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dehydroascorbate reductase (349) 349
plant sciences (202) 202
oxidative stress (187) 187
glutathione (157) 157
biochemistry & molecular biology (154) 154
index medicus (141) 141
ascorbate (125) 125
plants (118) 118
dehydroascorbate (114) 114
hydrogen-peroxide (110) 110
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animals (105) 105
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antioxidants (94) 94
ascorbate peroxidase (88) 88
life sciences (87) 87
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monodehydroascorbate reductase (75) 75
glutathione - metabolism (72) 72
humans (72) 72
oxidation-reduction (69) 69
oxidoreductases - metabolism (69) 69
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glutathione reductase (66) 66
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cell biology (56) 56
physiological aspects (54) 54
acid (53) 53
vitamin-c (53) 53
metabolism (49) 49
leaves (48) 48
antioxidants - metabolism (47) 47
dependent dehydroascorbate reductase (47) 47
reactive oxygen species (47) 47
arabidopsis-thaliana (46) 46
molecular sequence data (46) 46
peroxidase (46) 46
amino acid sequence (45) 45
reductase (45) 45
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vitamin c (44) 44
expression (42) 42
hydrogen peroxide (40) 40
biophysics (39) 39
photosynthesis (39) 39
spinach-chloroplasts (39) 39
dehydroascorbic acid - metabolism (38) 38
gene expression (38) 38
oxidoreductases - genetics (38) 38
superoxide dismutase (38) 38
glutaredoxin (37) 37
proteins (37) 37
biosynthesis (36) 36
lipid-peroxidation (36) 36
rats (36) 36
stress (35) 35
catalase (34) 34
chloroplasts (34) 34
plant physiology (34) 34
glutathione transferase (33) 33
plant proteins - metabolism (33) 33
tolerance (33) 33
antioxidant (32) 32
rat-liver (32) 32
spinach (31) 31
gene expression regulation, plant (30) 30
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ozone (28) 28
reactive oxygen species - metabolism (28) 28
arabidopsis (27) 27
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oxygen (26) 26
ascorbate-glutathione cycle (25) 25
hydrogen peroxide - metabolism (25) 25
nadh, nadph oxidoreductases - metabolism (25) 25
dehydroascorbic acid (24) 24
glutathione-reductase (24) 24
thiols (24) 24
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endocrinology & metabolism (23) 23
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rice (23) 23
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cloning, molecular (22) 22
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glutathione transferase - metabolism (22) 22
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Plant Biotechnology Journal, ISSN 1467-7644, 08/2011, Volume 9, Issue 6, pp. 661 - 673
Summary One approach to understanding the Reactive Oxygen Species (ROS)‐scavenging systems in plant stress tolerance is to manipulate the levels of antioxidant... 
chloroplast transformant | ascorbate | glutathione | dehydroascorbate reductase | reactive oxygen species | abiotic stress | Dehydroascorbate reductase | Chloroplast transformant | Reactive oxygen species | Ascorbate | Abiotic stress | Glutathione | TRANSGENIC TOBACCO | OXIDATIVE STRESS | ESCHERICHIA-COLI | ENHANCED TOLERANCE | ASCORBATE PEROXIDASE | PLANT CHLOROPLASTS | DROUGHT TOLERANCE | PLANT SCIENCES | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | MOLECULAR-CLONING | HYDROGEN-PEROXIDE | SUPEROXIDE-DISMUTASE | Chloroplasts - enzymology | Reactive Oxygen Species - metabolism | Oxidative Stress | Glutathione - metabolism | Glutathione Reductase - metabolism | Antioxidants - metabolism | Glutathione Reductase - genetics | Ascorbic Acid - metabolism | Cold-Shock Response | Glutathione Transferase - genetics | Salt-Tolerance | Plant Leaves - drug effects | Chloroplasts - drug effects | Chloroplasts - genetics | Oxidoreductases - metabolism | Plants, Genetically Modified - genetics | Oxidoreductases - genetics | Plants, Genetically Modified - drug effects | Stress, Physiological - genetics | Plants, Genetically Modified - enzymology | Tobacco - drug effects | Glutathione Transferase - metabolism | Metals, Heavy - toxicity | Tobacco - genetics | Paraquat - toxicity | Tobacco - enzymology | Antioxidants | Tobacco industry | Glutathione transferase | Analysis | Physiological aspects | Genetic research | Exhibitions
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Planta, ISSN 0032-0935, 2/2010, Volume 231, Issue 3, pp. 609 - 621
Aluminum (Al) inhibits plant growth partly by causing oxidative damage that is promoted by reactive oxygen species and can be prevented by improving... 
Oxidative stress | Aluminum | Root growth | DNA damage | Plant roots | Lipids | Cell membranes | Plants | Root tips | Transgenic plants | Life Sciences | Dehydroascorbate reductase | Reactive oxygen species | Ascorbic acid | Forestry | Ecology | Agriculture | Plant Sciences | Monodehydroascorbate reductase | Al tolerance | PLASMA-MEMBRANES | OXIDATIVE STRESS | ARABIDOPSIS-THALIANA | DNA-DAMAGE | ENHANCED TOLERANCE | ASCORBIC-ACID | ROOT-TIPS | PLANT SCIENCES | SPINACH-CHLOROPLASTS | PLANTS | HYDROGEN-PEROXIDE | Oxidative Stress | Plants, Genetically Modified - growth & development | Glutathione - metabolism | Plant Roots - genetics | Oxidoreductases - physiology | Ascorbic Acid - metabolism | Plant Roots - drug effects | NADH, NADPH Oxidoreductases - physiology | Lipid Peroxidation - drug effects | Plant Proteins - metabolism | NADH, NADPH Oxidoreductases - metabolism | Plant Roots - growth & development | NADH, NADPH Oxidoreductases - genetics | Plant Roots - metabolism | Oxidoreductases - metabolism | Oxidoreductases - genetics | Plant Proteins - physiology | Plants, Genetically Modified - drug effects | Plants, Genetically Modified - enzymology | Tobacco - drug effects | Aluminum - toxicity | Hydrogen Peroxide - metabolism | Arabidopsis - genetics | Plant Proteins - genetics | Tobacco - genetics | DNA Damage | Tobacco - enzymology | Antioxidants | Hydrogen peroxide | Tobacco industry | DNA | Plant biochemical genetics | Genetic engineering | Universities and colleges
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FEBS Letters, ISSN 0014-5793, 2008, Volume 582, Issue 13, pp. 1901 - 1906
Journal Article
Planta, ISSN 0032-0935, 4/2007, Volume 225, Issue 5, pp. 1255 - 1264
Journal Article
Molecules and Cells, ISSN 1016-8478, 10/2013, Volume 36, Issue 4, pp. 304 - 315
Journal Article
Planta, ISSN 0032-0935, 6/2013, Volume 237, Issue 6, pp. 1613 - 1625
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