Arabidopsis thaliana auxotrophs reveal a tryptophan-independent biosynthetic pathway for indole-3-acetic acid.
- 1 November 1993
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 90 (21) , 10355-10359
- https://doi.org/10.1073/pnas.90.21.10355
Abstract
We used tryptophan auxotrophs of the dicot Arabidopsis thaliana (wall cress) to determine whether tryptophan has the capacity to serve as a precursor to the auxin, indole-3-acetic acid (IAA). Quantitative gas chromatography-selected ion monitoring-mass spectrometry (GC-SIM-MS) revealed that the trp2-1 mutant, which is defective in the conversion of indole to tryptophan, accumulated amide- and ester-linked IAA at levels 38-fold and 19-fold, respectively, above those of the wild type. Tryptophan and free IAA were isolated from the trp2-1 mutant grown in the presence of [15N]anthranilate and [2H5]tryptophan, and the relative 15N and 2H5 enrichments of tryptophan and IAA were determined via GC-SIM-MS. The 15N enrichment of tryptophan, 13% +/- 4%, was less than the 15N enrichment of the IAA pool, 39% +/- 4%; therefore, IAA biosynthesis occurs via a tryptophan-independent pathway. The amount of 2H5 incorporated by the plant into IAA from tryptophan (9% +/- 4%) was low and only slightly above the level of spontaneous, nonenzymatic conversion of [2H5]tryptophan to [2H5]IAA. These results show that the dicot Arabidopsis is similar to the monocot Zea mays in that the major route of IAA biosynthesis does not occur through tryptophan.Keywords
This publication has 17 references indexed in Scilit:
- The maize auxotrophic mutant orange pericarp is defective in duplicate genes for tryptophan synthase beta.Plant Cell, 1992
- Cloning and expression of an Arabidopsis nitrilase which can convert indole‐3‐acetonitrile to the plant hormone, indole‐3‐acetic acidEuropean Journal of Biochemistry, 1992
- Indole-3-Acetic Acid Biosynthesis in the Mutant Maize orange pericarp , a Tryptophan AuxotrophScience, 1991
- Stable Isotope Labeling, in Vivo, of d- and l-Tryptophan Pools in Lemna gibba and the Low Incorporation of Label into Indole-3-Acetic AcidPlant Physiology, 1991
- Molecular cloning and analysis of cDNA encoding a plant tryptophan decarboxylase: comparison with animal dopa decarboxylases.Proceedings of the National Academy of Sciences, 1989
- A Rapid and Simple Procedure for Purification of Indole-3-Acetic Acid Prior to GC-SIM-MS AnalysisPlant Physiology, 1988
- 13C6-[Benzene Ring]-Indole-3-Acetic AcidPlant Physiology, 1986
- Analysis of Indole-3-acetic Acid Metabolism in Zea mays Using Deuterium Oxide as a TracerPlant Physiology, 1983
- Synthesis of high specific activity C14-carboxyl indoleacetic acid and of C14-nitrile indoleacetonitrileAnalytical Biochemistry, 1963
- Conversion of Tryptophan-2-C14 to Indoleacetic Acid by Watermelon Tissue SlicesPlant Physiology, 1957