Exogenous melatonin protects alfalfa (Medicago sativa L.) seedlings from drought-induced damage by modulating reactive oxygen species metabolism, mineral balance and photosynthetic efficiency
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Ahammed, 2020, Role of melatonin in arbuscular mycorrhizal fungi-induced resistance to Fusarium wilt in cucumber, Phytopathology, 110, 999, 10.1094/PHYTO-11-19-0435-R
Ahammed, 2019, Endogenous melatonin deficiency aggravates high temperature-induced oxidative stress in Solanum lycopersicum L, Environ. Exp. Bot., 161, 303, 10.1016/j.envexpbot.2018.06.006
Ahanger, 2019, Role of mineral nutrients in abiotic stress tolerance: revisiting the associated signaling mechanisms, Plant Signal. Mol., 269, 10.1016/B978-0-12-816451-8.00016-2
Ahmad, 2019, Exogenous melatonin confers drought stress by promoting plant growth, photosynthetic capacity and antioxidant defense system of maize seedlings, PeerJ, 7, e7793, 10.7717/peerj.7793
Arnao, 2014, Melatonin: plant growth regulator and/or biostimulator during stress?, Trends Plant Sci., 19, 789, 10.1016/j.tplants.2014.07.006
Arnon, 1949, Copper enzymes in isolated chloroplasts. Polyphenoloxidase in Beta vulgaris, Plant Physiol., 24, 1, 10.1104/pp.24.1.1
Barrs, 1962, A re-examination of the relative turgidity technique for estimating water deficits in leaves, Aust. J. Biol. Sci., 15, 413, 10.1071/BI9620413
Bates, 1973, Rapid determination of free proline for water-stress studies, Plant Soil, 39, 205, 10.1007/BF00018060
Bawa, 2020, Evidence that melatonin promotes soybean seedlings growth from low-Temperature stress by mediating plant mineral elements and genes involved in the antioxidant pathway, Funct. Plant Biol., 47, 815, 10.1071/FP19358
Bremner, 1996, Nitrogen-total, 5, 1085
Buysse, 1993, An improved colorimetric method to quantify sugar content of plant tissue, J. Exp. Bot., 44, 1627, 10.1093/jxb/44.10.1627
Cai, 2021, Exogenous spermidine improves chilling tolerance in sweet corn seedlings by regulation on abscisic acid, ROS and Ca2+ pathways, J. Plant Biol., 10.1007/s12374-021-09319-0
Campos, 2019, Melatonin reduces oxidative stress and promotes drought tolerance in young Coffea arabica L. plants, Agric. Water Manag., 211, 37, 10.1016/j.agwat.2018.09.025
Cao, 2021, Effect of exogenous melatonin on the quality of soybean and natto products under drought stress, J. Chem., 10.1155/2021/8847698
Chen, 2021, Melatonin promotes seed germination under salt stress by regulating ABA and GA3 in cotton (Gossypium hirsutum L.), Plant Physiol. Biochem., 162, 506, 10.1016/j.plaphy.2021.03.029
Cui, 2017, Beneficial effects of melatonin in overcoming drought stress in wheat seedlings, Plant Physiol. Biochem., 118, 138, 10.1016/j.plaphy.2017.06.014
DaCosta, 2007, Changes in antioxidant enzyme activities and lipid peroxidation for bentgrass species in response to drought stress, J. Am. Soc. Hortic. Sci., 132, 319, 10.21273/JASHS.132.3.319
Dai, 2020, Melatonin enhances drought resistance by regulating leaf stomatal behaviour, root growth and catalase activity in two contrasting rapeseed (Brassica napus L.) genotypes, Plant Physiol. Biochem., 149, 86, 10.1016/j.plaphy.2020.01.039
Dawood, 2014, Physiological role of glycinebetaine in alleviating the deleterious effects of drought stress on canola plants (Brassica napus L.), Middle East J. Agric. Res., 3, 943
Debnath, 2018, Exogenous melatonin mitigates acid rain stress to tomato plants through modulation of leaf ultrastructure, photosynthesis and antioxidant potential, Molecules, 23, 10.3390/molecules23020388
Dhindsa, 1982, Leaf senescence and lipid peroxidation: effects of some phytohormones, and scavengers of free radicals and singlet oxygen, Physiol. Plant., 56, 453, 10.1111/j.1399-3054.1982.tb04539.x
Giannopolitis, 1977, Superoxide dismutases: I. Occurrence in higher plants, Plant Physiol., 59, 309, 10.1104/pp.59.2.309
Hasanuzzaman, M., Nahar, K., Gill, S. S., & Fujita, M. (2013). Drought stress responses in plants, oxidative stress, and antioxidant defense. Climate change and plant abiotic stress tolerance, 209-250.
