Involvement of the ABCG37 transporter in secretion of scopoletin and derivatives by Arabidopsis roots in response to iron deficiency
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Open Access
- 10 September 2013
- journal article
- research article
- Published by Wiley in New Phytologist
- Vol. 201 (1), 155-167
- https://doi.org/10.1111/nph.12471
Abstract
Studies of Iron (Fe) uptake mechanisms by plant roots have focussed on Fe(III)‐siderophores or Fe(II) transport systems. Iron deficency also enhances root secretion of flavins and phenolics. However, the nature of these compounds, their transport outside the roots and their role in Fe nutrition are largely unknown. We used HPLC/ESI‐MS (TOF) and HPLC/ESI‐MS/MS (ion trap) to characterize fluorescent phenolic‐type compounds accumulated in roots or exported to the culture medium of Arabidopsis plants in response to Fe deficiency. Wild‐type and mutant plants altered either in phenylpropanoid biosynthesis or in the ABCG37 (PDR9) ABC transporter were grown under standard or Fe‐deficient nutrition conditions and compared. Fe deficiency upregulates the expression of genes encoding enzymes of the phenylpropanoid pathway and leads to the synthesis and secretion of phenolic compounds belonging to the coumarin family. The ABCG37 gene is also upregulated in response to Fe deficiency and coumarin export is impaired in pdr9 mutant plants. Therefore it can be concluded that: Fe deficiency induces the secretion of coumarin compounds by Arabidopsis roots; the ABCG37 ABC transporter is required for this secretion to take place; and these compounds improved plant Fe nutrition.Keywords
This publication has 43 references indexed in Scilit:
- A Rice Phenolic Efflux Transporter Is Essential for Solubilizing Precipitated Apoplasmic Iron in the Plant SteleJournal of Biological Chemistry, 2011
- Phytosiderophore Efflux Transporters Are Crucial for Iron Acquisition in Graminaceous PlantsJournal of Biological Chemistry, 2011
- iTRAQ Protein Profile Analysis of Arabidopsis Roots Reveals New Aspects Critical for Iron HomeostasisPlant Physiology, 2010
- Arabidopsis PIS1 encodes the ABCG37 transporter of auxinic compounds including the auxin precursor indole-3-butyric acidProceedings of the National Academy of Sciences, 2010
- Transcriptional Profiling of the Arabidopsis Iron Deficiency Response Reveals Conserved Transition Metal Homeostasis NetworksPlant Physiology, 2010
- Iron Uptake and Transport in Plants: The Good, the Bad, and the IonomeChemical Reviews, 2009
- TheArabidopsisPLEIOTROPIC DRUG RESISTANCE8/ABCG36 ATP Binding Cassette Transporter Modulates Sensitivity to the Auxin Precursor Indole-3-Butyric AcidPlant Cell, 2009
- Arabidopsis iba response5 Suppressors Separate Responses to Various HormonesGenetics, 2008
- Iron Deficiency-Induced Secretion of Phenolics Facilitates the Reutilization of Root Apoplastic Iron in Red CloverPlant Physiology, 2007
- A Gain-of-Function Mutation in the Arabidopsis Pleiotropic Drug Resistance Transporter PDR9 Confers Resistance to Auxinic HerbicidesPlant Physiology, 2006