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The Plant Journal, ISSN 0960-7412, 02/2011, Volume 65, Issue 4, pp. 622 - 633
Summary Phytohormonal interactions are essential to regulate plant organogenesis. In response to the presence of signals from symbiotic bacteria, the Nod... 
hormonal interactions | nitrogen fixing nodulation | auxin | EIN2/sickle | ethylene | PIN efflux carrier | ARABIDOPSIS-THALIANA | sickle | EIN2 | HOST SPECIFICITY | GRAS FAMILY | PLANT SCIENCES | AUXIN TRANSPORT | CELL-DIVISION | LOTUS-JAPONICUS | LATERAL ROOT-FORMATION | GENE-EXPRESSION | ERF TRANSCRIPTION FACTOR | RHIZOBIUM-MELILOTI | Symbiosis | Transformation, Genetic | Amino Acid Sequence | Medicago truncatula - genetics | Indoleacetic Acids - metabolism | Signal Transduction | Root Nodules, Plant - microbiology | Molecular Sequence Data | Receptors, Cell Surface - metabolism | Medicago truncatula - microbiology | RNA, Plant - genetics | Medicago truncatula - metabolism | Transcription Factors - metabolism | Plant Proteins - genetics | Plant Root Nodulation - genetics | Gene Expression Regulation, Plant | Cytokinins - metabolism | Plant Proteins - metabolism | Mutation | Plant Growth Regulators - metabolism | Root Nodules, Plant - growth & development | Receptors, Cell Surface - genetics | Legumes | Beans | Fixation | Developmental biology | Analysis | DNA binding proteins | Gene expression | Nitrogen | Mimosaceae | Plant biology | Signal transduction | Bacteria | Plant growth | Transcription factors | Roots | Cortex | Ethylene | Cell division | Nodulation | Nodules | Organogenesis | Cytokinins | Nod factors | Auxins | Differentiation | RNA, Plant | Medicago truncatula | Receptors, Cell Surface | Plant Growth Regulators | Life Sciences | Root Nodules, Plant | Plant Root Nodulation | Transcription Factors | Plant Proteins | Vegetal Biology | Indoleacetic Acids
Journal Article
The Plant Journal, ISSN 0960-7412, 05/2012, Volume 70, Issue 3, pp. 367 - 376
Summary CLE peptides are involved in the balance between cell division and differentiation throughout plant development, including nodulation. Previously, two... 
auto‐regulation of nodulation | cytokinin | nodule primordium | ethylene | CLE peptide | auto-regulation of nodulation | SUNN GENE | GENE ENCODES | PLANT SCIENCES | RECEPTOR KINASE | NODULATION | AUXIN TRANSPORT REGULATION | MEDICAGO-TRUNCATULA | PISUM-SATIVUM-L | SYSTEMIC REGULATION | ROOT DEVELOPMENT | GLYCINE-MAX | Plant Root Nodulation - drug effects | Medicago truncatula - genetics | Sinorhizobium meliloti - drug effects | Sinorhizobium meliloti - physiology | Peptides - genetics | Root Nodules, Plant - genetics | Cytokinins - pharmacology | Medicago truncatula - microbiology | Ethylenes - metabolism | Gene Knockdown Techniques | Peptides - metabolism | Plant Root Nodulation - genetics | Plants, Genetically Modified | Plant Proteins - metabolism | Root Nodules, Plant - drug effects | Root Nodules, Plant - growth & development | Symbiosis | Medicago truncatula - drug effects | Gene Expression Regulation, Plant - genetics | Signal Transduction - genetics | Cell Division - drug effects | Medicago truncatula - physiology | Plant Proteins - genetics | Gene Expression Regulation, Plant - drug effects | Signal Transduction - drug effects | Cell Differentiation - drug effects | Models, Biological | Mutation | Plant Growth Regulators - pharmacology | Peptides | Statistics | Genes | Analysis | Plant biology | Cell division | Signal transduction | Flowers & plants | Gene expression
Journal Article
Science, ISSN 0036-8075, 2014, Volume 346, Issue 6207, pp. 300 - 301
Journal Article
Functional Plant Biology, ISSN 1445-4408, 2015, Volume 42, Issue 3, pp. 229 - 238
Legumes form a highly-regulated symbiotic relationship with specific soil bacteria known as rhizobia. This interaction results in the de novo formation of root... 
