The Arabidopsis AtOPT3 Protein Functions in Metal Homeostasis and Movement of Iron to Developing Seeds
Open Access
- 14 December 2007
- journal article
- Published by Oxford University Press (OUP) in Plant Physiology
- Vol. 146 (2) , 323-324
- https://doi.org/10.1104/pp.107.108183
Abstract
The Arabidopsis thaliana AtOPT3 belongs to the oligopeptide transporter (OPT) family, a relatively poorly characterized family of peptide/modified peptide transporters found in archebacteria, bacteria, fungi, and plants. A null mutation in AtOPT3 resulted in embryo lethality, indicating an essential role for AtOPT3 in embryo development. In this article, we report on the isolation and phenotypic characterization of a second AtOPT3 mutant line, opt3-2, harboring a T-DNA insertion in the 5′ untranslated region of AtOPT3. The T-DNA insertion in the AtOPT3 promoter resulted in reduced but sufficient AtOPT3 expression to allow embryo formation in opt3-2 homozygous seeds. Phenotypic analyses of opt3-2 plants revealed three interesting loss-of-function phenotypes associated with iron metabolism. First, reduced AtOPT3 expression in opt3-2 plants resulted in the constitutive expression of root iron deficiency responses regardless of exogenous iron supply. Second, deregulation of root iron uptake processes in opt3-2 roots resulted in the accumulation of very high levels of iron in opt3-2 tissues. Hyperaccumulation of iron in opt3-2 resulted in the formation of brown necrotic areas in opt3-2 leaves and was more pronounced during the seed-filling stage. Third, reduced AtOPT3 expression resulted in decreased accumulation of iron in opt3-2 seeds. The reduced accumulation of iron in opt3-2 seeds is especially noteworthy considering the excessively high levels of accumulated iron in other opt3-2 tissues. AtOPT3, therefore, plays a critical role in two important aspects of iron metabolism, namely, maintenance of whole-plant iron homeostasis and iron nutrition of developing seeds.Keywords
This publication has 76 references indexed in Scilit:
- Nitrate transporters and peptide transportersFEBS Letters, 2007
- Mining iron: Iron uptake and transport in plantsPublished by Wiley ,2007
- PIC1, an Ancient Permease in Arabidopsis Chloroplasts, Mediates Iron TransportPlant Cell, 2007
- Mutations in Arabidopsis Yellow Stripe-Like1 and Yellow Stripe-Like3 Reveal Their Roles in Metal Ion Homeostasis and Loading of Metal Ions in SeedsPlant Physiology, 2006
- Enigma Variations for Peptides and Their Transporters in Higher PlantsAnnals of Botany, 2006
- Trichomes of Tobacco Excrete Zinc as Zinc-Substituted Calcium Carbonate and Other Zinc-Containing CompoundsPlant Physiology, 2006
- Genome-Wide Insertional Mutagenesis of Arabidopsis thalianaScience, 2003
- An oligopeptide transport gene from Candida albicansMicrobiology, 1997
- Genetic evidence that induction of root Fe(III) chelate reductase activity is necessary for iron uptake under iron deficiency†The Plant Journal, 1996
- Physiological Characterization of a Single-Gene Mutant of Pisum sativum Exhibiting Excess Iron AccumulationPlant Physiology, 1990