AtbHLH29 of Arabidopsis thaliana is a functional ortholog of tomato FER involved in controlling iron acquisition in strategy I plants
- 1 August 2005
- journal article
- Published by Springer Nature in Cell Research
- Vol. 15 (8) , 613-621
- https://doi.org/10.1038/sj.cr.7290331
Abstract
AtbHLH29 of Arabidopsis, encoding a bHLH protein, reveals a high similarity to the tomato FER which is proposed as a transcriptional regulator involved in controlling the iron deficiency responses and the iron uptake in tomato. For identification of its biological functions, AtbHLH29 was introduced into the genome of the tomato FER mutant T3238fer mediated by Agrobacterium tumefaciencs. Transgenic plants were regenerated and the stable integration of AtbHLH29 into their genomes was confirmed by Southern hybridization. Molecular analysis demonstrated that expression of the exogenous AtbHLH29 of Arabidopsis in roots of the FER mutant T3238fer enabled to complement the defect functions of FER. The transgenic plants regained the ability to activate the whole iron deficiency responses and showed normal growth as the wild type under iron-limiting stress. Our transformation data demonstrate that AtbHLH29 is a functional ortholog of the tomato FER and can completely replace FER in controlling the effective iron acquisition in tomato. Except of iron, FER protein was directly or indirectly involved in manganese homeostasis due to that loss functions of FER in T3238fer resulted in strong reduction of Mn content in leaves and the defect function on Mn accumulation in leaves was complemented by expression of AtbHLH29 in the transgenic plants. Identification of the similar biological functions of FER and AtbHLH29, which isolated from two systematically wide-diverged "strategy I" plants, suggests that FER might be a universal gene presented in all strategy I plants in controlling effective iron acquisition system in roots.Keywords
This publication has 35 references indexed in Scilit:
- Kinetic properties of a micronutrient transporter from Pisum sativum indicate a primary function in Fe uptake from the soilPlanta, 2004
- Arabidopsis Acyl-CoA-Binding Protein ACBP2 Interacts With an Ethylene-Responsive Element-Binding Protein, AtEBP, via its Ankyrin RepeatsPlant Molecular Biology, 2004
- Characterization of FRO1, a Pea Ferric-Chelate Reductase Involved in Root Iron AcquisitionPlant Physiology, 2002
- Arabidopsis IRT2 gene encodes a root‐periphery iron transporterThe Plant Journal, 2001
- Two iron-regulated cation transporters from tomato complement metal uptake-deficient yeast mutantsPlant Molecular Biology, 2001
- A ferric-chelate reductase for iron uptake from soilsNature, 1999
- A novel iron-regulated metal transporter from plants identified by functional expression in yeast.Proceedings of the National Academy of Sciences, 1996
- Effects of Iron Excess on Nicotiana plumbaginifolia Plants (Implications to Oxidative Stress)Plant Physiology, 1995
- Different strategies for iron acquisition in higher plantsPhysiologia Plantarum, 1987
- Physiological aspect of mugineic acid, a possible phytosiderophore of graminaceous plantsJournal of Plant Nutrition, 1984