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The Plant journal : for cell and molecular biology, ISSN 0960-7412, 10/2011, Volume 68, Issue 2, pp. 273 - 286
Summary Cyanogenic glucosides are amino acid‐derived defence compounds found in a large number of vascular plants. Their hydrolysis by specific β‐glucosidases... 
Sorghum bicolor | cytochrome P450 | Lotus japonicus | Manihot esculenta | gene clustering | cyanogenic glucosides | Life Sciences & Biomedicine | Plant Sciences | Science & Technology | Sorghum - enzymology | Multigene Family | DNA, Complementary - genetics | Cytochrome P-450 Enzyme System - metabolism | Manihot - enzymology | Phylogeny | Glucosyltransferases - metabolism | Glucosides - genetics | Gene Expression Regulation, Plant | Glucosides - chemistry | Molecular Structure | Plant Proteins - metabolism | Sorghum - genetics | Plant Leaves - enzymology | Glycosides - chemistry | Glucosyltransferases - genetics | Manihot - metabolism | Nitriles - metabolism | Genome, Plant - genetics | Tobacco - metabolism | Loteae - metabolism | Manihot - genetics | Sorghum - metabolism | RNA, Plant - genetics | Glucosides - metabolism | Biological Evolution | Gene Expression Regulation, Enzymologic | Hydrogen Cyanide - metabolism | Plant Proteins - genetics | Plant Leaves - genetics | Plant Leaves - metabolism | Glycosides - metabolism | Tobacco - genetics | Nitriles - chemistry | Cytochrome P-450 Enzyme System - genetics | Loteae - enzymology | Glucosides - biosynthesis | Mutation | Loteae - genetics | Hydrolysis | Legumes | Enzymes | Beans | Genes | Genetic research | Physiological aspects | Nitriles | Mimosaceae | Plant biology | Biosynthesis | Genomics | Plant resistance | Index Medicus
Journal Article
Journal Article
The New phytologist, ISSN 0028-646X, 04/2009, Volume 182, Issue 1, pp. 200 - 212
Journal Article
Plant physiology (Bethesda), ISSN 0032-0889, 12/2011, Volume 157, Issue 4, pp. 2013 - 2022
Legumes host their Rhizobium spp. symbiont in novel root organs called nodules. Nodules originate from differentiated root cortical cells that dedifferentiate... 
Symbiosis | Cytokinins | Legumes | Root nodules | Genes | Plant roots | Cell division | Rhizobium | Plants | Nodules | PLANTS INTERACTING WITH OTHER ORGANISMS | gene family | nodule organogenesis | white clover | medicago-truncatula | diverse roles | lateral root-formation | lotus-japonicus | signal-transduction | nodulation | arabidopsis | Life Sciences & Biomedicine | Plant Sciences | Science & Technology | Genes, Duplicate - genetics | Medicago truncatula - genetics | Symbiosis - physiology | Molecular Sequence Data | Root Nodules, Plant - genetics | Seedlings - genetics | Seedlings - microbiology | Medicago truncatula - microbiology | Phylogeny | Soybeans - genetics | Sinorhizobium - physiology | Base Sequence | Cell Division | Gene Expression Regulation, Plant | Loteae - physiology | Promoter Regions, Genetic | Genome, Plant - genetics | Signal Transduction | Seedlings - cytology | Loteae - microbiology | Sequence Analysis, DNA | Biological Evolution | Medicago truncatula - physiology | Medicago truncatula - cytology | Seedlings - physiology | Genes, Plant - genetics | Soybeans - microbiology | Soybeans - physiology | Cytokinins - metabolism | Plant Growth Regulators - metabolism | Loteae - genetics | Beans | Genomics | Plant genetics | Physiological aspects | Genetic aspects | Research | Mimosaceae | Index Medicus
Journal Article
Journal Article
The Plant cell, ISSN 1040-4651, 2/2014, Volume 26, Issue 2, pp. 678 - 694
Previous analysis of the Lotus histidine kinase1 (Lhk1) cytokinin receptor gene has shown that it is required and also sufficient for nodule formation in Lotus... 
Cytokinins | Receptors | Messenger RNA | Complementary DNA | RESEARCH ARTICLES | Plant roots | Nodulation | Infections | Plants | Nodules | Plant cells | Biochemistry & Molecular Biology | Life Sciences & Biomedicine | Plant Sciences | Science & Technology | Cell Biology | Transcription, Genetic - drug effects | Multigene Family | Arabidopsis - growth & development | Saccharomyces cerevisiae - genetics | Escherichia coli | Root Nodules, Plant - microbiology | Molecular Sequence Data | Loteae - drug effects | Cytokinins - pharmacology | Organogenesis - drug effects | Phylogeny | RNA, Messenger - metabolism | Promoter Regions, Genetic - genetics | Plant Proteins - chemistry | Loteae - growth & development | Receptors, Cell Surface - chemistry | Plant Proteins - metabolism | Root Nodules, Plant - drug effects | Mesorhizobium | Root Nodules, Plant - growth & development | Protein Structure, Tertiary | Arabidopsis - drug effects | RNA, Messenger - genetics | Receptors, Cell Surface - metabolism | Loteae - microbiology | Signal Transduction - genetics | Mutation - genetics | Gene Expression Regulation, Plant - drug effects | Signal Transduction - drug effects | Models, Biological | Organogenesis - genetics | Alleles | Cytokinins - metabolism | Loteae - genetics | Legumes | Beans | Bacterial infections | Developmental biology | Mimosaceae | Analysis | Laughlin, Tom | Index Medicus
Journal Article