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Auxin–cytokinin interactions in the control of shoot branching
Plant Molecular Biology · 2008 · Vol. 69(4) · pp. 429–435
Abstract
In many plant species, the intact main shoot apex grows predominantly and axillary bud outgrowth is inhibited. This phenomenon is called apical dominance, and has been analyzed for over 70 years. Decapitation of the shoot apex releases the axillary buds from their dormancy and they begin to grow out. Auxin derived from an intact shoot apex suppresses axillary bud outgrowth, whereas cytokinin induced by decapitation of the shoot apex stimulates axillary bud outgrowth. Here we describe the molecular mechanisms of the interactions between auxin and cytokinin in the control of shoot branching.
Plant Molecular Biology ResearchPlant Reproductive BiologyPlant Parasitism and ResistanceAxillary budApical dominanceBiologyCytokininAuxinShootApex (geometry)BotanyDormancyLateral shoot
MeSH terms
Creatine KinaseCytokininsHomeostasisIndoleacetic AcidsPlant Growth RegulatorsPlant ShootsPlant StemsFlowers
Funding
- Japan Society for the Promotion of Science
Citations
388
FWCI
22.12
field-weighted impact
References
56
Percentile
100%
vs. same field & year
Citations per year
Cited by
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References
Suppression of Tiller Bud Activity in Tillering Dwarf Mutants of Rice
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Requirement of the Auxin Polar Transport System in Early Stages of Arabidopsis Floral Bud Formation.
The Plant Cell · 1991 · 1,016 citations
Identification of Plant Cytokinin Biosynthetic Enzymes as Dimethylallyl Diphosphate:ATP/ADP Isopentenyltransferases
Plant and Cell Physiology · 2001 · 490 citations
AtIPT3 is a Key Determinant of Nitrate-Dependent Cytokinin Biosynthesis in Arabidopsis
Plant and Cell Physiology · 2004 · 397 citations
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