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Nature, ISSN 0028-0836, 05/2005, Volume 435, Issue 7041, pp. 441 - 445
The plant hormone auxin regulates diverse aspects of plant growth and development. Recent studies indicate that auxin acts by promoting the degradation of the... 
SCFTIR1 | COMPLEX | MULTIDISCIPLINARY SCIENCES | GROWTH | DEGRADATION | AUX/IAA PROTEINS | MECHANISMS | ARABIDOPSIS | SCF UBIQUITIN-LIGASE | EXPRESSION | BINDING | Transcription, Genetic - drug effects | Temperature | Molecular Sequence Data | Spodoptera | Arabidopsis Proteins - metabolism | DNA-Binding Proteins - metabolism | Protein Binding - drug effects | Carrier Proteins - chemistry | Receptors, Cell Surface - chemistry | Receptors, Cell Surface - isolation & purification | Repressor Proteins - metabolism | Amino Acid Sequence | Cell Line | Arabidopsis Proteins - genetics | Indoleacetic Acids - metabolism | Signal Transduction | F-Box Proteins - metabolism | F-Box Proteins - chemistry | Receptors, Cell Surface - metabolism | Nuclear Proteins - metabolism | SKP Cullin F-Box Protein Ligases - metabolism | SKP Cullin F-Box Protein Ligases - chemistry | Arabidopsis - metabolism | Arabidopsis - genetics | Arabidopsis Proteins - isolation & purification | Carrier Proteins - genetics | Gene Expression Regulation, Plant - drug effects | Animals | Carrier Proteins - metabolism | Arabidopsis Proteins - chemistry | Indoleacetic Acids - pharmacology | Carrier Proteins - isolation & purification | F-Box Proteins - isolation & purification | F-Box Proteins - genetics | Receptors, Cell Surface - genetics | Proteins | Hormones | Physical growth | Botany | Index Medicus | Space life sciences
Journal Article
Journal Article
Journal Article
Cell, ISSN 0092-8674, 2003, Volume 115, Issue 6, pp. 679 - 689
The plant hormone ethylene regulates a wide range of developmental processes and the response of plants to stress and pathogens. Genetic studies in Arabidopsis... 
ETHYLENE-INSENSITIVE3 | RESPONSE PATHWAY | THALIANA | BIOCHEMISTRY & MOLECULAR BIOLOGY | DEGRADATION | TRANSDUCTION | AUX/IAA PROTEINS | PROTEOLYSIS | AUXIN RESPONSE | IDENTIFICATION | SCF UBIQUITIN-LIGASE | CELL BIOLOGY | Arabidopsis - growth & development | SKP Cullin F-Box Protein Ligases - genetics | DNA, Complementary - genetics | Molecular Sequence Data | Seedlings - genetics | Seedlings - growth & development | Ethylenes - metabolism | Arabidopsis Proteins - metabolism | Cell Nucleus - metabolism | Ethylenes - pharmacology | Nuclear Proteins - genetics | SKP Cullin F-Box Protein Ligases - isolation & purification | DNA-Binding Proteins | DNA, Complementary - analysis | Arabidopsis Proteins - genetics | Arabidopsis - drug effects | Gene Expression Regulation, Plant - genetics | Receptors, Cell Surface - metabolism | Nuclear Proteins - metabolism | Signal Transduction - genetics | Seedlings - drug effects | Sequence Homology, Nucleic Acid | Arabidopsis - genetics | Arabidopsis Proteins - isolation & purification | Sequence Homology, Amino Acid | Gene Expression Regulation, Plant - drug effects | Phenotype | Cell Nucleus - genetics | Signal Transduction - drug effects | Plant Proteins | Transcription Factors | F-Box Proteins - isolation & purification | F-Box Proteins - genetics | Physiological aspects | Cellular signal transduction | Plant hormones | Cellular control mechanisms | Ethylene | EBF2 protein | EIN3 protein | EBF1 protein | EIL protein | Index Medicus
Journal Article
Proceedings of the National Academy of Sciences of the United States of America, ISSN 0027-8424, 12/2009, Volume 106, Issue 52, pp. 22540 - 22545
Auxin regulates most aspects of plant growth and development. The hormone is perceived by the TIR1/AFB family of F-box proteins acting in concert with the... 
