malic acid and chlorophyll a

malic acid has been researched along with chlorophyll a in 22 studies

Research

Studies (22)

TimeframeStudies, this research(%)All Research%
pre-19900 (0.00)18.7374
1990's0 (0.00)18.2507
2000's6 (27.27)29.6817
2010's11 (50.00)24.3611
2020's5 (22.73)2.80

Authors

AuthorsStudies
Abadía, A; Abadía, J; López-Millán, AF; Morales, F1
Laporte, MM; Shen, B; Tarczynski, MC1
Borland, A; Griffiths, H; Haslam, R; Maxwell, K1
Broetto, F; Lüttge, U; Monteiro Duarte, H1
Abdelly, C; Albacete, A; Ben Salah, I; Haouala, R; Labidi, N; Martínez Andújar, C; Martinez, V; Pérez-Alfocea, F; Zribi, F1
Fischer-Schliebs, E; Kornas, A; Lüttge, U; Miszalski, Z1
Andreo, C; Drincovich, MF; Edwards, GE; Fahnenstich, H; Maier, A; Maurino, VG; Saigo, M; Schleifenbaum, F; Voznesenskaya, EV; Zell, C; Zell, MB1
Kawasaki, M; Kinoshita, H; Miyake, H; Nagasaki, J; Sugiyama, T; Takito, S; Taniguchi, M; Weber, APM; Yamamoto, A; Yoshikawa, N1
Battistelli, A; Chen, ZH; Famiani, F; Leegood, RC; Moscatello, S; Walker, RP1
Amancio, S; Aragón, C; Carvalho, L; Escalona, M; González, J1
Bräutigam, A; Colmsee, C; Denton, AK; Fahnenstich, H; Pick, TR; Pieruschka, R; Rascher, U; Schlüter, U; Scholz, U; Sonnewald, U; Weber, AP1
Serrano, M; Tucker, GA; Valero, D; Zapata, PJ1
Bashyam, L; Padmasree, K; Scheibe, R; Senthilkumaran, B; Vishwakarma, A1
Alexandersson, E; Coetzee, Z; Deloire, A; du Plessis, K; Eyeghe-Bickong, HA; Jacobson, DA; Vivier, MA; Young, PR1
Ahmad, N; Israr, D; Khan, KS; Masood, S; Mustafa, G; Shahzad, M1
Castillo-Castro, E; De-la-Peña, C; Duarte-Aké, F; Espadas, F; Pool, FB; Robert, ML; Santamaría, JM1
Göçmen, K; Gürgan, M; Ipekoğlu, EM; Öz, MT; Yücel, M1
Chen, HC; He, DN; He, XR; Huang, C; Li, R; Wei, H; Wu, KJ; Zhang, SL1
Barros, KA; Barth, S; Davis, SJ; Esteves-Ferreira, AA; Finnan, J; Inaba, M; Meally, H; Sulpice, R1
An, JP; Hao, YJ; Ji, XL; Sun, W; Tong, XS; Wang, XF; Wang, XN; You, CX; Zhang, JC; Zhao, Q1
Bose, J; Gilliham, M; Kamran, M; Ramesh, SA; Tyerman, SD1
Deng, S; He, J; Li, X; Lin, D; Luan, A; Ma, J; Mao, X; Peng, L; Tao, X; Yang, L; Yu, S; Zang, Y; Zhang, X; Zhao, H; Zhou, X1

Other Studies

22 other study(ies) available for malic acid and chlorophyll a

ArticleYear
Iron deficiency-associated changes in the composition of the leaf apoplastic fluid from field-grown pear (Pyrus communis L.) trees.
    Journal of experimental botany, 2001, Volume: 52, Issue:360

    Topics: Anions; Ascorbic Acid; Biological Transport; Carbohydrates; Cations; Chlorophyll; Citric Acid; Enzymes; Fruit; Hydrogen-Ion Concentration; Iron; Iron Chelating Agents; Malates; Nucleotides; Plant Diseases; Plant Leaves; Rosales; Trees

2001
Engineering for drought avoidance: expression of maize NADP-malic enzyme in tobacco results in altered stomatal function.
    Journal of experimental botany, 2002, Volume: 53, Issue:369

    Topics: Acclimatization; Biological Transport, Active; Carbon Dioxide; Chlorides; Chlorophyll; Disasters; Gene Expression Regulation, Enzymologic; Gene Expression Regulation, Plant; Malate Dehydrogenase; Malates; Nicotiana; Phenotype; Plant Structures; Plants, Genetically Modified; Potassium; Water; Zea mays

2002
Physiological responses of the CAM epiphyte Tillandsia usneoides L. (Bromeliaceae) to variations in light and water supply.
    Journal of plant physiology, 2003, Volume: 160, Issue:6

    Topics: Acclimatization; Carbon Dioxide; Chlorophyll; Light; Malates; Phosphoenolpyruvate Carboxylase; Photosynthesis; Photosynthetic Reaction Center Complex Proteins; Ribulose-Bisphosphate Carboxylase; Tillandsia; Water

