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Plant Physiology, ISSN 0032-0889, 3/2013, Volume 161, Issue 3, pp. 1375 - 1391
MicroRNA319 (miR319) is one of the first characterized and conserved microRNA families in plants and has been demonstrated to target TCP (for TEOSINTE... 
Leaves | Salts | MicroRNA | Genes | SIGNALING AND RESPONSE | Plants | Drought | Dehydration | Transgenic plants | Rice | Salinity | ROOT ARCHITECTURAL TRAITS | ARABIDOPSIS-THALIANA | ABIOTIC STRESS | SMALL RNAS | DURUM-WHEAT | WATER-STRESS | RESPONSIVE MICRORNAS | STRESS-REGULATED MICRORNAS | SALINITY TOLERANCE | AGROSTIS-STOLONIFERA L | PLANT SCIENCES | Agrostis - anatomy & histology | Sodium Chloride - pharmacology | Adaptation, Physiological - drug effects | Molecular Sequence Data | MicroRNAs - metabolism | Plant Development - drug effects | Sodium - metabolism | Cell Membrane - physiology | Plant Development - genetics | Salt-Tolerance - drug effects | Oryza - genetics | Photosynthesis - genetics | Adaptation, Physiological - genetics | Droughts | Base Sequence | Organ Size - genetics | Plants, Genetically Modified | Salt-Tolerance - genetics | Plant Leaves - drug effects | Stress, Physiological - drug effects | Agrostis - drug effects | Cell Membrane - drug effects | Agrostis - growth & development | Stress, Physiological - genetics | Gene Expression Regulation, Developmental - drug effects | Genetic Pleiotropy - drug effects | Water - metabolism | Waxes - metabolism | Oryza - drug effects | Gene Expression Regulation, Plant - drug effects | Organ Size - drug effects | Phenotype | Agrostis - genetics | Genes, Plant - genetics | Photosynthesis - drug effects | Plant Leaves - anatomy & histology | MicroRNAs - genetics | Physiological aspects | Development | Genetic aspects | Stress (Physiology) | Research | Gene expression | Health aspects | Bentgrasses | Index Medicus
Journal Article
Plant Physiology, ISSN 0032-0889, 6/2011, Volume 156, Issue 2, pp. 647 - 662
Drought stress at the reproductive stage causes pollen sterility and grain loss in wheat (Triticum aestivum). Drought stress induces abscisic acid (ABA)... 
Grains | Genes | Anthers | Pollen | Biosynthesis | Genomes | Plants | Drought | Transgenic plants | ENVIRONMENTAL STRESS AND ADAPTATION TO STRESS | Rice | ORYZA-SATIVA L | MALE-STERILITY | HIGH-TEMPERATURE | GENE-EXPRESSION | ABA CATABOLISM | HORDEUM-VULGARE L | POLLEN DEVELOPMENT | ANTHER DEHISCENCE | SPRING WHEAT CULTIVARS | WATER-DEFICIT | PLANT SCIENCES | Plant Vascular Bundle - drug effects | Triticum - physiology | Adaptation, Physiological - drug effects | Promoter Regions, Genetic - genetics | Oryza - genetics | Adaptation, Physiological - genetics | Droughts | Gene Deletion | Plants, Genetically Modified | Flowers - anatomy & histology | Abscisic Acid - metabolism | Plant Proteins - metabolism | Stress, Physiological - drug effects | Homeostasis - drug effects | Cold Temperature | Seeds - metabolism | Seeds - drug effects | Stress, Physiological - genetics | Flowers - cytology | Oryza - physiology | Oryza - drug effects | Reproduction - drug effects | Triticum - genetics | Abscisic Acid - pharmacology | Plant Proteins - genetics | Gene Expression Regulation, Plant - drug effects | Genes, Plant - genetics | Plant Vascular Bundle - cytology | Plant Vascular Bundle - metabolism | Flowers - drug effects | Kinetics | Flowers - genetics | Triticum - drug effects | Control | Reproduction | Abscisic acid | Physiological aspects | Homeostasis | Genetic aspects | Stress (Physiology) | Index Medicus
Journal Article
Journal Article
Plant Physiology, ISSN 0032-0889, 8/2012, Volume 159, Issue 4, pp. 1571 - 1581
A number of phosphate (Pi) starvation- or mycorrhiza-regulated Pi transporters belonging to the Pht1 family have been functionally characterized in several... 
