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液泡膜转运蛋白 OsVIT1 和 OsVIT2 调节水稻中旗叶和种子之间的铁转运。

Vacuolar membrane transporters OsVIT1 and OsVIT2 modulate iron translocation between flag leaves and seeds in rice.

机构信息

National Key Laboratory of Plant Molecular Genetics and National Center for Plant Gene Research (Shanghai), Institute of Plant Physiology and Ecology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Shanghai 200032, China.

出版信息

Plant J. 2012 Nov;72(3):400-10. doi: 10.1111/j.1365-313X.2012.05088.x. Epub 2012 Aug 3.

Abstract

The plant vacuole is an important organelle for storing excess iron (Fe), though its contribution to increasing the Fe content in staple foods remains largely unexplored. In this study we report the isolation and functional characterization of two rice genes OsVIT1 and OsVIT2, orthologs of the Arabidopsis VIT1. Transient expression of OsVIT1:EGFP and OsVIT2:EGFP protein fusions revealed that OsVIT1 and OsVIT2 are localized to the vacuolar membrane. Ectopic expression of OsVIT1 and OsVIT2 partially rescued the Fe(2+) - and Zn(2+) -sensitive phenotypes in yeast mutant Δccc1 and Δzrc1, and further increased vacuolar Fe(2+) , Zn(2+) and Mn(2+) accumulation. These data together suggest that OsVIT1 and OsVIT2 function to transport Fe(2+) , Zn(2+) and Mn(2+) across the tonoplast into vacuoles in yeast. In rice, OsVIT1 and OsVIT2 are highly expressed in flag leaf blade and sheath, respectively, and in contrast to OsVIT1, OsVIT2 is highly responsive to Fe treatments. Interestingly, functional disruption of OsVIT1 and OsVIT2 leads to increased Fe/Zn accumulation in rice seeds and a corresponding decrease in the source organ flag leaves, indicating an enhanced Fe/Zn translocation between source and sink organs, which might represent a novel strategy to biofortify Fe/Zn in staple foods.

摘要

植物液泡是储存过量铁(Fe)的重要细胞器,尽管其在增加主食中铁含量方面的作用在很大程度上尚未得到探索。在这项研究中,我们报告了两个水稻基因 OsVIT1 和 OsVIT2 的分离和功能表征,它们是拟南芥 VIT1 的同源物。瞬时表达 OsVIT1:EGFP 和 OsVIT2:EGFP 蛋白融合显示 OsVIT1 和 OsVIT2 定位于液泡膜上。OsVIT1 和 OsVIT2 的异位表达部分挽救了酵母突变体 Δccc1 和 Δzrc1 中 Fe(2+)和 Zn(2+)敏感表型,并进一步增加了液泡中 Fe(2+)、Zn(2+)和 Mn(2+)的积累。这些数据共同表明,OsVIT1 和 OsVIT2 能够将 Fe(2+)、Zn(2+)和 Mn(2+)跨液泡膜转运到酵母的液泡中。在水稻中,OsVIT1 和 OsVIT2 分别在旗叶叶片和叶鞘中高度表达,与 OsVIT1 相反,OsVIT2 对 Fe 处理高度响应。有趣的是,OsVIT1 和 OsVIT2 的功能缺失导致水稻种子中 Fe/Zn 积累增加,而源器官旗叶相应减少,表明源器官和汇器官之间 Fe/Zn 转运增强,这可能代表一种生物强化主食中 Fe/Zn 的新策略。

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