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Science (American Association for the Advancement of Science), ISSN 1095-9203, 2009, Volume 323, Issue 5910, pp. 95 - 101
The perception of pathogen or microbe-associated molecular pattern molecules by plants triggers a basal defense response analogous to animal innate immunity... 
Hydrolysis | Pathogens | Molecules | Genes | Glucosinolates | Biosynthesis | Research Articles | Plants | Pretreatment | Seedlings | Plant cells | NONHOST RESISTANCE | ABC TRANSPORTER | PHYTOCHELATIN SYNTHASE | THALIANA | BIOSYNTHESIS | MULTIDISCIPLINARY SCIENCES | GLUTATHIONE-DEFICIENT MUTANT | CELL WALL | ABSCISIC-ACID | METAL-BINDING PEPTIDES | DISEASE RESISTANCE | Genes, Plant | Glucans - biosynthesis | Salicylic Acid - metabolism | Aminoacyltransferases - genetics | Arabidopsis - immunology | Glucosinolates - metabolism | Ethylenes - metabolism | Arabidopsis Proteins - metabolism | Indoles - metabolism | Salicylic Acid - pharmacology | ATP-Binding Cassette Transporters - genetics | Peptide Fragments - immunology | Gene Expression Regulation, Plant | ATP-Binding Cassette Transporters - metabolism | Indoles - pharmacology | Arabidopsis Proteins - genetics | Flagellin - immunology | Signal Transduction | N-Glycosyl Hydrolases - genetics | Transcription Factors - genetics | Immunity, Innate | Arabidopsis - metabolism | N-Glycosyl Hydrolases - metabolism | Arabidopsis - genetics | Transcription Factors - metabolism | Arabidopsis - microbiology | Aminoacyltransferases - metabolism | Glycoside Hydrolases - metabolism | Mutation | Immune response | Arabidopsis | Plant immunology | Physiological aspects | Research | Properties | Plant metabolites | Genetics | Molecular biology | Metabolism | Botany
Journal Article
Journal Article
Plant, cell and environment, ISSN 0140-7791, 2019, Volume 42, Issue 7, pp. 2309 - 2323
Feeding by insect herbivores such as caterpillars and aphids induces plant resistance mechanisms that are mediated by the phytohormones jasmonic acid (JA) and... 
phloem-sucking herbivores | secondary metabolites | Arabidopsis | retrograde signalling | indole glucosinolates | aphid resistance | phytohormone signalling | phloem‐sucking herbivores | TREHALOSE METABOLISM | ARABIDOPSIS-THALIANA | SIGNALING PATHWAYS | INSECTICIDE RESISTANCE | PLANT SCIENCES | SALICYLIC-ACID | CABBAGE APHID | HERBIVORE | GLUCOSINOLATE BIOSYNTHESIS | JASMONATE | MYZUS-PERSICAE | Erythritol - analogs & derivatives | Salicylic Acid - metabolism | Cytochrome P-450 Enzyme System - metabolism | Glucosinolates - metabolism | Arabidopsis Proteins - metabolism | Erythritol - metabolism | Disease Resistance - genetics | Erythritol - pharmacology | Arabidopsis Proteins - genetics | Sugar Phosphates | Erythritol - genetics | Metabolome | Arabidopsis - metabolism | Secondary Metabolism | Arabidopsis - genetics | Transcription Factors - metabolism | Oxylipins - metabolism | Brassica | Gene Expression Regulation, Plant - drug effects | Metabolic Networks and Pathways - genetics | Animals | Disease Resistance - physiology | Signal Transduction - drug effects | Cyclopentanes - metabolism | Plant Growth Regulators - metabolism | Plant Growth Regulators - pharmacology | Aphids - drug effects | Phosphates | Arabidopsis thaliana | Enzymes | Physiological aspects | Aphididae | Genetic transcription | Plants | Plant hormones | Plant metabolites | Salicylic acid | Transcription | Genes | Plant resistance | Crosstalk | Biosynthesis | Metabolism | Gene expression | Erythritol | Signal transduction | Molecular modelling | Pathways | Acids | Insects | Metabolites | Caterpillars | Metabolic engineering | Metabolic pathways | Herbivores | Jasmonic acid | Original
Journal Article
Journal Article
The Plant Journal, ISSN 0960-7412, 05/2014, Volume 78, Issue 4, pp. 659 - 673
.... The BS translatome strongly implies that the BS plays specific roles in sulfur transport and metabolism, glucosinolate biosynthesis and trehalose... 