Phosphates | Yeasts | Leaves | Plant roots | Phosphate transport proteins | Root hairs | Plants | Transgenic plants | ENVIRONMENTAL STRESS AND ADAPTATION TO STRESS | Rice | Seedlings | RESPONSES | HOMEOSTASIS | ARBUSCULAR MYCORRHIZAL SYMBIOSIS | GENE | BARLEY | KINETIC-PROPERTIES | PLANTS | ARABIDOPSIS | SACCHAROMYCES-CEREVISIAE | PHT1 FAMILY | PLANT SCIENCES | Protons | Oryza - metabolism | Saccharomyces cerevisiae - genetics | Phosphate Transport Proteins - metabolism | Molecular Sequence Data | Saccharomyces cerevisiae - drug effects | Cell Membrane - physiology | Genetic Complementation Test | Gene Knockdown Techniques | Plant Roots - drug effects | Oryza - growth & development | Oryza - genetics | Plants, Genetically Modified | Biological Transport - drug effects | Plant Leaves - drug effects | Plant Proteins - metabolism | Phosphate Transport Proteins - genetics | Phosphates - pharmacology | Plant Roots - growth & development | Cell Membrane - drug effects | Membrane Potentials - drug effects | Plant Roots - metabolism | Plant Roots - cytology | Oryza - drug effects | Mutation - genetics | Up-Regulation - drug effects | Plant Proteins - genetics | Gene Expression Regulation, Plant - drug effects | Phenotype | Phosphates - metabolism | Plant Leaves - metabolism | Plant Shoots - metabolism | Biological transport | Plant genetics | Physiological aspects | Genetic aspects | Research | Index Medicus
Journal Article
Plant Physiology, ISSN 0032-0889, 4/2012, Volume 158, Issue 4, pp. 1755 - 1768
OsbZIP46 is one member of the third subfamily of bZIP transcription factors in rice (Oryza sativa). It has high sequence similarity to ABA-responsive element... 
Yeasts | Phosphorylation | Drought tolerance | Genes | Stress tolerance | Plants | Drought | Transgenic plants | Transactivation | ENVIRONMENTAL STRESS AND ADAPTATION TO STRESS | Rice | ACID-INDUCED TRANSCRIPTION | ANION CHANNEL SLAC1 | SIGNAL-TRANSDUCTION | REPRESSION DOMAIN | 2C PROTEIN PHOSPHATASES | REGULATORY NETWORK | ELEMENT-BINDING FACTORS | RESPONSIVE GENE-EXPRESSION | ABIOTIC STRESS RESPONSES | ABSCISIC-ACID | PLANT SCIENCES | Transcription, Genetic - drug effects | Oligonucleotide Array Sequence Analysis | Adaptation, Physiological - drug effects | Molecular Sequence Data | Gene Expression Profiling | Oryza - growth & development | Oryza - genetics | Adaptation, Physiological - genetics | Droughts | Germination - genetics | Plants, Genetically Modified | Protein Binding - drug effects | Plant Proteins - metabolism | Stress, Physiological - drug effects | Phosphorylation - drug effects | Germination - drug effects | Stress, Physiological - genetics | Oryza - physiology | Oryza - drug effects | Transcription Factors - genetics | Transcription Factors - metabolism | Abscisic Acid - pharmacology | Plant Proteins - genetics | Gene Expression Regulation, Plant - drug effects | Mitogen-Activated Protein Kinases - metabolism | Transcription factors | China | Plant genetics | Physiological aspects | Genetic aspects | Research | Health aspects | Index Medicus
Journal Article
Journal Article
Plant and Cell Physiology, ISSN 0032-0781, 7/2008, Volume 49, Issue 7, pp. 1092 - 1111
Methyl jasmonate (MeJa) is a well-known plant stress hormone. Upon exposure to stress, MeJa is produced and causes activation of programmed cell death (PCD)... 
Photochemical efficiency | Reactive oxygen species | Cell death | Mitochondrial dynamics | Chloroplast | Methyl jasmonate | OXIDATIVE STRESS | ARABIDOPSIS-THALIANA | DEFENSE RESPONSES | cell death | PLANT-CELLS | SIGNALING MOLECULES | methyl jasmonate | photochemical efficiency | mitochondrial dynamics | PLANT SCIENCES | CELL BIOLOGY | CYTOCHROME-C | chloroplast | DELAYED FLUORESCENCE | SUSPENSION-CULTURES | reactive oxygen species | GENE-EXPRESSION | HYDROGEN-PEROXIDE | Reactive Oxygen Species - metabolism | Mitochondrial Swelling - drug effects | Cyclosporine - pharmacology | Oryza - metabolism | Fluorescence | Membrane Potential, Mitochondrial - drug effects | Protoplasts - cytology | Protoplasts - metabolism | Time Factors | Cell Death - drug effects | Chloroplasts - drug effects | Vicia faba - metabolism | Cell Survival - drug effects | Green Fluorescent Proteins - metabolism | Arabidopsis - drug effects | Vicia faba - drug effects | Subcellular Fractions - drug effects | Arabidopsis - cytology | Mitochondria - metabolism | Antioxidants - pharmacology | Cyclopentanes - pharmacology | Mitochondria - drug effects | Oryza - drug effects | Seedlings - drug effects | Protoplasts - drug effects | Chloroplasts - metabolism | Arabidopsis - metabolism | Photosynthesis - drug effects | Oxylipins - pharmacology | Acetates - pharmacology | Seedlings - metabolism | Index Medicus
Journal Article
Journal of Experimental Botany, ISSN 0022-0957, 1/2011, Volume 62, Issue 8, pp. 2797 - 2813
To evaluate the genotypic variation of salt stress response in tomato, physiological analyses and a proteomic approach have been conducted in parallel on four... 