2003
Responses of chlorophyll fluorescence parameters of the facultative halophyte and C3-CAM intermediate species Mesembryanthemum crystallinum to salinity and high irradiance stress.
    Journal of plant physiology, 2007, Volume: 164, Issue:7

    Topics: Chlorophyll; Fluorescence; Light; Malates; Mesembryanthemum; Photosynthesis; Photosystem II Protein Complex; Sodium Chloride

2007
Response of nitrogen fixation in relation to nodule carbohydrate metabolism in Medicago ciliaris lines subjected to salt stress.
    Journal of plant physiology, 2009, Mar-15, Volume: 166, Issue:5

    Topics: Biological Transport; Carbohydrate Metabolism; Chlorophyll; Ions; Malates; Medicago; Nitrogen Fixation; Plant Leaves; Root Nodules, Plant; Sodium Chloride; Stress, Physiological; Sucrose

2009
Adaptation of the obligate CAM plant Clusia alata to light stress: Metabolic responses.
    Journal of plant physiology, 2009, Nov-15, Volume: 166, Issue:17

    Topics: Adaptation, Physiological; Chlorophyll; Chlorophyll A; Citric Acid; Clusia; Decarboxylation; Fluorescence; Light; Malates; Photosynthesis; Photosystem II Protein Complex; Stress, Physiological; Xanthophylls; Zeaxanthins

2009
Analysis of Arabidopsis with highly reduced levels of malate and fumarate sheds light on the role of these organic acids as storage carbon molecules.
    Plant physiology, 2010, Volume: 152, Issue:3

    Topics: Arabidopsis; Carbon; Carbon Dioxide; Chlorophyll; Chloroplasts; Fluorescence; Fumarates; Gas Chromatography-Mass Spectrometry; Malates; Microscopy, Electron, Transmission; Phenotype; Plants, Genetically Modified

2010
The chloroplastic 2-oxoglutarate/malate transporter has dual function as the malate valve and in carbon/nitrogen metabolism.
    The Plant journal : for cell and molecular biology, 2011, Volume: 65, Issue:1

    Topics: Arabidopsis; Arabidopsis Proteins; Carbon; Chlorophyll; Chloroplasts; Dicarboxylic Acid Transporters; Malates; Nitrogen; Plants, Genetically Modified; Reverse Transcriptase Polymerase Chain Reaction

2011
Metabolism of the seed and endocarp of cherry (Prunus avium L.) during development.
    Plant physiology and biochemistry : PPB, 2011, Volume: 49, Issue:8

    Topics: Aspartate Aminotransferases; Carbohydrate Metabolism; Chlorophyll; Electrophoresis, Polyacrylamide Gel; Glutamate-Ammonia Ligase; Malates; Phosphoenolpyruvate Carboxykinase (ATP); Plant Extracts; Plant Proteins; Prunus; Ribulose-Bisphosphate Carboxylase; Seed Storage Proteins; Seeds

2011
The physiology of ex vitro pineapple (Ananas comosus L. Merr. var MD-2) as CAM or C3 is regulated by the environmental conditions.
    Plant cell reports, 2012, Volume: 31, Issue:4

    Topics: Abscisic Acid; Acclimatization; Agricultural Irrigation; Ananas; Biomass; Carbon; Chlorophyll; Chlorophyll A; Environment; Fluorescence; Humidity; Light; Malates; Oxidative Stress; Photosynthesis; Plant Leaves; Temperature; Waxes

2012
Systems analysis of a maize leaf developmental gradient redefines the current C4 model and provides candidates for regulation.
    The Plant cell, 2011, Volume: 23, Issue:12

    Topics: Chlorophyll; Cluster Analysis; Enzyme Activation; Gene Expression Regulation, Plant; Genes, Plant; Light; Malates; Metabolome; Oxygen; Photosynthesis; Plant Leaves; Plant Proteins; Pyruvic Acid; Transcription Factors; Transcription, Genetic; Transcriptome; Zea mays

2011
Quality parameters and antioxidant properties in organic and conventionally grown broccoli after pre-storage hot water treatment.
    Journal of the science of food and agriculture, 2013, Mar-30, Volume: 93, Issue:5

    Topics: Antioxidants; Ascorbic Acid; Brassica; Chlorophyll; Flowering Tops; Food Preservation; Food Quality; Food Storage; Food, Organic; Hot Temperature; Hydrophobic and Hydrophilic Interactions; Malates; Phenols; Pigments, Biological; Plant Stems; Spain; Tartrates; Time Factors

2013
Physiological role of AOX1a in photosynthesis and maintenance of cellular redox homeostasis under high light in Arabidopsis thaliana.
    Plant physiology and biochemistry : PPB, 2014, Volume: 81

