1,128
Views
2
CrossRef citations to date
0
Altmetric
Articles

Effect of exogenous melatonin on salt stress in cucumber: alleviating effect and molecular basis

, , , , , , & show all
Pages 818-827 | Received 22 Oct 2021, Accepted 20 Sep 2022, Published online: 13 Oct 2022

References

  • Daliakopoulos IN, Tsanis IK, Koutroulis A, et al. The threat of soil salinity: a European scale review. Sci Total Environ. 2016;573:727–739.
  • Liu WB, Chen XH, Zhou Y, et al. Effect of salicylic acid on cucumber seed germination and seedling root growth under NaCl stress. Chin Agric Sci Bull. 2013;29(34):166–170.
  • Chen SQ, Jiang YT. Causes, harm and control measures of secondary salinization of greenhouse soil. Liaoning Chem Ind. 2018;47(11):1146–1148.
  • Kumar A, Singh S, Gaurav AK, et al. Plant growth-promoting bacteria: biological tools for the mitigation of salinity stress in plants. Front Microbiol. 2020;11:1216.
  • Etesami H, Beattie GA. Mining halophytes for plant growth-promoting halotolerant bacteria to enhance the salinity tolerance of non-halophytic crops. Front Microbiol. 2018;9:148.
  • Yang Y, Guo Y. Elucidating the molecular mechanisms mediating plant salt-stress responses. New Phytol. 2018;217(2):523–539.
  • Arya A, Nyamathulla S, Noordin MI, et al. Antioxidant and hypoglycemic activities of leaf extracts of three popular terminalia species. E-J Chem. 2012;9(2):883–892.
  • Genisel M, Erdal S, Kizilkaya M, et al. The mitigating effect of cysteine on growth inhibition in salt-stressed barley seeds is related to its own reducing capacity rather than its effects on antioxidant system. Plant Growth Regul. 2015;75(1):187–197.
  • Golldack D, Li C, Mohan H, et al. Tolerance to drought and salt stress in plants: Unraveling the signaling networks. Front Plant Sci. 2014;5:151.
  • Acquaah G. 2007. Principles of plant genetics and breeding. Oxford: Blackwell.
  • Liang W, Cui W, Ma X, et al. Function of wheat Ta-UnP gene in enhancing salt tolerance in transgenic arabidopsis and rice. Biochem Biophys Res Commun. 2014;450(1):794–801.
  • Shi H, Chen K, Wei Y, et al. Fundamental issues of melatonin-mediated stress signaling in plants. Front Plant Sci. 2016;7:1124.
  • Ren J, Ye J, Yin L, et al. Exogenous melatonin improves salt tolerance by mitigating osmotic, ion, and oxidative stresses in maize seedlings. Agronomy. 2020;10(5):663.
  • Li J, Yang Y, Sun K, et al. Exogenous melatonin enhances cold, salt and drought stress tolerance by improving antioxidant defense in tea plant (camellia sinensis (L.) O. Kuntze). Molecules. 2019;24(9):1826.
  • Janas KM, Posmyk MM. Melatonin, an underestimated natural substance with great potential for agricultural application. Acta Physiol Plant. 2013;35(12):3285–3292.
  • Koodziejczyk I, Posmyk MM. Melatonin–a new plant biostimulator? J Elem. 2016;21(4):1187–1198.
  • Zhang HJ, Zhang N, Yang RC, et al. Melatonin promotes seed germination under high salinity by regulating antioxidant systems, ABA and GA4 interaction in cucumber (cucumis sativus L.). J Pineal Res. 2014;57(3):269–279.
  • He MW, Wang Y, Wu JQ, et al. Isolation and characterization of S-Adenosylmethionine synthase gene from cucumber and responsive to abiotic stress. Plant Physiol Biochem. 2019;141:431–445.
  • Bates L, Waldren R, Teare I. Rapid determination of free proline for water-stress studies. Plant Soil. 1973;39(1):205–207.
  • Zhang W, Yuan J, Cheng T, et al. Flowering-mediated root-fungus symbiosis loss is related to jasmonate-dependent root soluble sugar deprivation. Plant Cell Environ. 2019;42(12):3208–3226.
  • Jiang M, Zhang J. Effect of abscisic acid on active oxygen species, antioxidative defence system and oxidative damage in leaves of maize seedlings. Plant Cell Physiol. 2001;42(11):1265–1273.
  • OuYang Q, Tao N, Zhang M. A damaged oxidative phosphorylation mechanism is involved in the antifungal activity of citral against penicillium digitatum. Front Microbiol. 2018;9:239.
  • Amir M, Khan A, Mujeeb M, et al. Phytochemical analysis and in vitro antioxidant activity of zingiber officinale. Free Radical Antioxid. 2011;1(4):75–81.
  • Alina VR, Vlad M, Elena MA, et al. The changes of polyphenols, flavonoids, anthocyanins and chlorophyll content in plum peels during growth phases: from fructification to ripening. Notulae Botanicae Horti Agrobotanici Cluj-Napoca. 2017;46(1):148.
