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The HvNramp5 Transporter Mediates Uptake of Cadmium and Manganese But Not Iron

机译:HvNramp5转运蛋白介导镉和锰的吸收但不介导铁

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摘要

The Natural Resistance Associated Macrophage Protein (Nramp) represents a transporter family for metal ions in all organisms. Here, we functionally characterized a member of Nramp family in barley (Hordeum vulgare), HvNramp5. This member showed different expression patterns, transport substrate specificity, and cellular localization from its close homolog in rice (Oryza sativa), OsNramp5, although HvNramp5 was also localized to the plasma membrane. HvNramp5 was mainly expressed in the roots and its expression was not affected by Cd and deficiency of Zn, Cu, and Mn, but slightly up-regulated by Fe deficiency. Spatial expression analysis showed that the expression of HvNramp5 was higher in the root tips than that in the basal root regions. Furthermore, analysis with laser microdissection revealed higher expression of HvNramp5 in the outer root cell layers. HvNramp5 showed transport activity for both Mn2+ and Cd2+, but not for Fe2+ when expressed in yeast. Immunostaining with a HvNramp5 antibody showed that this protein was localized in the root epidermal cells without polarity. Knockdown of HvNramp5 in barley resulted in a significant reduction in the seedling growth at low Mn supply, but this reduction was rescued at high Mn supply. The concentration of Mn and Cd, but not other metals including Cu, Zn, and Fe, was decreased in both the roots and shoots of knockdown lines compared with the wild-type barley. These results indicate that HvNramp5 is a transporter required for uptake of Mn and Cd, but not for Fe, and that barley has a distinct uptake system from rice.
机译:天然抗性相关的巨噬细胞蛋白(Nramp)代表所有生物中金属离子的转运蛋白家族。在这里,我们在功能上鉴定了大麦(Hordeum vulgare)Nvamp5的Nramp家族成员。尽管HvNramp5也定位在质膜上,但该成员在水稻(Oryza sativa)的近亲同源物中显示出不同的表达模式,转运底物特异性和细胞定位,而OsNramp5则是如此。 HvNramp5主要在根中表达,其表达不受镉和锌,铜和锰缺乏的影响,但受铁缺乏的影响略有上调。空间表达分析表明,HvNramp5在根尖的表达高于基部根区域。此外,激光显微切割分析显示,HvNramp5在外根细胞层中表达更高。当在酵母中表达时,HvNramp5对Mn 2 + 和Cd 2 + 都具有转运活性,而对Fe 2 + 则没有转运活性。用HvNramp5抗体进行免疫染色显示,该蛋白位于根表皮细胞中,没有极性。大麦中HvNramp5的敲低导致幼苗生长在低锰供应下显着减少,但是在高锰供应下可以挽救这种减少。与野生型大麦相比,击倒品系的根和枝条中的Mn和Cd浓度均降低,但其他金属(包括Cu,Zn和Fe)并未降低。这些结果表明,HvNramp5是摄取Mn和Cd所需的转运蛋白,而不是Fe所需的转运蛋白,并且大麦具有与水稻不同的吸收系统。

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