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Proceedings of the National Academy of Sciences - PNAS, ISSN 1091-6490, 2003, Volume 100, Issue 5, pp. 2987 - 2991
Journal Article
Journal of experimental botany, ISSN 1460-2431, 2019, Volume 70, Issue 10, pp. 2609 - 2614
Journal Article
The Plant journal : for cell and molecular biology, ISSN 0960-7412, 2013, Volume 73, Issue 4, pp. 676 - 688
Summary The phytohormones auxins and brassinosteroids are both essential regulators of physiological and developmental processes, and it has been suggested... 
auxin | rice | brassinosteroid | transcriptional regulation | auxin‐response element | auxin‐response factor | auxin-response element | auxin-response factor | LAMINA INCLINATION | TOLERANCE | PLANT SCIENCES | LOOP-HELIX PROTEIN | PLANT HORMONES | INTERNODE ELONGATION | BRASSINOLIDE | BIOSYNTHESIS | GROWTH | DEGRADATION | CROSSTALK | Genes, Plant | Oryza - metabolism | RNA, Messenger - metabolism | Oryza - growth & development | Oryza - genetics | Gene Expression Regulation, Plant | Brassinosteroids - biosynthesis | Transcription, Genetic | Plant Proteins - metabolism | Protein-Serine-Threonine Kinases - metabolism | Repressor Proteins - metabolism | Promoter Regions, Genetic | Indoleacetic Acids - metabolism | Plants, Genetically Modified - genetics | RNA, Messenger - genetics | Protein-Serine-Threonine Kinases - genetics | Repressor Proteins - genetics | Oryza - drug effects | Transcription Factors - genetics | Transcription Factors - metabolism | Plant Proteins - genetics | Plants, Genetically Modified - metabolism | Plant Leaves - genetics | Plant Leaves - metabolism | Indoleacetic Acids - pharmacology | Plant Leaves - growth & development | Plant Growth Regulators - genetics | Protein Binding | Plant Growth Regulators - metabolism | Physiological aspects | Auxin | Acetic acid | Genes | Organic acids | Steroids | Plant biology | Signal transduction | Gene expression | Rice
Journal Article
Frontiers in plant science, ISSN 1664-462X, 2015, Volume 5, p. 741
Journal Article
Proceedings of the National Academy of Sciences - PNAS, ISSN 0027-8424, 2/2010, Volume 107, Issue 6, pp. 2705 - 2710
Like animals, the mature plant body develops via successive sets of instructions that determine cell fate, patterning, and organogenesis. In the coordination... 
Developmental biology | Germination | Cell cycle | Plant roots | Cell division | Auxins | Plants | Root initiation | Seedlings | Plant cells | lateral root initiation | transcription factor | arf19 | thaliana | expression | differentiation | gene | mediated transformation | embryo | monopteros | Auxin/indole-3-acetic acid | Lateral root | Auxin response factor | cell cycle | MULTIDISCIPLINARY SCIENCES | MEDIATED TRANSFORMATION | ARF19 | AUXIN/INDOLE-3-ACETIC ACID | lateral root | GENE | EMBRYO | THALIANA | LATERAL ROOT INITIATION | MONOPTEROS | AUXIN RESPONSE FACTOR | DIFFERENTIATION | TRANSCRIPTION FACTOR | EXPRESSION | Arabidopsis Proteins - genetics | Arabidopsis - drug effects | Arabidopsis - growth & development | Protein-Serine-Threonine Kinases | Cyclins - genetics | Gene Expression Regulation, Developmental - drug effects | Plant Roots - genetics | Reverse Transcriptase Polymerase Chain Reaction | Plant Roots - drug effects | Arabidopsis - genetics | Morphogenesis | Gene Expression Regulation, Plant - drug effects | Indoleacetic Acids - pharmacology | Plants, Genetically Modified | E2F Transcription Factors - genetics | Plant Growth Regulators - pharmacology | Plant Roots - growth & development | Receptors, Cell Surface - genetics | Arabidopsis thaliana | Auxin | Morphology | Botany | Physiological aspects | Research | Properties | Biological Sciences | AUXIN | INDOLE-3-ACETIC ACID
Journal Article
Journal of experimental botany, ISSN 1460-2431, 2012, Volume 63, Issue 12, pp. 4539 - 4547
Various transcriptional networks and plant hormones have been implicated in controlling different aspects of potato tuber formation. Due to its broad impact on... 