Hasanuzzaman, 2019, Understanding physiological and morphological traits contributing to drought tolerance in barley, J. Agron. Crop Sci., 205, 129, 10.1111/jac.12307
Heath, 1968, Photoperoxidation in isolated chloroplasts: I. Kinetics and stoichiometry of fatty acid peroxidation, Arch. Biochem. Biophys., 125, 189, 10.1016/0003-9861(68)90654-1
Heshmati, Siavash, Amini, M., Farooq, M., Wojtyla, Ł., Maleki, K., Heshmati, Sima, 2021. Plant Stress Role of melatonin seed priming on antioxidant enzymes and biochemical responses of Carthamus tinctorius L. under drought stress conditions 2. 10.1016/j.stress.2021.100023.
Hossain, 2020, Exogenous melatonin modulates the physiological and biochemical mechanisms of drought tolerance in tartary buckwheat (Fagopyrum tataricum (L.) Gaertn), Molecules, 25, 10.3390/molecules25122828
Hosseini, 2021, Melatonin alleviates drought impact on growth and essential oil yield of lemon verbena by enhancing antioxidant responses, mineral balance, and abscisic acid content, Physiol. Plant., 172, 1363, 10.1111/ppl.13335
Huang, 2019, Exogenous melatonin alleviates oxidative damages and protects photosystem II in maize seedlings under drought stress, Front. Plant Sci., 10, 677, 10.3389/fpls.2019.00677
Jahan, 2020, Melatonin alleviates nickel phytotoxicity by improving photosynthesis, secondary metabolism and oxidative stress tolerance in tomato seedlings, Ecotoxicol. Environ. Saf., 197, 10.1016/j.ecoenv.2020.110593
Javeed, 2021, Lipoic acid combined with melatonin mitigates oxidative stress and promotes root formation and growth in salt-stressed canola seedlings (Brassica napus l.), Molecules, 26, 10.3390/molecules26113147
Jia, 2013, Temporal stability of soil water storage under four types of revegetation on the northern Loess Plateau of China, Agric. Water Manag., 117, 33, 10.1016/j.agwat.2012.10.013
Junglee, 2014, Optimized assay for hydrogen peroxide determination in plant tissue using potassium iodide, Am. J. Anal. Chem., 5, 730, 10.4236/ajac.2014.511081
Kabiri, 2018, Foliar application of melatonin induces tolerance to drought stress in Moldavian balm plants (Dracocephalum moldavica) through regulating the antioxidant system, Folia Hortic., 30, 155, 10.2478/fhort-2018-0016
Khan, 2019, Seed priming with melatonin coping drought stress in rapeseed by regulating reactive oxygen species detoxification: antioxidant defense system, osmotic adjustment, stomatal traits and chloroplast ultrastructure perseveration, Ind. Crops Prod., 140, 10.1016/j.indcrop.2019.111597
Kudapa, 2013, Functional genomics to study stress responses in crop legumes: progress and prospects, Funct. Plant Biol., 40, 1221, 10.1071/FP13191
Leng, 2019, Crop yield sensitivity of global major agricultural countries to droughts and the projected changes in the future, Sci. Total Environ., 654, 811, 10.1016/j.scitotenv.2018.10.434
Leng, 2015, Climate change impacts on meteorological, agricultural and hydrological droughts in China, Glob. Planet. Change, 126, 23, 10.1016/j.gloplacha.2015.01.003
