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Reassessing the Role of N-Hydroxytryptamine in Auxin Biosynthesis

Publication Type:Journal Article
Year of Publication:2010
Authors:Tivendale, ND, Davies, NW, Molesworth, PP, Davidson, SE, Smith, JA, Lowe, EK, Reid, JB, Ross, JJ
Journal:Plant Physiology
Volume:154
Issue:4
Date Published:2010
ISBN Number:00320889
Keywords:Lycopersicum, Solanum
Abstract:

The tryptamine pathway is one of five proposed pathways for the biosynthesis of indole-3-acetic acid (IAA), the primary auxin in plants. The enzymes AtYUC1 (Arabidopsis thaliana), FZY (Solanum lycopersicum), and ZmYUC (Zea mays) are reported to catalyze the conversion of tryptamine to N-hydroxytryptamine, putatively a rate-limiting step of the tryptamine pathway for IAA biosynthesis. This conclusion was based on in vitro assays followed by mass spectrometry or HPLC analyses. However, there are major inconsistencies between the mass spectra reported for the reaction products. Here, we present mass spectral data for authentic N-hydroxytryptamine, 5-hydroxytryptamine (serotonin), and tryptamine to demonstrate that at least some of the published mass spectral data for the YUC in vitro product are not consistent with N-hydroxytryptamine. We also show that tryptamine is not metabolized to IAA in pea (Pisum sativum) seeds, even though a PsYUC-like gene is strongly expressed in these organs. Combining these findings, we propose that at present there is insufficient evidence to consider N-hydroxytryptamine an intermediate for IAA biosynthesis.

URL:http://www.jstor.org/stable/25758731
Short Title:Plant Physiology
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