Receptors | Phenotypes | RNA | Genes | Alleles | Auxins | Gene expression regulation | Plants | Seedlings | Plant cells | Plant hormone | Plant development | plant hormone | plant development | ARABIDOPSIS-THALIANA | DOMAIN | MEMBERS | ARF | MULTIDISCIPLINARY SCIENCES | FUNCTIONAL GENOMIC ANALYSIS | BOX PROTEIN TIR1 | TRANSCRIPTIONAL REPRESSION | DEGRADATION | AUX/IAA PROTEINS | Arabidopsis Proteins - genetics | Plant Roots - metabolism | Indoleacetic Acids - metabolism | Arabidopsis - growth & development | F-Box Proteins - metabolism | Receptors, Cell Surface - metabolism | RNA, Plant - genetics | Recombinant Fusion Proteins - metabolism | Arabidopsis - metabolism | Arabidopsis - genetics | Arabidopsis Proteins - metabolism | Plant Proteins - genetics | Indoleacetic Acids - pharmacology | Plants, Genetically Modified | Gene Expression Regulation, Plant | Recombinant Fusion Proteins - genetics | MicroRNAs - genetics | Plant Proteins - metabolism | Mutation | F-Box Proteins - genetics | Genes, Plant - drug effects | Plant Roots - growth & development | Receptors, Cell Surface - genetics | Plant proteins | Auxin | Research | Arabidopsis | Growth | Proteins | Genotype & phenotype | Genetics | Plant growth | Index Medicus | RNA, Plant | Genes, Plant | Receptors, Cell Surface | Recombinant Fusion Proteins | Life Sciences | F-Box Proteins | Arabidopsis Proteins | Plant Roots | MicroRNAs | Plant Proteins | Vegetal Biology | Indoleacetic Acids | Biological Sciences
Journal Article
Proceedings of the National Academy of Sciences of the United States of America, ISSN 0027-8424, 12/2014, Volume 111, Issue 52, pp. 18613 - 18618
Journal Article
Journal Article
Molecular Systems Biology, ISSN 1744-4292, 2011, Volume 7, Issue 1, pp. 508 - n/a
The plant hormone auxin is thought to provide positional information for patterning during development. It is still unclear, however, precisely how auxin is... 
live imaging | ODE | biosensor | auxin | signalling | ARABIDOPSIS-THALIANA | BIOCHEMISTRY & MOLECULAR BIOLOGY | BOX PROTEIN TIR1 | PLANT DEVELOPMENT | APICAL MERISTEM | TIME RT-PCR | PHYLLOTAXIS | RESPONSE FACTORS | TRANSPORT | GENE-EXPRESSION | AUX/IAA GENES | Plant Shoots - growth & development | Arabidopsis - growth & development | Genes, Plant | Arabidopsis Proteins - metabolism | DNA-Binding Proteins - metabolism | Plants, Genetically Modified | Gene Expression Regulation, Plant | Meristem - metabolism | Transcription, Genetic | Plant Shoots - genetics | Nuclear Proteins - genetics | Models, Theoretical | Arabidopsis Proteins - genetics | In Situ Hybridization, Fluorescence | Meristem - chemistry | Nuclear Proteins - metabolism | Signal Transduction - genetics | DNA-Binding Proteins - genetics | Arabidopsis - metabolism | Organogenesis | Arabidopsis - genetics | Microscopy, Confocal | Indoleacetic Acids - pharmacology | Plant Shoots - metabolism | Plant Growth Regulators - pharmacology | Cluster Analysis | Ubiquitin | Pattern formation | Regulations | Transcription factors | Yeast | Genes | Gene regulation | Spatial discrimination | Fluorescence | Homology | Activation | Feedback loops | Degradation | Proteins | Signal transduction | Receptors | Negative feedback | Robustness (mathematics) | Repressors | Mathematical analysis | Plant tissues | Transcription activation | Mathematical models | Primordia | Temporal variations | Sensors | Buffers | Ubiquitin-protein ligase | Biodegradation | Patterning | Computer simulation | Topology | Gene expression | Signaling | Sensitivity | Spatial distribution | Stem cells | Predictions | Perception | Control theory | Protein interaction | Combinatorial analysis | Binding sites | Index Medicus | Modeling and Simulation | Computer Science
Journal Article
Journal Article
Journal Article
The Plant Journal, ISSN 0960-7412, 07/2018, Volume 95, Issue 2, pp. 233 - 251
Journal Article