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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
Journal Article
The Plant Cell, ISSN 1040-4651, 8/2013, Volume 25, Issue 8, pp. 2907 - 2924
The INDUCER OF CBF EXPRESSION (ICE)—C-REPEAT BINDING FACTOR/DRE BINDING FACTOR1 (CBF/DREB1) transcriptional pathway plays a critical role in modulating cold... 
Proteins | Altitude tolerance | Transcription factors | RESEARCH ARTICLES | Genes | Acclimatization | Gene expression regulation | Plants | Freezing | Plant cells | Seedlings | DEFENSE | BIOCHEMISTRY & MOLECULAR BIOLOGY | COLD-ACCLIMATION | LOW-TEMPERATURE | ANTHOCYANIN ACCUMULATION | PLANT SCIENCES | CELL BIOLOGY | REDUCES CHILLING INJURY | METHYL JASMONATE | THALIANA | MALE-STERILE | GENE-EXPRESSION | ABSCISIC-ACID | Transcription, Genetic - drug effects | Arabidopsis - physiology | Adaptation, Physiological - drug effects | Structure-Activity Relationship | Arabidopsis Proteins - drug effects | Arabidopsis Proteins - metabolism | Basic Helix-Loop-Helix Transcription Factors - metabolism | Adaptation, Physiological - genetics | Stress, Physiological - drug effects | Repressor Proteins - metabolism | Protein Structure, Tertiary | Arabidopsis Proteins - genetics | Arabidopsis - drug effects | Stress, Physiological - genetics | Signal Transduction - genetics | Cyclopentanes - pharmacology | Mutation - genetics | Arabidopsis - genetics | Transcription Factors - metabolism | Up-Regulation - drug effects | Oxylipins - metabolism | Two-Hybrid System Techniques | Gene Expression Regulation, Plant - drug effects | Phenotype | Signal Transduction - drug effects | Genes, Plant - genetics | Models, Biological | Oxylipins - pharmacology | Protein Binding | Cyclopentanes - metabolism | Trans-Activators - metabolism | Arabidopsis thaliana | Physiological aspects | Instrument industry | Chemical properties
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
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)
Journal Article
Plant Physiology, ISSN 0032-0889, 3/2013, Volume 161, Issue 3, pp. 1517 - 1528
Journal Article
Physiologia Plantarum, ISSN 0031-9317, 06/2011, Volume 142, Issue 2, pp. 128 - 143
Journal Article
The Plant Cell, ISSN 1040-4651, 5/2010, Volume 22, Issue 5, pp. 1633 - 1646
Long-distance transport of nitrate requires xylem loading and unloading, a successive process that determines nitrate distribution and subsequent assimilation... 
Cadmium | Xylem | Reverse transcriptase polymerase chain reaction | Epidermal cells | Plant roots | Parenchyma | Nitrates | Plants | Oocytes | Plant cells | ENCODES | ROOT | PHYTOCHELATINS | BIOCHEMISTRY & MOLECULAR BIOLOGY | SHOOT | PLANT SCIENCES | CELL BIOLOGY | HIGHER-PLANTS | CHL1 | GENE-EXPRESSION | ACCUMULATION | LONG-DISTANCE TRANSPORT | THIOL-PEPTIDES | Arabidopsis - enzymology | Xylem - enzymology | Adaptation, Physiological - drug effects | Xylem - drug effects | Gene Expression Profiling | Protein Transport - drug effects | Xylem - genetics | Arabidopsis Proteins - metabolism | Xylem - cytology | Adaptation, Physiological - genetics | Hydrogen-Ion Concentration - drug effects | Stress, Physiological - drug effects | Cell Membrane - drug effects | Arabidopsis Proteins - genetics | Arabidopsis - drug effects | Cadmium - toxicity | Subcellular Fractions - drug effects | Stress, Physiological - genetics | Arabidopsis - cytology | Plant Exudates - metabolism | Mutation - genetics | Anion Transport Proteins - metabolism | Arabidopsis - genetics | Up-Regulation - drug effects | Cell Membrane - enzymology | Nitrates - metabolism | Gene Expression Regulation, Plant - drug effects | Plant Exudates - genetics | Subcellular Fractions - enzymology | Anion Transport Proteins - genetics | Arabidopsis thaliana | Biological transport | Genetic aspects | Health aspects
Journal Article
Plant Physiology, ISSN 0032-0889, 10/2013, Volume 163, Issue 2, pp. 857 - 866
Light and the phytohormone abscisic acid (ABA) regulate overlapping processes in plants, such as seed germination and seedling development. However, the... 