Stolons | Tubers | Swelling | Plant growth regulators | Plant growth | Genes | Plant roots | Auxins | Biosynthesis | Plants | RESEARCH PAPER | key role | solanum-tuberosum | identification | tuberization | biosynthesis | plant | gene-expression | growth | transport | arabidopsis | Potato | Auxin | Gibberellins | YUC | Strigolactones | Tuberization physiology | Auxin content | ACTIVATION | tuberization physiology | TUBERIZATION | gibberellins | IDENTIFICATION | SOLANUM-TUBEROSUM | auxin content | PLANT SCIENCES | TRANSPORT | potato | BIOSYNTHESIS | strigolactones | GENE-EXPRESSION | KEY ROLE | ARABIDOPSIS | TISSUES | Solanum tuberosum - growth & development | Triiodobenzoic Acids - pharmacology | Indoleacetic Acids - analysis | Lactones - analysis | Plant Tubers - metabolism | Plant Tubers - genetics | Plant Roots - drug effects | Biological Transport | Plants, Genetically Modified | Solanum tuberosum - metabolism | Plant Leaves - drug effects | Plant Proteins - metabolism | Plant Roots - growth & development | Solanum tuberosum - genetics | Plant Growth Regulators - analysis | Plant Stems - growth & development | Plant Roots - metabolism | Indoleacetic Acids - metabolism | Plant Tubers - growth & development | Plant Tubers - drug effects | Lactones - metabolism | Solanum tuberosum - drug effects | Drug Synergism | Indoleacetic Acids - antagonists & inhibitors | Plant Proteins - genetics | Gene Expression Regulation, Plant - drug effects | Phenotype | Plant Leaves - metabolism | Plant Stems - drug effects | Plant Stems - metabolism | Plant Leaves - growth & development | Plant Growth Regulators - antagonists & inhibitors | Plant Growth Regulators - metabolism | Auxin, auxin content, gibberellins, potato, strigolactones, tuberization physiology, YUC | Research Paper
Journal Article
The Plant journal : for cell and molecular biology, ISSN 0960-7412, 01/2011, Volume 65, Issue 2, pp. 282 - 294
Summary AUXIN‐BINDING PROTEIN 1 (ABP1) is not easily accessible for molecular studies because the homozygous T‐DNA insertion mutant is embryo‐lethal. We found... 
AUXIN‐BINDING PROTEIN 1 | auxin‐induced transcription | phototropism | abp1/ABP1 mutant | gravitropism | auxin transport | AUXIN-BINDING PROTEIN 1 | auxin-induced transcription | ARABIDOPSIS-THALIANA | C-TERMINUS | ROOT GRAVITROPISM | PLANT DEVELOPMENT | PLASMA-MEMBRANE | abp1 | TOBACCO | PLANT SCIENCES | ABP1 mutant | EFFLUX | CELL EXPANSION | BINDING PROTEIN-1 | EXPRESSION | Arabidopsis - growth & development | Hypocotyl - genetics | Plant Roots - genetics | Seedlings - genetics | Seedlings - growth & development | Arabidopsis Proteins - metabolism | Biological Transport | Membrane Transport Proteins - genetics | Plants, Genetically Modified | Gene Expression Regulation, Plant | Membrane Transport Proteins - metabolism | Plant Proteins - metabolism | Genes, Plant - drug effects | Plant Roots - growth & development | Arabidopsis Proteins - genetics | Indoleacetic Acids - metabolism | Phototropism | Hypocotyl - growth & development | Receptors, Cell Surface - metabolism | Arabidopsis - metabolism | Arabidopsis - genetics | Plant Proteins - genetics | Indoleacetic Acids - pharmacology | Models, Biological | Gravitropism | Heterozygote | Mutagenesis, Insertional | Receptors, Cell Surface - genetics | Seedlings - metabolism | Genetic research | Anopheles | Analysis | Transportation policy | Proteins | Plant biology | Mutation | Plant growth | Gene expression
Journal Article