nodule | plant peptide signalling | nitrate-regulation of nodulation | autoregulation of nodulation | symbiosis | legume nodulation | ARABIDOPSIS-THALIANA | SOYBEAN NODULATION | MEDIATES SYSTEMIC REGULATION | RECEPTOR-LIKE KINASE | PLANT SCIENCES | LOTUS-JAPONICUS | MEDICAGO-TRUNCATULA | SIGNALING PATHWAY | GENE-EXPRESSION | REGULATES NODULE NUMBER | GLYCINE-MAX
Journal Article
Soil Science and Plant Nutrition, ISSN 0038-0768, 09/2018, Volume 64, Issue 5, pp. 566 - 575
The selection of effective rhizobia for higher efficiency nitrogen fixation is one of the most important steps for inoculant production. Therefore, this... 
seed yield | nodulation | nodulation regulatory gene (Rj gene) | Nodulation type | nitrogen fixation
Journal Article
Journal Article
Full Length Research Paper - Nodulation and growth response of Sesbania sesban (L.) Merr. to increasing nitrogen (ammonium) supply under glasshouse conditions, 12/2005
A glasshouse experiment was carried out to study the effect of ammonium-N on the nodulation, growth and N-uptake of Sesbania sesban   (L.) Merr. inoculated... 
Ammonium, improved fallow, Mesorhizobium, N2-fixation, nodulation, Sesbania sesban
Journal
Journal of Plant Physiology, ISSN 0176-1617, 09/2015, Volume 120, Issue 4, pp. 331 - 349
Strain NGR234 is a broad host range Rhizobium which can effectively nodulate a broad spectrum of legumes. Ninety mutants with altered exopolysaccharide... 
Leucaena | Symbiotic nitrogen-fixation | Exopolysaccharide synthesis | Molecular cloning | Rhizobium nodulation
Journal Article
The Plant Cell, ISSN 1040-4651, 10/2008, Volume 20, Issue 10, pp. 2696 - 2713
Mechanisms regulating legume root nodule development are still poorly understood, and very few regulatory genes have been cloned and characterized. Here, we... 
Cytokinins | Transcription factors | Genes | Plant roots | Nodulation | Infections | Plants | Bacteroids | Nodules | Plant cells | SINORHIZOBIUM-MELILOTI | RHIZOBIAL INFECTION | BIOCHEMISTRY & MOLECULAR BIOLOGY | ARBUSCULAR MYCORRHIZA | POTENTIAL REGULATORS | PLANT SCIENCES | CELL BIOLOGY | FALSE DISCOVERY RATE | NITROGEN-FIXATION | RHIZOGENES-TRANSFORMED ROOTS | GENE-EXPRESSION | LEGUME LOTUS-JAPONICUS | SYMBIOTIC MUTANTS | Multigene Family | Root Nodules, Plant - metabolism | Sinorhizobium meliloti - physiology | Root Nodules, Plant - microbiology | Molecular Sequence Data | Gene Expression Profiling | Medicago truncatula - microbiology | Phylogeny | Ethylenes - metabolism | Plant Root Nodulation - physiology | Cell Nucleus - metabolism | RNA Interference | Gene Deletion | Nitrogen Fixation | Transcription Factors - physiology | Signal Transduction | Medicago truncatula - growth & development | Plant Proteins - physiology | Plant Proteins - analysis | Root Nodules, Plant - cytology | Transcription Factors - genetics | Plant Proteins - genetics | Feedback, Physiological | Medicago truncatula - cytology | Cytokinins - metabolism | Transcription Factors - analysis | Legumes | Beans | Genetic aspects | RNA | Mimosaceae | Medicago truncatula | Life Sciences | Plant Root Nodulation | Root Nodules, Plant | Plant Proteins | Transcription Factors | Vegetal Biology | Ethylenes | Cell Nucleus | Sinorhizobium meliloti
Journal Article
Journal Article