Interaction of Auxin and ERECTA in Elaborating Arabidopsis Inflorescence Architecture Revealed by the Activation Tagging of a New Member of the YUCCA Family Putative Flavin Monooxygenases
Open Access
- 26 August 2005
- journal article
- Published by Oxford University Press (OUP) in Plant Physiology
- Vol. 139 (1) , 192-203
- https://doi.org/10.1104/pp.105.063495
Abstract
The aboveground body of higher plants has a modular structure of repeating units, or phytomers. As such, the position, size, and shape of the individual phytomer dictate the plant architecture. The Arabidopsis (Arabidopsis thaliana) ERECTA (ER) gene regulates the inflorescence architecture by affecting elongation of the internode and pedicels, as well as the shape of lateral organs. A large-scale activation-tagging genetic screen was conducted in Arabidopsis to identify novel genes and pathways that interact with the ER locus. A dominant mutant, super1-D, was isolated as a nearly complete suppressor of a partial loss-of-function allele er-103. We found that SUPER1 encodes YUCCA5, a novel member of the YUCCA family of flavin monooxygenases. The activation tagging of YUCCA5 conferred increased levels of free indole acetic acid, increased auxin response, and mild phenotypic characteristics of auxin overproducers, such as elongated hypocotyls, epinastic cotyledons, and narrow leaves. Both genetic and cellular analyses indicate that auxin and the ER pathway regulate cell division and cell expansion in a largely independent but overlapping manner during elaboration of inflorescence architecture.Keywords
This publication has 48 references indexed in Scilit:
- Interdependency of Brassinosteroid and Auxin Signaling in ArabidopsisPLoS Biology, 2004
- Synergistic interaction of three ERECTA-family receptor-like kinases controlsArabidopsisorgan growth and flower development by promoting cell proliferationDevelopment, 2004
- Comprehensive Comparison of Auxin-Regulated and Brassinosteroid-Regulated Genes in ArabidopsisPlant Physiology, 2004
- Mutations in the huge Arabidopsis gene BIG affect a range of hormone and light responsesThe Plant Journal, 2003
- Dominant-Negative Receptor Uncovers Redundancy in the Arabidopsis ERECTA Leucine-Rich Repeat Receptor–Like Kinase Signaling Pathway That Regulates Organ ShapePlant Cell, 2003
- Activation Tagging Using the En-I Maize Transposon System in ArabidopsisPlant Physiology, 2002
- FLOOZY of petunia is a flavin mono-oxygenase-like protein required for the specification of leaf and flower architectureGenes & Development, 2002
- The Arabidopsis Protein SHI Represses Gibberellin Responses in Arabidopsis and BarleyPlant Physiology, 2001
- An Arabidopsis Brassinosteroid-Dependent Mutant Is Blocked in Cell ElongationPlant Cell, 1998
- Arabidopsis auxin-resistance gene AXR1 encodes a protein related to ubiquitin-activating enzyme E1Nature, 1993