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Altered architecture and enhanced drought tolerance in rice via the down-regulation of indole-3-acetic acid by TLD1/OsGH3.13 activation
- Source :
- Plant physiology. 151(4)
- Publication Year :
- 2009
-
Abstract
- Plant architecture is determined by genetic and developmental programs as well as by environmental factors. Sessile plants have evolved a subtle adaptive mechanism that allows them to alter their growth and development during periods of stress. Phytohormones play a central role in this process; however, the molecules responsible for integrating growth- and stress-related signals are unknown. Here, we report a gain-of-function rice (Oryza sativa) mutant, tld1-D, characterized by (and named for) an increased number of tillers, enlarged leaf angles, and dwarfism. TLD1 is a rice GH3.13 gene that encodes indole-3-acetic acid (IAA)-amido synthetase, which is suppressed in aboveground tissues under normal conditions but which is dramatically induced by drought stress. The activation of TLD1 reduced the IAA maxima at the lamina joint, shoot base, and nodes, resulting in subsequent alterations in plant architecture and tissue patterning but enhancing drought tolerance. Accordingly, the decreased level of free IAA in tld1-D due to the conjugation of IAA with amino acids greatly facilitated the accumulation of late-embryogenesis abundant mRNA compared with the wild type. The direct regulation of such drought-inducible genes by changes in the concentration of IAA provides a model for changes in plant architecture via the process of drought adaptation, which occurs frequently in nature.
- Subjects :
- Physiology
Drought tolerance
Mutant
Molecular Sequence Data
Arabidopsis
Down-Regulation
Plant Science
Biology
Oryza
Genes, Plant
Models, Biological
chemistry.chemical_compound
Auxin
Gene Expression Regulation, Plant
Stress, Physiological
Botany
Genetics
Cloning, Molecular
Plant Proteins
chemistry.chemical_classification
Oryza sativa
Base Sequence
Indoleacetic Acids
Gene Expression Profiling
fungi
Wild type
Plant physiology
food and beverages
Reproducibility of Results
biology.organism_classification
Adaptation, Physiological
Cell biology
Droughts
Phenotype
chemistry
Seedlings
Mutation
Indole-3-acetic acid
Research Article
Subjects
Details
- ISSN :
- 15322548
- Volume :
- 151
- Issue :
- 4
- Database :
- OpenAIRE
- Journal :
- Plant physiology
- Accession number :
- edsair.doi.dedup.....b7e97906ce85a2a6ec59bd5bcc33f198