Li, 2015, Melatonin mediates the regulation of ABA metabolism, free-radical scavenging, and stomatal behaviour in two Malus species under drought stress, J. Exp. Bot., 66, 669, 10.1093/jxb/eru476
Li, 2020, Alkanes (C29 and C31)-mediated intracuticular wax accumulation contributes to melatonin- and ABA-induced drought tolerance in watermelon, J. Plant Growth Regul., 39, 1441, 10.1007/s00344-020-10099-z
Li, 2018, Exogenous melatonin alleviates damage from drought stress in Brassica napus L.(rapeseed) seedlings, Acta Physiol. Plant., 40, 1, 10.1007/s11738-017-2601-8
Li, 2020, Fractal and topological analyses and antioxidant defense systems of alfalfa (medicago sativa l.) root system under drought and rehydration regimes, Agronomy, 10, 10.3390/agronomy10060805
Li, 2021, Melatonin improves drought resistance in maize seedlings by enhancing the antioxidant system and regulating abscisic acid metabolism to maintain stomatal opening under PEG-induced drought, J. Plant Biol., 10.1007/s12374-021-09297-3
Liang, 2018, Long-term exogenous application of melatonin improves nutrient uptake fluxes in apple plants under moderate drought stress
Liang, 2019, Exogenous melatonin promotes biomass accumulation and photosynthesis of kiwifruit seedlings under drought stress, Sci. Hortic. (Amsterdam)., 246, 34, 10.1016/j.scienta.2018.10.058
Liu, 2018, Influence of drought stress on afalfa yields and nutritional composition, BMC Plant Biol., 18, 1
Luo, 2020, Morphological features and biomass partitioning of lucerne plants (medicago sativa l.) subjected to water stress, Agronomy, 10, 10.3390/agronomy10030322
Mickky, 2018, Alterations in photosynthetic capacity and morpho-histological features of leaf in alfalfa plants subjected to water deficit-stress in different soil types, Indian J. Plant Physiol., 23, 426, 10.1007/s40502-018-0383-7
Nakano, 1981, Hydrogen peroxide is scavenged by ascorbate-specific peroxidase in spinach chloroplasts, Plant Cell Physiol., 22, 867
Nayyar, 2003, Accumulation of osmolytes and osmotic adjustment in water-stressed wheat (Triticum aestivum) and maize (Zea mays) as affected by calcium and its antagonists, Environ. Exp. Bot., 50, 253, 10.1016/S0098-8472(03)00038-8
Ndlovu, 2021, Morpho-physiological effects of moisture, heat and combined stresses on Sorghum bicolor [Moench (L.)] and its acclimation mechanisms, Plant Stress, 2, 10.1016/j.stress.2021.100018
Palareti, 2016, Comparison between different D-Dimer cutoff values to assess the individual risk of recurrent venous thromboembolism: analysis of results obtained in the DULCIS study, Int. J. Lab. Hematol., 38, 42, 10.1111/ijlh.12426
Pandolfini, 1992, Nickel toxicity and peroxidase activity in seedlings of Triticum aestivum L, Plant Cell Environ., 15, 719, 10.1111/j.1365-3040.1992.tb01014.x
Pei, 2020, Exogenous glycinebetaine application contributes to abiotic stress tolerance in maize, J. Plant Biol.
