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125 peer-reviewed articles • 10,713 peer-reviewed citations • Sorted by year • Download PDF (PDF by citations)
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1Melatonin in redox network and hormonal balance in mungbean seedlings due to fungicide-induced seed stress
Plant Growth Regulation, 2025, 105, 55-70
2.21Citations (PDF)
2Synthetic Melatonin and/or Phytomelatonin Contents in Different Commercial Phytotherapeutic Supplements
Nutraceuticals, 2025, 5, 9
1.92Citations (PDF)
3Anticancer activity and chemical composition of dry extract from Moroccan chamomile (Matricaria chamomilla L.)0.70Citations (PDF)
4Content of Phytomelatonin in Acorns (Quercus sp.) in Its Possible Use as a Phytogenic in Animal Nutrition
Processes, 2025, 13, 2202
2.02Citations (PDF)
5Nanovehicles for melatonin: a new journey for agriculture
Trends in Plant Science, 2024, 29, 232-248
8.949Citations (PDF)
6Melatonin as a key regulator in seed germination under abiotic stress4.363Citations (PDF)
7Effect of Melatonin on Germination and Seedling Growth in Aging Seeds or under Drought Conditions
Seeds, 2024, 3, 341-356
1.57Citations (PDF)
8Phytomelatonin: From Intracellular Signaling to Global Horticulture Market4.334Citations (PDF)
9Melatonin, A Promising Natural Crop Safener
Outlooks on Pest Management, 2024, 35, 115-119
0.20Citations (PDF)
10Role of Exogenous Melatonin in Plant Biotechnology: Physiological and Applied Aspects4.815Citations (PDF)
11Enhancing the cultivation of Salicornia fruticosa with agroindustrial compost leachates in a cascade cropping system: evaluating the impact of melatonin application3.013Citations (PDF)
12Beneficial Effects of Nutraceuticals, Especially Polyphenols on Canine Health
Pets (Basel), 2024, 1, 228-254
1.011Citations (PDF)
13Exogenous application of serotonin, with the modulation of redox homeostasis and photosynthetic characteristics, enhances the drought resistance of the saffron plant
Scientific Reports, 2024, 14,
2.716Citations (PDF)
14Melatonin-mediated physio-biochemical, and ultrastructural modifications in tomato plants to foster drought stress tolerance
Plant Growth Regulation, 2024, 104, 1605-1628
2.213Citations (PDF)
15Current state of the natural melatonin: the phytomelatonin market
Melatonin Research, 2024, 7, 242-248
0.94Citations (PDF)
16Functions of Melatonin during Postharvest of Horticultural Crops
Plant and Cell Physiology, 2023, 63, 1764-1786
2.593Citations (PDF)
17ABTS/TAC Methodology: Main Milestones and Recent Applications
Processes, 2023, 11, 185
2.0125Citations (PDF)
18Melatonin from Microorganisms, Algae, and Plants as Possible Alternatives to Synthetic Melatonin
Metabolites, 2023, 13, 72
2.650Citations (PDF)
19Phytochemical Compounds and Anticancer Activity of Cladanthus mixtus Extracts from Northern Morocco
Cancers, 2023, 15, 152
2.714Citations (PDF)
20Melatonin as a Possible Natural Anti-Viral Compound in Plant Biocontrol
Plants, 2023, 12, 781
2.534Citations (PDF)
21Chemical Characterization and Several Bioactivities of Cladanthus mixtus from Morocco
Molecules, 2023, 28, 3196