    Topics: Antioxidants; Arabidopsis; Arabidopsis Proteins; Cell Respiration; Chlorophyll; Gene Expression Regulation, Plant; Homeostasis; Light; Lipid Peroxidation; Malates; Malondialdehyde; Mitochondrial Proteins; Oxaloacetic Acid; Oxidation-Reduction; Oxidoreductases; Oxygen; Photosynthesis; Photosystem II Protein Complex; Plant Leaves; Plant Proteins; Reactive Oxygen Species; Stress, Physiological

2014
Grapevine Plasticity in Response to an Altered Microclimate: Sauvignon Blanc Modulates Specific Metabolites in Response to Increased Berry Exposure.
    Plant physiology, 2016, Volume: 170, Issue:3

    Topics: Carbohydrate Metabolism; Carotenoids; Chlorophyll; Fruit; Genes, Plant; Malates; Metabolic Networks and Pathways; Microclimate; Models, Biological; Plant Leaves; Tartrates; Terpenes; Vitis; Wine; Xanthophylls

2016
Interactive effects of phosphorus and Pseudomonas putida on chickpea (Cicer arietinum L.) growth, nutrient uptake, antioxidant enzymes and organic acids exudation.
    Plant physiology and biochemistry : PPB, 2016, Volume: 108

    Topics: Antioxidants; Biological Availability; Chlorophyll; Cicer; Citric Acid; Enzymes; Hydrogen-Ion Concentration; Malates; Oxalic Acid; Phosphorus; Plant Exudates; Plant Leaves; Pseudomonas putida; Rhizosphere; Seeds; Soil

2016
Physiological differences and changes in global DNA methylation levels in Agave angustifolia Haw. albino variant somaclones during the micropropagation process.
    Plant cell reports, 2016, Volume: 35, Issue:12

    Topics: Agave; Carotenoids; Chlorophyll; Chromosome Segregation; Clone Cells; DNA Methylation; Malates; Phenotype; Photoperiod; Plant Stomata; Tissue Culture Techniques

2016
Cloning and heterologous expression of chlorophyll a synthase in Rhodobacter sphaeroides.
    Journal of basic microbiology, 2017, Volume: 57, Issue:3

    Topics: Bacteriochlorophylls; Carbon-Oxygen Ligases; Chlorophyll; Chlorophyll A; Cloning, Molecular; Gene Expression; Genes, Bacterial; Genetic Engineering; Glutamic Acid; Hydrogen; Malates; Mutation; Photosynthesis; Plasmids; Polymerase Chain Reaction; Prochlorococcus; Recombinant Proteins; Rhodobacter sphaeroides

2017
The effects of exogenous organic acids on the growth, photosynthesis and cellular ultrastructure of Salix variegata Franch. Under Cd stress.
    Ecotoxicology and environmental safety, 2020, Jan-15, Volume: 187

    Topics: Biodegradation, Environmental; Biological Availability; Biomass; Cadmium; Chlorophyll; Chloroplasts; Malates; Photosynthesis; Salix; Soil Pollutants; Tartrates

2020
Diurnal patterns of growth and transient reserves of sink and source tissues are affected by cold nights in barley.
    Plant, cell & environment, 2020, Volume: 43, Issue:6

    Topics: Carbon; Carbon Dioxide; Chlorophyll; Circadian Rhythm; Cold Temperature; Darkness; Fluorescence; Fructans; Hordeum; Malates; Metabolome; Photosynthesis; Plant Proteins; Plant Stomata; Plant Transpiration; Solubility; Starch; Sucrose; Sugars

2020
Phosphate regulates malate/citrate-mediated iron uptake and transport in apple.
    Plant science : an international journal of experimental plant biology, 2020, Volume: 297

    Topics: Anthocyanins; Chlorophyll; Citric Acid; Gene Expression Profiling; Iron; Iron Deficiencies; Malates; Malus; Phosphates; Plant Roots; Real-Time Polymerase Chain Reaction; Rhizosphere; Transcriptome

2020
Role of TaALMT1 malate-GABA transporter in alkaline pH tolerance of wheat.
    Plant, cell & environment, 2020, Volume: 43, Issue:10

    Topics: Animals; Animals, Genetically Modified; Chlorophyll; GABA Plasma Membrane Transport Proteins; gamma-Aminobutyric Acid; Hordeum; Hydrogen-Ion Concentration; Malates; Oocytes; Organic Anion Transporters; Plant Leaves; Plant Proteins; Plant Roots; Plants, Genetically Modified; Rhizosphere; Seedlings; Stress, Physiological; Triticum; Xenopus

2020
The Synergistic Mechanism of Photosynthesis and Antioxidant Metabolism between the Green and White Tissues of
    International journal of molecular sciences, 2023, May-25, Volume: 24, Issue:11

    Topics: Ananas; Antioxidants; Carbon Dioxide; Chlorophyll; Glutathione; Peroxides; Photosynthesis; Plant Leaves

2023