Identification and Characterization of Several New Members of the ZIP Family of Metal Ion Transporters in Medicago Truncatula

被引:0
作者
Ana-Flor López-Millán
Danielle R. Ellis
Michael A. Grusak
机构
[1] Baylor College of Medicine,Department of Pediatrics, USDA/ARS Children's Nutrition Research Center
来源
Plant Molecular Biology | 2004年 / 54卷
关键词
gene expression; metals; plasma membrane; transporters; genes;
D O I
暂无
中图分类号
学科分类号
摘要
To broaden our understanding of micronutrient metal transport in plants, we have identified cDNAs for six new metal transporters in the model legume Medicago truncatula. All of the predicted proteins have high similarity to the ZIP protein family, and have been designated MtZIP1, MtZIP3, MtZIP4, MtZIP5, MtZIP6, and MtZIP7. The six predicted proteins ranged from 350 to 372 amino acids in length; sequence analysis revealed that all proteins contained eight transmembrane domains and the highly conserved ZIP signature motif. Most of the proteins also exhibited a histidine-rich region in the variable sequence between transmembrane domains III and IV. When MtZIPs were transformed into appropriate metal-uptake defective yeast mutants and grown on metal-limited media, MtZIP1, MtZIP5, and MtZIP6 proteins restored yeast growth on Zn-limited media, MtZIP4 and MtZIP7 proteins restored yeast growth on Mn-limited media, and MtZIP3, MtZIP5, and MtZIP6 proteins restored yeast growth on Fe-limited media. Therefore, we conclude that these proteins function as metal transporters in Medicago truncatula. The expression pattern for each gene was studied by semi-quantitative RT-PCR in roots and leaves from plants grown under various metal supplies. MtZIP1 transcripts were only detected in Zn-deficient roots and leaves. MtZIP3 and MtZIP4 expression was down regulated in leaves from Mn- and Fe-deficient plants and appeared to be upregulated under Zn-deficient conditions in both roots and leaves. MtZIP5 was upregulated in leaves under Zn and Mn deficiency. The expression of MtZIP6 and MtZIP7 was unaffected by the metal supply, at least in root and leaf tissues. Characterizing these proteins in a single organism will allow us to understand the interplay between various ZIP genes, and the role they play in the regulation/execution of plant metal homeostasis.
引用
收藏
页码:583 / 596
页数:13
相关论文
共 233 条
[1]  
Altschul S.F.(1990)Protein database searches for multiple alignments Proc. Natl. Acad. Sci. USA 87 5509-5513
[2]  
Lipman D.J.(2001)Elevated expression of metal transporter genes in three accessions of the metal hyperaccumulator Plant Cell Environ. 24 217-226
[3]  
Assuncao A.(1995)Differential toxicity of heavy metals is partly related to a loss of preferential extraplasmic compartmentation; a comparison of Cd-, Mo-, Ni-and Znstress New Phytol. 125 403-409
[4]  
Da Costa Martins P.(2003)A plasma membrane zinc transporter from Plant Mol. Biol. 52 1077-1088
[5]  
De Folter S.(1996) is up-regulated in roots by Zn fertilization, yet downregulated by arbuscular mycorrhizal colonization Eur. J. Biochem. 241 779-786
[6]  
Vooijs R.(1994)Computational method to predict mitochondrially imported proteins and their targeting sequences Comput. Appl. Biosci. 10 685-686
[7]  
Aarts G.M.(1998)TopPred II: an improved software for membrane protein structure predictions Plant Physiol. 116 1063-1072
[8]  
Brune A.(2002)The role of iron-deficiency stress responses in stimulating heavy-metal transport in plants Plant Cell 14 1347-1357
[9]  
Dietz K.(2000)Expression of the IRT1 metal transporter is controlled by metals at the levels of transcript and protein accumulation Biochem. J. 347 749-755
[10]  
Burleigh S.H.(2001)Involvement of NRAMP1 from Plant Mol. Biol. 45 437-448