Arabidopsis thaliana | ERS374056–ERS374061 | sulfur | bundle sheath | translatome | C4 evolution | ERS374056-ERS374061 | C-4 PHOTOSYNTHESIS PLANTS | ASCORBATE-PEROXIDASE-2 EXPRESSION | FUNCTIONAL-DIFFERENTIATION | MAIZE LEAVES | SULFATE ASSIMILATION | C4 PLANTS | FLAVERIA-TRINERVIA | GLUTATHIONE SYNTHESIS | PLANT SCIENCES | C-4 evolution | GLYCINE DECARBOXYLASE | MESOPHYLL PROTOPLASTS | Alternative Splicing | Plant Roots - genetics | Ribosomes - metabolism | Glucosinolates - metabolism | RNA, Messenger - metabolism | Arabidopsis Proteins - metabolism | Protein Isoforms - metabolism | Photosynthesis - genetics | Plants, Genetically Modified | Gene Expression Regulation, Plant | Mesophyll Cells - metabolism | Sulfur - metabolism | Arabidopsis Proteins - genetics | Plant Roots - metabolism | Arabidopsis - cytology | RNA, Messenger - genetics | Plant Roots - cytology | Plant Leaves - cytology | Arabidopsis - metabolism | Arabidopsis - genetics | Microscopy, Confocal | Metabolic Networks and Pathways - genetics | Trehalose - metabolism | Plant Leaves - genetics | Plant Leaves - metabolism | Ribosomes - genetics | Plant Vascular Bundle - cytology | Plant Vascular Bundle - metabolism | Protein Isoforms - genetics | Physiological aspects | Sulfur compounds | Sulfur | Analysis | Plant biology | Metabolism | Ribonucleic acid--RNA
Journal Article
Plant physiology (Bethesda), ISSN 1532-2548, 2013, Volume 164, Issue 1, pp. 48 - 54
Journal Article
Trends in plant science, ISSN 1360-1385, 2006, Volume 11, Issue 2, pp. 89 - 100
Journal Article
Journal Article
Journal of experimental botany, ISSN 0022-0957, 1/2013, Volume 64, Issue 4, pp. 1039 - 1048
Journal Article
PLoS ONE, ISSN 1932-6203, 04/2012, Volume 7, Issue 4, p. e35545
.... In turn, this may influence the evolution of plant metabolism giving rise to e. g. new chemical defenses... 
ISOTHIOCYANATES | PIERIS-RAPAE | DEFENSE | ARABIDOPSIS-THALIANA | GENETIC-BASIS | EVOLUTION | MULTIDISCIPLINARY SCIENCES | CYANOGENIC GLYCOSIDES | NITRILE FORMATION | PLANTS | Microsomes - metabolism | Thiocyanates - metabolism | Thioglucosides - metabolism | Nasturtium - genetics | Glucosinolates - metabolism | Aminohydrolases - genetics | Butterflies - metabolism | Nasturtium - metabolism | Larva - enzymology | Tropaeolum - genetics | Insect Proteins - isolation & purification | Nitriles - metabolism | Hydroxylation | Larva - metabolism | Microsomes - enzymology | Herbivory | Arabidopsis - metabolism | Arabidopsis - genetics | Animals | Feces - chemistry | Plant Leaves - genetics | Plant Leaves - metabolism | Insect Proteins - chemistry | Tropaeolum - metabolism | Aminohydrolases - metabolism | Arabidopsis thaliana | Enzymes | Evolutionary biology | Analysis | Physiological aspects | Amino acids | Evolution | Cyanides | Genetic engineering | Plants | Butterflies | Plant metabolites | Adaptations | Larvae | Cyanide | L-3-Cyanoalanine synthase | Fumigation | Seeds | Chemical defense | Genes | Glucosinolates | Biosynthesis | Biology | Mustard oil | Transgenic plants | Proteins | Ecological effects | Secondary metabolites | Metabolites | Physiology | Species | Historical metallurgy | Plants (botany) | Acids | Ecological niches | Insects | Rhodanese | Butterflies & moths | Mustard | Herbivores | Plant metabolism | Pharmaceuticals
Journal Article
Journal Article
Plant physiology (Bethesda), ISSN 0032-0889, 8/2015, Volume 168, Issue 4, pp. 1573 - 1589
Journal Article