Radović, 2009, Alfalfa-most important perennial forage legume in animal husbandry, Biotechnol. Anim. Husb., 25, 465, 10.2298/BAH0906465R
Sabino, 2021, Morphological characteristics, biomass accumulation and gas exchange of an important species native for restoration in Semi-arid Brazilian areas affected by salt and water stress, Plant Stress, 2, 10.1016/j.stress.2021.100021
Sadak, 2020, Role of melatonin in improving growth, yield quantity and quality of Moringa oleifera L. plant under drought stress, Bull. Natl. Res. Cent., 44, 10.1186/s42269-020-0275-7
Sadak, 2020, Alleviation of drought stress by melatonin foliar treatment on two flax varieties under sandy soil, Physiol. Mol. Biol. Plants, 26, 907, 10.1007/s12298-020-00789-z
Sahin, 2018, Effects of individual and combined effects of salinity and drought on physiological, nutritional and biochemical properties of cabbage (Brassica oleracea var. capitata), Sci. Hortic. (Amsterdam)., 240, 196, 10.1016/j.scienta.2018.06.016
Salemi, 2019, Mechanistic insights into enhanced tolerance of early growth of alfalfa (Medicago sativa L.) under low water potential by seed-priming with ascorbic acid or polyethylene glycol solution, Ind. Crops Prod., 137, 436, 10.1016/j.indcrop.2019.05.049
Sarropoulou, 2012, Melatonin promotes adventitious root regeneration in in vitro shoot tip explants of the commercial sweet cherry rootstocks CAB-6P (Prunus cerasus L.), Gisela 6 (P. cerasus$\times$ P. canescens), and MxM 60 (P. avium$\times$ P. mahaleb), J. Pineal Res., 52, 38, 10.1111/j.1600-079X.2011.00914.x
Sen, 2021, Halo- and UV-B priming-mediated drought tolerance and recovery in rice seedlings, Plant Stress, 2, 10.1016/j.stress.2021.100011
Sharma, 2020, Melatonin regulates the functional components of photosynthesis, antioxidant system, gene expression, and metabolic pathways to induce drought resistance in grafted Carya cathayensis plants, Sci. Total Environ., 713, 1, 10.1016/j.scitotenv.2020.136675
Sharma, 2019, Melatonin mediated regulation of drought stress: physiological and molecular aspects, Plants, 8, 190, 10.3390/plants8070190
Shummu, 2012, Influence of exogenously applied epibrassinolide and putrescine on protein content, antioxidant enzymes and lipid peroxidation in Lycopersicon esculentum under salinity stress, Am. J. Plant Sci., 3, 714, 10.4236/ajps.2012.36086
Sim, 2021, Photosynthetic and Physiological Characteristics of the Evergreen Ligustrum japonicum and the Deciduous Cornus officinalis, J. Plant Biol., 64, 73, 10.1007/s12374-020-09284-0
Swann, 2018, Plants and drought in a changing climate, Curr. Clim. Change Rep., 4, 192, 10.1007/s40641-018-0097-y
Tiwari, 2020, Emerging roles of melatonin in mitigating abiotic and biotic stresses of horticultural crops, Sci. Hortic. (Amsterdam)., 272, 10.1016/j.scienta.2020.109592
Turk, 2015, Melatonin alleviates cold-induced oxidative damage in maize seedlings by up-regulating mineral elements and enhancing antioxidant activity, J. Plant Nutr. Soil Sci., 178, 433, 10.1002/jpln.201400476
Wang, 2012, Assessing water resources in China using PRECIS projections and a VIC model, Hydrol. Earth Syst. Sci., 16, 231, 10.5194/hess-16-231-2012
Wang, 2013, Long-term exogenous application of melatonin delays drought-induced leaf senescence in apple, J. Pineal Res., 54, 292, 10.1111/jpi.12017
Wang, 2009, Analysis of antioxidant enzyme activity during germination of alfalfa under salt and drought stresses, Plant Physiol. Biochem., 47, 570, 10.1016/j.plaphy.2009.02.009
Wang, 2018, Phytomelatonin: a universal abiotic stress regulator, J. Exp. Bot., 69, 963, 10.1093/jxb/erx473
Wei, 2015, Melatonin enhances plant growth and abiotic stress tolerance in soybean plants, J. Exp. Bot., 66, 695, 10.1093/jxb/eru392
Xiao, 2020, Versatile fluorescent probes for imaging the superoxide anion in living cells and in vivo, Angew. Chem., 132, 4244, 10.1002/ange.201906793
Yao, 2021, Crucial waterlogging-responsive genes and pathways revealed by comparative physiology and transcriptome in tropical and temperate maize (Zea mays L.) inbred lines, J. Plant Biol., 10.1007/s12374-021-09298-2
Zhang, 2013, Melatonin promotes water-stress tolerance, lateral root formation, and seed germination in cucumber (Cucumis sativus L.), J. Pineal Res., 54, 15, 10.1111/j.1600-079X.2012.01015.x
Zhu, 2021, Pretreatment with danshensu promotes germination of cucumber (Cucumis sativus L.) seeds by regulating reactive-oxygen species and endogenous phytohormones, J. Plant Biol., 64, 205, 10.1007/s12374-020-09291-1
Zulfiqar, 2020, Osmoprotection in plants under abiotic stresses: new insights into a classical phenomenon, Planta, 251, 1, 10.1007/s00425-019-03293-1