  • Livak KJ, Schmittgen TD. Analysis of relative gene expression data using real-time quantitative PCR and the 2− ΔΔCT method. Methods. 2001;25(4):402–408.
  • Li Q, Li H, Huang W, et al. A chromosome-scale genome assembly of cucumber (cucumis sativus L.). GigaScience. 2019;8(6):giz072.
  • Gholami M, Rahemi M, Kholdebarin B. Effect of drought stress induced by polyethylene glycol on seed germination of four wild almond species. Aust J Basic Appl Sci. 2010;4(5):785–791.
  • Munns R. Comparative physiology of salt and water stress. Plant Cell Environ. 2002;25(2):239–250.
  • Ma N, Hu C, Wan L, et al. Strigolactones improve plant growth, photosynthesis, and alleviate oxidative stress under salinity in rapeseed (brassica napus L.) by regulating gene expression. Front Plant Sci. 2017;8:1671.
  • Iqbal M, Ahmad A, Ansari MKA, et al. Improving the phytoextraction capacity of plants to scavenge metal (loid)-contaminated sites. Environ. Rev. 2015;23(1):44–65.
  • Taha RS, Seleiman MF, Alotaibi M, et al. Exogenous potassium treatments elevate salt tolerance and performances of Glycine max L. by boosting antioxidant defense system under actual saline field conditions. Agronomy. 2020;10(11):1741.
  • Zhang T, Shi Z, Zhang X, et al. Alleviating effects of exogenous melatonin on salt stress in cucumber. Sci Hortic. 2020;262:109070.
  • Tan DX, Hardeland R, Manchester LC, et al. Functional roles of melatonin in plants, and perspectives in nutritional and agricultural science. J Exp Bot. 2012;63(2):577–597.
  • Arnao MB, Hernández-Ruiz J. Functions of melatonin in plants: a review. J Pineal Res. 2015;59(2):133–150.
  • Chen YE, Mao JJ, Sun LQ, et al. Exogenous melatonin enhances salt stress tolerance in maize seedlings by improving antioxidant and photosynthetic capacity. Physiol Plant. 2018;164(3):349–363.
  • Jiang C, Cui Q, Feng K, et al. Melatonin improves antioxidant capacity and ion homeostasis and enhances salt tolerance in maize seedlings. Acta Physiol Plant. 2016;38(4):1–9.
  • Reiter RJ, Manchester LC, Tan DX. Melatonin in walnuts: influence on levels of melatonin and total antioxidant capacity of blood. Nutrition. 2005;21(9):920–924.
  • Wang P, Yin L, Liang D, et al. Delayed senescence of apple leaves by exogenous melatonin treatment: toward regulating the ascorbate-glutathione cycle. J Pineal Res. 2012;53(1):11–20.
  • Zhang N, Sun Q, Zhang H, et al. Roles of melatonin in abiotic stress resistance in plants. J Exp Bot. 2015;66(3):647–656.
  • Zhang F, Wang Y, Liu C, et al. Trichoderma harzianum mitigates salt stress in cucumber via multiple responses. Ecotoxicol Environ Saf. 2019;170:436–445.
  • Abbasi H, Jamil M, Haq A, et al. Salt stress manifestation on plants, mechanism of salt tolerance and potassium role in alleviating it: a review. Zemdirbyste-Agric. 2016;103(2):229–238.
  • Sadak MS, Ramadan AAE. Impact of melatonin and tryptophan on water stress tolerance in white lupine (lupinus termis L.). Physiol Mol Biol Plants. 2021;27(3):469–481.
  • Keutgen AJ, Pawelzik E. Impacts of NaCl stress on plant growth and mineral nutrient assimilation in two cultivars of strawberry. Environ Exp Bot. 2009;65(2-3):170–176.
  • Li ZG, Xu Y, Bai LK, et al. Melatonin enhances thermotolerance of maize seedlings (Zea mays L.) by modulating antioxidant defense, methylglyoxal detoxification, and osmoregulation systems. Protoplasma. 2019;256(2):471–490.
  • Kostopoulou Z, Therios I, Roumeliotis E, et al. Melatonin combined with ascorbic acid provides salt adaptation in citrus aurantium L. seedlings. Plant Physiol Biochem. 2015;86:155–165.
  • Gao W, Feng Z, Bai Q, et al. Melatonin-mediated regulation of growth and antioxidant capacity in salt-tolerant naked oat under salt stress. Int J Mol Sci. 2019;20(5):1176.
  • Li H, Chang J, Chen H, et al. Exogenous melatonin confers salt stress tolerance to watermelon by improving photosynthesis and redox homeostasis. Front Plant Sci. 2017;8:295.
  • Shi H, Jiang C, Ye T, et al. Comparative physiological, metabolomic, and transcriptomic analyses reveal mechanisms of improved abiotic stress resistance in bermudagrass [cynodon dactylon (L). pers.] by exogenous melatonin. J Exp Bot. 2015;66(3):681–694.
  • Weeda S, Zhang N, Zhao X, et al. Arabidopsis transcriptome analysis reveals key roles of melatonin in plant defense systems. PLoS One. 2014;9(3):e93462.