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Functional assessment of the Medicago truncatula NIP/LATD protein demonstrates that it is a high-affinity nitrate transporter

机译:ca藜苜蓿NIP / LATD蛋白的功能评估表明它是一种高亲和力的硝酸盐转运蛋白

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摘要

The Medicago truncatula NIP/LATD (for Numerous Infections and Polyphenolics/Lateral root-organ Defective) gene encodes a protein found in a clade of nitrate transporters within the large NRT1(PTR) family that also encodes transporters of dipeptides and tripeptides, dicarboxylates, auxin, and abscisic acid. Of the NRT1(PTR) members known to transport nitrate, most are lowaffinity transporters. Here, we show that M. truncatula nip/latd mutants are more defective in their lateral root responses to nitrate provided at low (250 mM) concentrations than at higher (5 mM) concentrations; however, nitrate uptake experiments showed no discernible differences in uptake in the mutants. Heterologous expression experiments showed that MtNIP/LATD encodes a nitrate transporter: expression in Xenopus laevis oocytes conferred upon the oocytes the ability to take up nitrate from the medium with high affinity, and expression of MtNIP/LATD in an Arabidopsis chl1(nrt1.1) mutant rescued the chlorate susceptibility phenotype. X. laevis oocytes expressing mutant Mtnip-1 and Mtlatd were unable to take up nitrate from the medium, but oocytes expressing the less severe Mtnip-3 allele were proficient in nitrate transport. M. truncatula nip/latd mutants have pleiotropic defects in nodulation and root architecture. Expression of the Arabidopsis NRT1.1 gene in mutant Mtnip-1 roots partially rescued Mtnip-1 for root architecture defects but not for nodulation defects. This suggests that the spectrum of activities inherent in AtNRT1.1 is different from that possessed by MtNIP/LATD, but it could also reflect stability differences of each protein in M. truncatula. Collectively, the data show that MtNIP/LATD is a high-affinity nitrate transporter and suggest that it could have another function.
机译:ca藜苜蓿NIP / LATD(用于多种感染和多酚/侧根器官缺损)基因编码在大型NRT1(PTR)家族的硝酸盐转运蛋白进化枝中发现的蛋白质,该蛋白质还编码二肽和三肽,二羧酸盐,生长素的转运蛋白和脱落酸。在已知转运硝酸盐的NRT1(PTR)成员中,大多数是低亲和力转运蛋白。在这里,我们显示了M. truncatula nip / latd突变体对低浓度(250 mM)提供的硝酸盐的侧向根响应比较高浓度(5 mM)存在更多的缺陷。然而,硝酸盐吸收实验表明突变体的吸收没有明显差异。异源表达实验表明,MtNIP / LATD编码硝酸盐转运蛋白:非洲爪蟾卵母细胞中的表达赋予卵母细胞以高亲和力从培养基吸收硝酸盐的能力,并在拟南芥chl1(nrt1.1)中表达MtNIP / LATD。突变体挽救了氯酸盐敏感性表型。表达突变型Mtnip-1和Mtlatd的X.laevis卵母细胞无法从培养基中吸收硝酸盐,但是表达不太严重的Mtnip-3等位基因的卵母细胞则能够很好地转运硝酸盐。 truncatula nip / latd突变体在根瘤和根结构上具有多效性缺陷。突变体Mtnip-1根中拟南芥NRT1.1基因的表达部分拯救了Mtnip-1根结构缺陷,但没有根瘤缺陷。这表明AtNRT1.1固有的活性谱不同于MtNIP / LATD所具有的谱,但它也可以反映截枝分枝杆菌中每种蛋白的稳定性差异。总体而言,数据表明MtNIP / LATD是一种高亲和力的硝酸盐转运蛋白,提示它可能具有其他功能。

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