Thomine S, Wang R, Ward J M, Crawford N M, Schroeder J I
Department of Biology and Center for Molecular Genetics, University of California, San Diego, 9500 Gilman Drive, La Jolla, CA 92093-0116, USA.
Proc Natl Acad Sci U S A. 2000 Apr 25;97(9):4991-6. doi: 10.1073/pnas.97.9.4991.
Metal cation homeostasis is essential for plant nutrition and resistance to toxic heavy metals. Many plant metal transporters remain to be identified at the molecular level. In the present study, we have isolated AtNramp cDNAs from Arabidopsis and show that these genes complement the phenotype of a metal uptake deficient yeast strain, smf1. AtNramps show homology to the Nramp gene family in bacteria, yeast, plants, and animals. Expression of AtNramp cDNAs increases Cd(2+) sensitivity and Cd(2+) accumulation in yeast. Furthermore, AtNramp3 and AtNramp4 complement an iron uptake mutant in yeast. This suggests possible roles in iron transport in plants and reveals heterogeneity in the functional properties of Nramp transporters. In Arabidopsis, AtNramps are expressed in both roots and aerial parts under metal replete conditions. Interestingly, AtNramp3 and AtNramp4 are induced by iron starvation. Disruption of the AtNramp3 gene leads to slightly enhanced cadmium resistance of root growth. Furthermore, overexpression of AtNramp3 results in cadmium hypersensitivity of Arabidopsis root growth and increased accumulation of Fe, on Cd(2+) treatment. Our results show that Nramp genes in plants encode metal transporters and that AtNramps transport both the metal nutrient Fe and the toxic metal cadmium.
金属阳离子稳态对于植物营养和对有毒重金属的抗性至关重要。许多植物金属转运蛋白在分子水平上仍有待鉴定。在本研究中,我们从拟南芥中分离出AtNramp cDNA,并表明这些基因能够互补金属吸收缺陷型酵母菌株smf1的表型。AtNramp与细菌、酵母、植物和动物中的Nramp基因家族具有同源性。AtNramp cDNA的表达增加了酵母对Cd(2+)的敏感性和Cd(2+)积累。此外,AtNramp3和AtNramp4互补酵母中的铁吸收突变体。这表明它们在植物铁运输中可能发挥作用,并揭示了Nramp转运蛋白功能特性的异质性。在拟南芥中,AtNramp在金属充足条件下在根和地上部分均有表达。有趣的是,AtNramp3和AtNramp4受缺铁诱导。AtNramp3基因的破坏导致根部生长对镉的抗性略有增强。此外,AtNramp3的过表达导致拟南芥根部生长对镉超敏感,并且在Cd(2+)处理下铁的积累增加。我们的结果表明,植物中的Nramp基因编码金属转运蛋白,并且AtNramp既运输金属营养元素铁又运输有毒金属镉。