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2,4-D and IAA Amino Acid Conjugates Show Distinct Metabolism in Arabidopsis
L. Eyer, T. Vain, B. Pařízková, J. Oklestkova, E. Barbez, H. Kozubíková, T. Pospíšil, R. Wierzbicka, J. Kleine-Vehn, M. Fránek, M. Strnad, S. Robert, O. Novak,
Language English Country United States
Document type Journal Article
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- MeSH
- Arabidopsis drug effects growth & development metabolism MeSH
- F-Box Proteins genetics metabolism MeSH
- Herbicides pharmacology MeSH
- Homeostasis MeSH
- Plant Roots drug effects growth & development metabolism MeSH
- 2,4-Dichlorophenoxyacetic Acid pharmacology MeSH
- Indoleacetic Acids metabolism MeSH
- Arabidopsis Proteins genetics metabolism MeSH
- Receptors, Cell Surface genetics metabolism MeSH
- Gene Expression Regulation, Plant MeSH
- Plant Growth Regulators pharmacology MeSH
- Seedlings drug effects growth & development metabolism MeSH
- Signal Transduction drug effects MeSH
- Publication type
- Journal Article MeSH
The herbicide 2,4-D exhibits an auxinic activity and therefore can be used as a synthetic and traceable analog to study auxin-related responses. Here we identified that not only exogenous 2,4-D but also its amide-linked metabolite 2,4-D-Glu displayed an inhibitory effect on plant growth via the TIR1/AFB auxin-mediated signaling pathway. To further investigate 2,4-D metabolite conversion, identity and activity, we have developed a novel purification procedure based on the combination of ion exchange and immuno-specific sorbents combined with a sensitive liquid chromatography-mass spectrometry method. In 2,4-D treated samples, 2,4-D-Glu and 2,4-D-Asp were detected at 100-fold lower concentrations compared to 2,4-D levels, showing that 2,4-D can be metabolized in the plant. Moreover, 2,4-D-Asp and 2,4-D-Glu were identified as reversible forms of 2,4-D homeostasis that can be converted to free 2,4-D. This work paves the way to new studies of auxin action in plant development.
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