3.27Citations (PDF)
22Antioxidant Activity, Total Phenolic and Flavonoid Contents in Floral Saffron Bio-Residues
Processes, 2023, 11, 1400
2.017Citations (PDF)
23Extended Post-Harvest Effect of Melatonin in Fresh-Cut Broccolini Plants (Bimi®)
Agronomy, 2023, 13, 2459
2.37Citations (PDF)
24Optimal concentration of melatonin enhances drought stress tolerance in fenugreek1.37Citations (PDF)
25Phytomelatonin: an unexpected molecule with amazing performances in plants
Journal of Experimental Botany, 2022, 73, 5779-5800
3.8156Citations (PDF)
26Melatonin in Brassicaceae: Role in Postharvest and Interesting Phytochemicals
Molecules, 2022, 27, 1523
3.215Citations (PDF)
27Chamomile (Matricaria chamomilla L.): A Review of Ethnomedicinal Use, Phytochemistry and Pharmacological Uses
Life, 2022, 12, 479
1.9239Citations (PDF)
28Melatonin as a Possible Natural Safener in Crops
Plants, 2022, 11, 890
2.537Citations (PDF)
29Melatonin Alleviates Chilling Injury Symptom Development in Mango Fruit by Maintaining Intracellular Energy and Cell Wall and Membrane Stability2.955Citations (PDF)
30Effect of Melatonin in Broccoli Postharvest and Possible Melatonin Ingestion Level
Plants, 2022, 11, 2000
2.525Citations (PDF)
31Essential Oils and Melatonin as Functional Ingredients in Dogs
Animals, 2022, 12, 2089
1.711Citations (PDF)
32Effects of Temperature and Light on the Germination-Promoting Activity by Melatonin in Almond Seeds without Stratification
Agronomy, 2022, 12, 2070
2.36Citations (PDF)
33Phytomelatonin: an emerging new hormone in plants
Journal of Experimental Botany, 2022, 73, 5773-5778
3.849Citations (PDF)
34Saffron against Neuro-Cognitive Disorders: An Overview of Its Main Bioactive Compounds, Their Metabolic Fate and Potential Mechanisms of Neurological Protection
Nutrients, 2022, 14, 5368
3.244Citations (PDF)
35Role of Melatonin and Nitrogen Metabolism in Plants: Implications under Nitrogen-Excess or Nitrogen-Low3.235Citations (PDF)
36Protective Effect (Safener) of Melatonin on Vigna Radiata L. Seedlings in the Presence of the Fungicide Copper Oxychloride2.314Citations (PDF)
37Phytomelatonin: An overview of the importance and mediating functions of melatonin against environmental stresses
Physiologia Plantarum, 2021, 172, 820-846
2.2111Citations (PDF)
38Melatonin as a regulatory hub of plant hormone levels and action in stress situations
Plant Biology, 2021, 23, 7-19
2.2204Citations (PDF)
39Melatonin Against Environmental Plant Stressors: A Review1.639Citations (PDF)
40Exogenous Melatonin Enhances Cd Tolerance and Phytoremediation Efficiency by Ameliorating Cd-Induced Stress in Oilseed Crops: A Review2.334Citations (PDF)
41Melatonin as a plant biostimulant in crops and during post‐harvest: a new approach is needed2.972Citations (PDF)
42Melatonin and Carbohydrate Metabolism in Plant Cells
Plants, 2021, 10, 1917
2.571Citations (PDF)
43A Phytomelatonin-Rich Extract Obtained from Selected Herbs with Application as Plant Growth Regulator
Plants, 2021, 10, 2143
2.59Citations (PDF)
44Melatonin Against Environmental Plant Stressors: A Review1.633Citations (PDF)
45Is Phytomelatonin a New Plant Hormone?
