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首页> 外文期刊>Environmental and experimental botany >A novel plasma membrane-based NRAMP transporter contributes to Cd and Zn hyperaccumulation in Sedum alfredii Hance
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A novel plasma membrane-based NRAMP transporter contributes to Cd and Zn hyperaccumulation in Sedum alfredii Hance

机译:一种新型的基于血浆膜的NRAMP转运蛋白有助于Sedum Alfredii Hance的Cd和Zn高读数

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Sedum alfredii is a native Chinese plant species that belongs to the group of metal hyperaccumulators and can accumulate significant amounts of Cd and Zn in the shoot without detrimental effects on its growth and metabolism. Understanding the molecular basis of this process may be essential for both phytoremediation of contaminated soils and developing heavy metal-resistant crop species. In this work, we have focused on NRAMP (Natural Resistance-Associated Macrophage Protein) family proteins transporters as potential candidates conferring superior hyperaccumulating ability in this species and undertaken its functional characterization. The bioinformatic analysis showed that SaNRAMP1 from S. alfredii showed very low similarity to all the NRAMP proteins from Arabidopsis thaliana. SaNRAMP1 was highly expressed in the young tissues of the shoots of hyperaccumulating ecotype of S. alfredii. Fluorescence imaging and functional studies revealed that SaNRAMP1 was localized at the plasma membrane and could transport not only Cd and Mn but also Zn. The latter trait makes it rather different from most reported NRAMP transporters. Overexpressing of SaNRAMP1 in tobacco significantly increased Cd, Zn, Mn concentration in the shoot. Taken together, our data suggest that SaNRAMP1 is a novel NRAMP protein that plays a significant role in Cd and Zn accumulation in S. alfredii. The above findings may be essential for understanding the mechanisms of metal hyperaccumulation in plants and used to both improve heavy metal tolerance in cash crops and use the potential of hyperaccumulating species for phytoremediation purposes.
机译:Sedum Alfredii是一种祖国植物物种,属于金属高沉积物组,可以在拍摄中积累大量CD和Zn,而不会对其生长和新陈代谢产生不利影响。理解该过程的分子基础对于污染的土壤和发育重金属抗性作物物种的植物来说可能是必不可少的。在这项工作中,我们专注于NRAMP(自然抗性相关的巨噬细胞蛋白)家族蛋白质转运蛋白,作为潜在的候选者在该物种中赋予卓越的高沉重能力,并进行了其功能表征。生物信息分析表明,来自S.Alfredii的Sanramp1与来自拟南芥的所有NRAMP蛋白质相似。 Sanramp1在S.Alfredii的超令人垂涎的生态型射击的幼苗中高度表达。荧光成像和功能性研究表明,Sanramp1在质膜处定位,并且不仅可以运输CD和Mn,而且还可以运输Zn。后一种特质使其与大多数报告的NRAMP运输车相同。在烟草中的Sanramp1过度表达显着增加Cd,Zn,芽中的Mn浓度。我们的数据结合在一起,我们的数据表明Sanramp1是一种新的NRAMP蛋白,在S.Alfredii的CD和Zn积累中发挥着重要作用。上述发现对于了解植物中的金属高累积机制并用于改善现金作物中的重金属耐受性,并利用植物修复目的的高累计物种的潜力。

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