Published June 4, 2026 | Version v1

Raw data for: Comprehensive characterisation of IAA inactivation pathways reveals the impact of glycosylation on auxin metabolism and plant development in Arabidopsis

  • 1. SLU/UPSC
  • 2. ROR icon Czech Academy of Sciences, Institute of Experimental Botany
  • 3. Přírodovědecká Fakulta Univerzity Palackého v Olomouci
  • 4. ROR icon Palacký University Olomouc
  • 5. Laboratoř růstových regulátorů
  • 6. ROR icon Swedish University of Agricultural Sciences
  • 7. ROR icon University of Nottingham
  • 8. Centro de Biotecnología y Genómica de Plantas

Description

Alongside biosynthesis and transport, inactivation regulates indole-3-acetic acid (IAA) concentration, a compound with numerous functions in plant development. The main inactive IAA metabolites are oxidised forms and ester- or amide-linked conjugates. DIOXYGENASE FOR AUXIN OXIDATION1 (DAO1) and DAO2, 2-oxoglutarate and iron-dependent dioxygenases, contribute to IAA oxidative inactivation with group II GRETCHEN HAGEN3 (GH3) IAA-amido synthetases, while UDP-glycosyltransferases (UGTs) conjugate IAA to sugars. To study IAA inactivation routes, we generated combinatorial Arabidopsis mutants between all group II GH3s (gh3oct) and DAO1 or DAO2, and between DAOs and the main UGTs. In vivo [13C6]IAA feeding experiments traced exogenously applied IAA’s metabolic fate, supporting the main IAA inactivation pathway where DAOs act downstream of GH3s. Results from these experiments also indicated UGT-mediated IAA glycosylation is more important than previously assumed for modulating IAA levels and plant development. Our metabolic and transcriptomic data revealed that gh3oct may still retain some GH3 activity, explaining previously reported phenotypic inconsistencies. Our data additionally suggest that unidentified metabolic activities might play a role in IAA overproducing plants, and that premature downregulation of flowering time regulators like FLOWERING LOCUS C (FLC) likely underlies early flowering of gh3oct and gh3oct dao1-6 plants.

Files

Files (275.6 kB)

Name Size Download all
md5:98a7770e6288201fe868bd5bb25209f9
175.0 kB Download
md5:a97f09f28c6c8be84e0319f0b60f6fbc
45.1 kB Download
md5:afb781502f90a9cec42fcac0b75cce3e
55.6 kB Download

Additional details

Related works

Funding

Ministry of Education Youth and Sports
TowArds Next GENeration Crops- TANGENC Z.02.01.01/00/ 22_008/0004581
European Union
Unravelling Spatio-temporal Auxin Intracellular Redistribution for Morphogenesis 101166880