我们的结果表明OsVMT参与将DMA螯合到液泡中,并且该基因的敲除通过DMA增加了沉积在结点中的Fe和Zn的增溶作用而增强了精米颗粒中Fe和Zn的积累。

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