Oxidative stress | Salt tolerance | Salts | Plant physiology | Plant roots | Proteomics | Plants | Proteomes | Genotypes | RESEARCH PAPER | Salinity | salt stress | Genetic variability | tomato | Solanum lycopercicum | root | proteome | DIFFERENTIALLY EXPRESSED PROTEINS | CELL-SUSPENSION CULTURES | OXIDATIVE STRESS | OSMOTIC-STRESS | STRESS-RESPONSIVE PROTEINS | UDP-GLUCOSE PYROPHOSPHORYLASE | MASS-SPECTROMETRY | PLANT SCIENCES | ORYZA-SATIVA L | GENE-EXPRESSION | SALINITY TOLERANCE | Sodium Chloride - pharmacology | Antioxidants - metabolism | Adaptation, Physiological - drug effects | Electrophoresis, Gel, Two-Dimensional | Sodium - metabolism | Lycopersicon esculentum - physiology | Plant Roots - drug effects | Salt-Tolerance - drug effects | Cell Wall - drug effects | Lycopersicon esculentum - growth & development | Genetic Variation - drug effects | Adaptation, Physiological - genetics | Chlorides - metabolism | Mass Spectrometry | Chromatography, Liquid | Salt-Tolerance - genetics | Lycopersicon esculentum - genetics | Membrane Proteins - metabolism | Plant Proteins - metabolism | Stress, Physiological - drug effects | Lycopersicon esculentum - drug effects | Carbon - metabolism | Plant Roots - metabolism | Stress, Physiological - genetics | Genotype | Up-Regulation - genetics | Osmosis - drug effects | Down-Regulation - drug effects | Down-Regulation - genetics | Transcription Factors - metabolism | Up-Regulation - drug effects | Plant Proteins - genetics | Gene Expression Regulation, Plant - drug effects | Cell Wall - metabolism | Proteome - metabolism | Energy Metabolism - drug effects | Index Medicus
Journal Article
Plant Physiology, ISSN 0032-0889, 7/2012, Volume 159, Issue 3, pp. 1073 - 1085
Journal Article
Journal Article
Plant Physiology, ISSN 0032-0889, 3/2013, Volume 161, Issue 3, pp. 1202 - 1216
OsTZF1 is a member of the CCCH-type zinc finger gene family in rice (Oryza sativa). Expression of OsTZF1 was induced by drought, high-salt stress, and hydrogen... 
Oxidative stress | RNA | Genes | Stress tolerance | Cellular senescence | Gene expression regulation | Plants | ECOPHYSIOLOGY AND SUSTAINABILITY | Zinc | Rice | Seedlings | LEAF SENESCENCE | SALT STRESS | HIGH-SALINITY STRESSES | ARABIDOPSIS-THALIANA | TRANSGENIC TOBACCO | FUNCTIONAL-ANALYSIS | BETA-GLUCURONIDASE | EXPRESSION PROFILES | ABSCISIC-ACID | TRANSCRIPTION FACTOR | PLANT SCIENCES | Organ Specificity - drug effects | Protein Binding - genetics | Reactive Oxygen Species - metabolism | Sodium Chloride - pharmacology | Gene Expression Profiling | Protein Transport - drug effects | RNA, Plant - metabolism | Organ Specificity - genetics | Oryza - growth & development | Peptides - metabolism | Oryza - genetics | RNA Interference | Adaptation, Physiological - genetics | Protein Binding - drug effects | Plant Proteins - metabolism | Subcellular Fractions - drug effects | Stress, Physiological - genetics | Oxidative Stress - genetics | Oryza - physiology | Transcriptome - drug effects | Transcriptome - genetics | Oryza - drug effects | Subcellular Fractions - metabolism | Plant Proteins - genetics | Gene Expression Regulation, Plant - drug effects | Metals - metabolism | Phenotype | Genes, Plant - genetics | Zinc Fingers - genetics | Oxidative Stress - drug effects | Plant Growth Regulators - pharmacology | Genetic aspects | Stress (Physiology) | Zinc finger proteins | Research | Genetic regulation | Index Medicus
Journal Article
Plant Cell, ISSN 1040-4651, 3/2015, Volume 27, Issue 3, pp. 823 - 838
Journal Article
Plant Physiology, ISSN 0032-0889, 4/2012, Volume 158, Issue 4, pp. 1955 - 1964
Journal Article