Transcription factors | Plant growth regulators | Genes | Germination | Root growth | SIGNALING AND RESPONSE | Plants | Drought | Seedlings | Seed germination | Plant cells | CIRCADIAN CLOCK | SEED-GERMINATION | PROTEIN | ABI5 | THALIANA | GENE-EXPRESSION | TRANSDUCTION | FHY3 | PHYTOCHROME | NEGATIVE REGULATOR | PLANT SCIENCES | Basic-Leucine Zipper Transcription Factors - metabolism | Up-Regulation - radiation effects | Adaptation, Physiological - drug effects | Plant Roots - genetics | Stress, Physiological - radiation effects | Plant Roots - drug effects | Arabidopsis Proteins - metabolism | Arabidopsis - radiation effects | Seeds - growth & development | Adaptation, Physiological - genetics | Droughts | Germination - genetics | Light | Phytochrome - metabolism | Plant Stomata - drug effects | Osmotic Pressure - radiation effects | Abscisic Acid - metabolism | Stress, Physiological - drug effects | Signal Transduction - radiation effects | Plant Roots - growth & development | Germination - drug effects | Arabidopsis Proteins - genetics | Gene Expression Regulation, Plant - radiation effects | Arabidopsis - drug effects | Seeds - drug effects | Stress, Physiological - genetics | Nuclear Proteins - metabolism | Up-Regulation - genetics | Signal Transduction - genetics | Adaptation, Physiological - radiation effects | Basic-Leucine Zipper Transcription Factors - genetics | Gene Knockout Techniques | Mutation - genetics | Arabidopsis - metabolism | Salinity | Arabidopsis - genetics | Transcription Factors - metabolism | Up-Regulation - drug effects | Abscisic Acid - pharmacology | Gene Expression Regulation, Plant - drug effects | Phenotype | Signal Transduction - drug effects | Osmotic Pressure - drug effects | Plant Stomata - physiology | Plant Roots - radiation effects | Arabidopsis thaliana | Photoreception | Physiological aspects | Abscisic acid | Genetic aspects | Cellular signal transduction | Research | Index Medicus
Journal Article
Plant Physiology, ISSN 0032-0889, 12/2009, Volume 151, Issue 4, pp. 1902 - 1917
Ectomycorrhizas (EMs) alleviate stress tolerance of host plants, but the underlying molecular mechanisms are unknown. To elucidate the basis of EM-induced... 
Fungi | Mycorrhizas | Cell walls | Genes | Stress tolerance | Plant roots | Auxins | Environmental Stress and Adaptation to Stress | Biosynthesis | Plants | Salinity | ARABIDOPSIS-THALIANA | LACCARIA-BICOLOR | PLANT XEROPHYTA-VISCOSA | ARBUSCULAR MYCORRHIZAL SYMBIOSIS | SALICYLIC-ACID | FUNGUS PAXILLUS-INVOLUTUS | POPULUS X CANESCENS | SALT-STRESS | ABSCISIC-ACID | BETULA-PENDULA | PLANT SCIENCES | Solubility - drug effects | Carbohydrate Metabolism - drug effects | Genes, Plant | Salicylic Acid - metabolism | Sodium Chloride - pharmacology | Basidiomycota - physiology | Adaptation, Physiological - drug effects | Carbohydrate Metabolism - genetics | Plant Roots - genetics | Gene Expression Profiling | Mycorrhizae - physiology | Populus - genetics | Plant Roots - drug effects | Plant Roots - physiology | Adaptation, Physiological - genetics | Abscisic Acid - metabolism | Stress, Physiological - drug effects | Populus - microbiology | Stress, Physiological - genetics | Cell Size - drug effects | Signal Transduction - genetics | Populus - physiology | Plant Roots - microbiology | Metabolome - genetics | Mycorrhizae - drug effects | Gene Expression Regulation, Plant - drug effects | Mycorrhizae - genetics | Metabolome - drug effects | Signal Transduction - drug effects | Populus - drug effects | Physiological aspects | Roots (Botany) | Genetic aspects | Research
Journal Article
Nature Neuroscience, ISSN 1097-6256, 2011, Volume 14, Issue 10, pp. 1302 - 1308
Journal Article