Agronomy, 2020, 10, 95
2.3142Citations (PDF)
46Role of Melatonin in Plant Tolerance to Soil Stressors: Salinity, pH and Heavy Metals
Molecules, 2020, 25, 5359
3.2133Citations (PDF)
47Melatonin-Induced Water Stress Tolerance in Plants: Recent Advances
Antioxidants, 2020, 9, 809
4.6160Citations (PDF)
48Chitosan Induces Plant Hormones and Defenses in Tomato Root Exudates3.097Citations (PDF)
49Melatonin Suppressed the Heat Stress-Induced Damage in Wheat Seedlings by Modulating the Antioxidant Machinery
Plants, 2020, 9, 809
2.5162Citations (PDF)
50Development of a Phytomelatonin-Rich Extract from Cultured Plants with Excellent Biochemical and Functional Properties as an Alternative to Synthetic Melatonin
Antioxidants, 2020, 9, 158
4.633Citations (PDF)
51Melatonin and Its Protective Role against Biotic Stress Impacts on Plants
Biomolecules, 2020, 10, 54
3.1221Citations (PDF)
52Melatonin in flowering, fruit set and fruit ripening
Plant Reproduction, 2020, 33, 77-87
1.4227Citations (PDF)
53A colorimetric method for the determination of different functional flavonoids using 2,2'-azino-bis-(3-ethylbenzthiazoline-6-sulphonic acid) (ABTS) and peroxidase1.58Citations (PDF)
54Melatonin as a Chemical Substance or as Phytomelatonin Rich-Extracts for Use as Plant Protector and/or Biostimulant in Accordance with EC Legislation
Agronomy, 2019, 9, 570
2.371Citations (PDF)
55Role of Melatonin to Enhance Phytoremediation Capacity1.661Citations (PDF)
56Melatonin and its relationship to plant hormones
Annals of Botany, 2018, 121, 195-207
2.1639Citations (PDF)
57Melatonin and Its Effects on Plant Systems
Molecules, 2018, 23, 2352
3.2218Citations (PDF)
58Relationship of Melatonin and Salicylic Acid in Biotic/Abiotic Plant Stress Responses
Agronomy, 2018, 8, 33
2.3140Citations (PDF)
59The Potential of Phytomelatonin as a Nutraceutical
Molecules, 2018, 23, 238
3.290Citations (PDF)
60Phytomelatonin versus synthetic melatonin in cancer treatments0.02Citations (PDF)
61Growth activity, rooting capacity, and tropism: three auxinic precepts fulfilled by melatonin1.3129Citations (PDF)
62Long‐term intake of white tea prevents oxidative damage caused by adriamycin in kidney of rats2.925Citations (PDF)
63Validation of three automated assays for total antioxidant capacity determination in canine serum samples0.941Citations (PDF)
64Phytomelatonin, an Interesting Tool for Agricultural Crops
Focus on Sciences, 2016, 2, 1-10
0.115Citations (PDF)
65Functions of melatonin in plants: a review
Journal of Pineal Research, 2015, 59, 133-150
4.3855Citations (PDF)
66Phytomelatonin: Discovery, Content, and Role in Plants
Advances in Botany, 2014, 2014, 1-11
4.0127Citations (PDF)
67Chemical and functional properties of the different by-products of artichoke (Cynara scolymus L.) from industrial canning processing
Food Chemistry, 2014, 160, 134-140
8.081Citations (PDF)
68Melatonin: plant growth regulator and/or biostimulator during stress?
Trends in Plant Science, 2014, 19, 789-797
8.9657Citations (PDF)
69Molecular mechanisms by which white tea prevents oxidative stress2.823Citations (PDF)
70Growth conditions determine different melatonin levels in Lupinus albus L
Journal of Pineal Research, 2013, 55, 149-155
4.3168Citations (PDF)
71Growth conditions influence the melatonin content of tomato plants
Food Chemistry, 2013, 138, 1212-1214
8.0113Citations (PDF)
72Protective effect of white tea extract against acute oxidative injury caused by adriamycin in different tissues
Food Chemistry, 2012, 134, 1780-1785
8.031Citations (PDF)
73Assessment of different sample processing procedures applied to the determination of melatonin in plants
Phytochemical Analysis, 2009, 20, 14-18
2.164Citations (PDF)
74Protective effect of melatonin against chlorophyll degradation during the senescence of barley leaves4.3385Citations (PDF)
75Chemical stress by different agents affects the melatonin content of barley roots
Journal of Pineal Research, 2009, 46, 295-299
4.3179Citations (PDF)
76Melatonin stimulates the expansion of etiolated lupin cotyledons
Plant Growth Regulation, 2008, 55, 29-34
2.2102Citations (PDF)
77Distribution of Melatonin in Different Zones of Lupin and Barley Plants at Different Ages in the Presence and Absence of Light4.5108Citations (PDF)
78Melatonin promotes adventitious- and lateral root regeneration in etiolated hypocotyls of Lupinus albus L.
