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Journal Article
The Plant Journal, ISSN 0960-7412, 11/2012, Volume 72, Issue 3, pp. 378 - 389
Summary Expression of the chloroplast psbD gene encoding the D2 protein of the photosystem II reaction center is regulated by light. In the green alga... 
chloroplast gene expression | redox control | Nac2 | ribonucleoprotein particle | Chlamydomonas | ARABIDOPSIS-THALIANA | BOND FORMATION | LARGE SUBUNIT | RNA-BINDING PROTEIN | PLANT SCIENCES | 5'-UNTRANSLATED REGION | MESSENGER-RNA | POLY(ETHYLENE GLYCOL) | PHOTOSYSTEM-II | NADPH THIOREDOXIN REDUCTASE | Adaptation, Physiological | Darkness | RNA-Binding Proteins - genetics | Protein Biosynthesis | Chloroplast Proteins - genetics | Multiprotein Complexes | Electrophoresis, Gel, Two-Dimensional | Recombinant Proteins | Chlamydomonas reinhardtii - genetics | Light | Photosystem II Protein Complex - genetics | Algal Proteins - genetics | Thioredoxins - metabolism | Chlamydomonas reinhardtii - metabolism | Oxidation-Reduction | Electrophoresis, Polyacrylamide Gel | Gene Expression Regulation, Plant - genetics | Models, Molecular | Chloroplasts - metabolism | Photosystem II Protein Complex - metabolism | Protein Interaction Mapping | Protein Binding | Chlamydomonas reinhardtii - radiation effects | Cytochrome Reductases - metabolism | Algal Proteins - metabolism | Chloroplast Proteins - metabolism | RNA-Binding Proteins - metabolism | Cysteine | Anopheles | Algorithms | RNA | Analysis | Genes | Physiological aspects | Thioredoxin | Gene expression | Recombinant proteins | Cells | Chromatography | Proteins | Chloroplasts | Algae | Plant ecology
Journal Article
Frontiers in Plant Science, ISSN 1664-462X, 07/2014, Volume 5, p. 366
The life cycle of cereal seeds can be divided into two phases, development and germination, separated by a quiescent period. Seed development and germination... 
Development | Cereal | Plant | Programmed cell death | Germination | Seed | development | MAIZE ENDOSPERM | seed | TRITICUM-AESTIVUM | SERINE CARBOXYPEPTIDASES | HORMONAL-REGULATION | PEROXIREDOXIN ANTIOXIDANT | PLANT SCIENCES | germination | cereal | plant | SUFFERING OXIDATIVE STRESS | GENE-EXPRESSION | ENDOSPERM DEVELOPMENT | programmed cell death | WHEAT-GRAIN DEVELOPMENT | BARLEY ALEURONE LAYERS
Journal Article
The Plant Journal, ISSN 0960-7412, 01/2009, Volume 57, Issue 1, pp. 132 - 145
Journal Article
Proceedings of the National Academy of Sciences of the United States of America, ISSN 0027-8424, 11/2017, Volume 114, Issue 45, p. 12069
Thiol-dependent redox regulation allows the rapid adaptation of chloroplast function to unpredictable changes in light intensity. Traditionally, it has been... 
Enzymes | Regulations | Energy use | Photosynthetic apparatus | Carbon dioxide | Optimization | Antioxidants | Genotype & phenotype | Luminous intensity | Energy utilization | Power consumption | Energy | Chloroplasts | Light intensity | Metabolic pathways | NADP | Power efficiency | Photosynthesis | Ferredoxin | Carbon capture and storage | Adaptation | Reductase
Journal Article
Journal Article
Journal Article
The Plant Cell, ISSN 1040-4651, 4/2012, Volume 24, Issue 4, pp. 1534 - 1548
Journal Article
Journal Article
Plant, Cell & Environment, ISSN 0140-7791, 04/2016, Volume 39, Issue 4, pp. 804 - 822
High irradiances may lead to photooxidative stress in plants, and non‐photochemical quenching (NPQ) contributes to protection against excess excitation. One of... 
redox signalling | thylakoid | high‐light acclimation | photosynthesis | thioredoxin | oxidative stress | Oxidative stress | High-light acclimation | Photosynthesis | Redox signalling | Thioredoxin | Thylakoid | REDUCING EQUIVALENTS | PROTECTION MECHANISM | VIOLAXANTHIN DE-EPOXIDASE | THYLAKOID LUMEN | high-light acclimation | THALIANA CHLOROPLASTS | PLANT SCIENCES | OXYGENIC PHOTOSYNTHESIS | REDOX REGULATION | IN-VIVO | PHOTOSYSTEM-II | PROTON MOTIVE FORCE | Arabidopsis - physiology | Chloroplasts - enzymology | Arabidopsis - enzymology | Electron Transport - drug effects | Electron Transport - radiation effects | Thioredoxin-Disulfide Reductase - genetics | Peroxiredoxins - metabolism | Fluorescence | Arabidopsis Proteins - metabolism | Arabidopsis - radiation effects | Thioredoxin-Disulfide Reductase - metabolism | Light | Chloroplasts - radiation effects | Photosystem I Protein Complex - metabolism | Chloroplasts - drug effects | Dithiothreitol - pharmacology | Photosynthesis - radiation effects | Arabidopsis Proteins - genetics | Arabidopsis - drug effects | Chlorophyll - metabolism | Gene Knockout Techniques | Mutation - genetics | Photosystem II Protein Complex - metabolism | Photosynthesis - drug effects | Xanthophylls - metabolism | Nigericin - pharmacology | Arabidopsis thaliana | Chlorophyll | Enzymes | Analysis | Phytochemistry | Chemical properties | Plants | Electron transport | Life Sciences
Journal Article
Plant Signaling & Behavior, ISSN 1559-2316, 01/2009, Volume 4, Issue 1, pp. 23 - 25
Aerobic metabolism inevitably produces reactive oxygen species (ROS), including hydrogen peroxide, which may cause damage to the cell. Besides this toxic... 
Binding | Proteins | Landes | Calcium | Bioscience | Biology | Cell | Cycle | Cancer | Organogenesis | Peroxiredoxin | Oxidative stress | Signaling | Hydrogen peroxide | Cereal seed | Cell death | Thioredoxin reductase | Addendum | peroxiredoxin | signaling | cell death | hydrogen peroxide | cereal seed | thioredoxin reductase | oxidative stress
Journal Article