Journal of Pineal Research, 2007, 42, 147-152
4.3293Citations (PDF)
79Changes in hydrophilic antioxidant activity in Avena sativa and Triticum aestivum leaves of different age during de-etiolation and high-light treatment
Journal of Plant Research, 2006, 119, 321-327
1.19Citations (PDF)
80The Physiological Function of Melatonin in Plants2.7292Citations (PDF)
81Melatonin acts as a growth‐stimulating compound in some monocot species
Journal of Pineal Research, 2005, 39, 137-142
4.3310Citations (PDF)
82Hydrophilic and Lipophilic Antioxidant Activity in Different Leaves of Three Lettuce Varieties3.651Citations (PDF)
83Melatonin: a growth-stimulating compound present in lupin tissues
Planta, 2004, 220, 140-144
2.6327Citations (PDF)
84ACTIVIDAD ANTIOXIDANTE HIDROFÍLICA Y LIPOFÍLICA Y CONTENIDO EN VITAMINA C DE ZUMOS DE NARANJA COMERCIALES: RELACIÓN CON SUS CARACTERÍSTICAS ORGANOLÉPTICAS LIPOPHILIC AND HYDROPHILIC ANTIOXIDANT ACTIVITY AND VITAMIN C CONTENT OF COMMERCIAL ORANGE JUICES: CORRELATION WITH ORGANOLEPTIC PARAMETERS ACTIVIDADE ANTIOXIDANTE HIDROFÍLICA E LIPOFÍLICA E CONTIDO EN VITAMINA C DE ZUMOS DE LARANXA COMERCIAIS: RELACIÓN COAS CARACTERÍSTICAS ORGANOLÉPTICAS0.36Citations (PDF)
85Polar Transport of Indole-3-Acetic Acid in Relation to Rooting in Carnation Cuttings: Influence of Cold Storage Duration and Cultivar
Biologia Plantarum, 2003, 46, 481-485
1.514Citations (PDF)
86Free radical-scavenging activity of indolic compounds in aqueous and ethanolic media2.776Citations (PDF)
87Hydrophilic and lipophilic antioxidant activity changes during on-vine ripening of tomatoes (Lycopersicon esculentum Mill.)5.5143Citations (PDF)
88Total antioxidant activity in Quercus ilex resprouts after fire3.921Citations (PDF)
89Reactions of the Class II Peroxidases, Lignin Peroxidase andArthromyces ramosus Peroxidase, with Hydrogen Peroxide
Journal of Biological Chemistry, 2002, 277, 26879-26885
1.376Citations (PDF)
90On-line antioxidant activity determination: comparison of hydrophilic and lipophilic antioxidant activity using the ABTS•+assay
Redox Report, 2002, 7, 103-109
4.068Citations (PDF)
91Superoxide scavenging by polyphenols: effect of conjugation and dimerization
Redox Report, 2002, 7, 379-383
4.036Citations (PDF)
92Complexes Between m-chloroperoxybenzoic Acid and Horseradish Peroxidase Compounds I and II: Implications for the Kinetics of Enzyme Inactivation3.44Citations (PDF)
93Title is missing!0.036Citations (PDF)
94A peroxidase isoenzyme secreted by turnip (Brassica napus) hairy-root cultures: inactivation by hydrogen peroxide and application in diagnostic kits1.982Citations (PDF)
95Catalase-like Oxygen Production by Horseradish Peroxidase Must Predominantly Be an Enzyme-Catalyzed Reaction2.261Citations (PDF)
96Catalase-like activity of horseradish peroxidase: relationship to enzyme inactivation by H2O2
Biochemical Journal, 2001, 354, 107-114
2.3169Citations (PDF)
97Detection of a tryptophan radical in the reaction of ascorbate peroxidase with hydrogen peroxide
FEBS Journal, 2001, 268, 3091-3098
0.252Citations (PDF)
98Estimation of free radical-quenching activity of leaf pigment extracts
Phytochemical Analysis, 2001, 12, 138-143
2.188Citations (PDF)
99The inactivation of horseradish peroxidase isoenzyme AZ by hydrogen peroxide: an example of partial resistance due to the formation of a stable enzyme intermediate1.853Citations (PDF)
100The hydrophilic and lipophilic contribution to total antioxidant activity
Food Chemistry, 2001, 73, 239-244
8.01,266Citations (PDF)
101QUANTITATION OF INDOLE-3-ACETIC ACID BY LC WITH ELECTROCHEMICAL DETECTION IN ETIOLATED HYPOCOTYLS OF LUPINUS ALBUS0.920Citations (PDF)
102Kinetic study of the inactivation of ascorbate peroxidase by hydrogen peroxide
Biochemical Journal, 2000, 348, 321-328
2.398Citations (PDF)
103A method to measure antioxidant activity in organic media: application to lipophilic vitamins
Redox Report, 2000, 5, 365-370
4.0143Citations (PDF)
104Characterization of isoperoxidase-B2 inactivation in etiolated Lupinus albus hypocotyls2.59Citations (PDF)
105Methods to Measure the Antioxidant Activity in Plant Material. A Comparative Discussion
Free Radical Research, 1999, 31, 89-96
1.7165Citations (PDF)
106An end-point method for estimation of the total antioxidant activity in plant material
Phytochemical Analysis, 1998, 9, 196-202
2.1321Citations (PDF)
107The Inactivation and Catalytic Pathways of Horseradish Peroxidase with m-Chloroperoxybenzoic Acid
Journal of Biological Chemistry, 1997, 272, 5469-5476
1.378Citations (PDF)
108Inhibition of Etiolated Lupin Hypocotyl Growth and Rooting by Peroxides, Ascorbate and Glutathione
Journal of Plant Physiology, 1996, 147, 721-728
2.913Citations (PDF)
109Role of the reductant substrates on the inactivation of horseradish peroxidase by m‐Chloroperoxybenzoic acid
IUBMB Life, 1996, 39, 97-107
2.16Citations (PDF)
110Indole-3-carbinol as a scavenger of free radicals
IUBMB Life, 1996, 39, 1125-1134
2.135Citations (PDF)
111A comparative study of the purity, enzyme activity, and inactivation by hydrogen peroxide of commercially available horseradish peroxidase isoenzymes A and C2.784Citations (PDF)
112Inhibition byl-Ascorbic Acid and Other Antioxidants of the 2,2′-Azino-bis(3-ethylbenzthiazoline-6-sulfonic Acid) Oxidation Catalyzed by Peroxidase: A New Approach for Determining Total Antioxidant Status of Foods
Analytical Biochemistry, 1996, 236, 255-261
2.0189Citations (PDF)
113A Comparative Study of the Inactivation of Wild-Type, Recombinant and Two Mutant Horseradish Peroxidase Isoenzymes C by Hydrogen Peroxide and m-chloroperoxybenzoic Acid
FEBS Journal, 1995, 234, 506-512
0.270Citations (PDF)
1141-Aminocyclopropane-1-car☐ylic acid as a substrate of peroxidase: conditions for oxygen consumption, hydroperoxide generation and ethylene production
BBA - Proteins and Proteomics, 1991, 1077, 273-280
2.58Citations (PDF)
115Inactivation of peroxidase by hydrogen peroxide and its protection by a reductant agent2.5175Citations (PDF)
116A kinetic study on the suicide inactivation of peroxidase by hydrogen peroxide2.5267Citations (PDF)
117An enzymatic colorimetric method for measuring naringin using 2,2′-azino-bis-(3-ethylbenzthiazoline-6-sulfonic acid) (ABTS) in the presence of peroxidase
Analytical Biochemistry, 1990, 185, 335-338
2.084Citations (PDF)
118Melatonin‐Producing Microorganisms: A Rising Research Interest in Their Melatonin Biosynthesis and Effects on Crops4.38Citations (PDF)
119Peach Postharvest Fungal Diseases: Sustainable Management and an Integrative Review of Emerging Strategies
Crops, 0, 5, 84
0.92Citations (PDF)
120Edible Substrates for Ready-to-Eat Microgreen Pots: “Farm on the Fork” Concept
Plants, 0, 15, 49
2.51Citations (PDF)
121Standardized Quantification of Melatonin: Analytical Framework and Emerging Biosensor Technologies for Agricultural Biotechnology4.53Citations (PDF)
122Melatonin Regulates N Metabolism and Wheat Growth via Facilitating Li Fixation in the Root Cell Wall and Redox Homeostasis4.51Citations (PDF)
123Phytomelatonin contents in macroalgae2.10Citations (PDF)
124Modulation of redox state, antioxidant systems and photosynthetic capacity induction of osmotic stress tolerance in Crocus sativus L. through exogenous melatonin2.70Citations (PDF)
125Preventive and curative application of antagonistic microorganisms in controlling soft rot caused by Rhizopus stolonifer on Moroccan peaches and nectarines in postharvest0.70Citations (PDF)