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Investigation of the Effects of Foliar Amino Acid, Melatonin and Potassium Applications on Spinach Cultivar under Water Stress

Year 2025, Volume: 39 Issue: 1, 1 - 23, 18.06.2025
https://doi.org/10.20479/bursauludagziraat.1489707

Abstract

The main objective of this study is to explore the potential benefits of exogenous supplements of asparagine (Asn), phenylalanine (Phe), melatonin (Mel), and potassium (KNO3) in mitigating the effects of drought stress (WD) on spinach. The improvement effects of four chemicals on drought-stressed seedlings were assessed by comparing growth rate traits, chlorophyll, secondary metabolites, nitrogenous compounds, mineral contents and variations in antioxidant enzyme activity. According to the results, the growth rate traits of seedlings were reduced with WD application, but the exogenous supplements of Asn, Phe, Melatonin, and KNO3 alleviated the suppressing effect of drought on growth parameters. Supplements of four stimulants led to a marked boost in the content of chlorophyll, lutein, anthocyanin, phenolic compounds, flavonoids, proline, and GB in the WD-treated seedlings compared to the control. Moreover, these substances suppressed the generation of MDA and H2O2 in seedlings under WD stress but caused a significant enhancement in PPO, APX, CAT, POD and SOD activities. The WD treatment reduced the accumulation of Mg, Ca, Mn, and Fe in seedlings, but induced the accumulation of K, P, S, Ni, Cu, and Zn. Supplementation of four substances to drought-exposed seedlings generally increased Mg, S, K, Ca, Mn, Fe, and Cu levels. Considering all data, it can be said that an exogenous supply of Asn, Phe, Mel and KNO3 to the Acosta spinach variety exposed to drought stress made a significant contribution to increasing yield and nutritional quality by preventing oxidative stress and strengthening enzymatic and non-enzymatic defences.

References

  • Aghaei, K., Pirbalouti, A.G., Mousavi, A., Badi, H.N. and Mehnatkesh, A. 2019. Effects of foliar spraying of L-phenylalanine and application of bio-fertilisers on growth, yield and essential oil of hyssop [Hyssopus officinalis L. subsp. Angustifolius (Bieb.)]. Biocatalysis and Agricultural Biotechnology, 21: 101318.
  • Ahanger, M.A. and Agarwal, R.M. 2017. Potassium up-regulates antioxidant metabolism and alleviates growth inhibition under water and osmotic stress in wheat (Triticum aestivum L). Protoplasm, 254 (4): 1471-1486.
  • Ahmad, S., Su, W., Kamran, M., Ahmad, I., Meng, X., Wu, X., Javed, T. and Han, Q. 2020. Foliar application of melatonin delays leaf senescence in maise by improving the antioxidant defence system and enhancing photosynthetic capacity in semiarid regions. Protoplasm, 57(4):1079-1092.
  • Akın, S. and Kaya, C. 2023. Asparagine and nitric oxide jointly enhance antioxidant capacity and nitrogen metabolism to improve drought resistance in cotton: Evidence from long-term field trials. Food and Energy Security 00, e502.
  • Akpınar, A., Cansev, A. and Altınşeker Acun, D.Z. 2021. Responses of Spinacia oleracea L. cv. matador plants to various abiotic stresses such as cadmium metal toxicity, drought and salinity.Journal of Agricultural Faculty of Bursa Uludag University, 35(1):103-117.
  • Akşahin, V. ve Gülser, F. 2020. Bazı organik materyallerin ve inorganik gübrelerin çemen bitkisinin gelişimine etkileri. Bursa Uludag Üniv. Ziraat Fak. Derg., 34(2): 255-266.
  • Bahar, A.A., Faried, H.N., Razzaq, K., Ullah, S., Akhtar, G. and Amin, M. 2021. Potassium-induced drought tolerance of potato by improving morphophysiological and biochemical attributes. Agron, 11(12): 2573.
  • Bates, L.S., Waldern, R.P. and Teare, I.D. 1973. Rapid determination of free proline for water stress studies. Plant and Soil, 39: 205-207.
  • Bukhari, S.A.B.H., Lalarukh, I., Amjad, S.F., Mansoora, N., Naz, M., Naeem, M., Bukhari, S.A., Shahbaz, M., Ali, S.A. and Marf, T.D. 2023. Drought stress alleviation by potassium-nitrate-containing chitosan/montmorillonite microparticles confers changes in Spinacia oleracea L.. Sustainability, 13: 9903.
  • Cataldo, D.A., Haroon, M., Schrader, L.E. and Youngs, V.L. 1975. Rapid colourimetric determination of nitrate in plant tissue by nitration of salicylic acid. Communications in Soil Science and Plant Analysis, 6: 71-80.
  • Cemeroğlu, B. (2007). Gıda Analizleri. Gıda Teknolojisi Derneği Yayınları, 34, 168–171.
  • Chen, Z., Cao, X. and Niu, J. 2021. Effects of Melatonin on morphological characteristics, mineral nutrition, nitrogen metabolism, and energy status in alfalfa under high-nitrate stress. Frontiers in Plant Sciences, 12: 694179.
  • Ekinci, M., Ors, S., Sahin, U., Yildirim, E. and Dursun, A. 2015. Responses to the ırrigation water amount of spinach supplemented with an organic amendment in greenhouse conditions. Communications in Soil Science and Plant Analysis, 46(3): 327-342.
  • El-Bauome, H.A., Abdeldaym, E.A., Abd El-Hady, M.A.M., Darwish, D.B.E., Alsubeie, M.S., El-Mogy, M.M., Basahi, M.A., Al-Qahtani, S.M., Al-Harbi, N.A. and Alzuaibr, F.M. 2022. Exogenous proline, methionine, and melatonin stimulate growth, quality, and drought tolerance in cauliflower plants. Agriculture, 12(9):1301.
  • Fang, S., Yang, H., Wei, G., Shen, T., Wan, Z., Wang, M., Wang, X. and Wu, Z. 2022. Potassium application enhances drought tolerance in sesame by mitigating oxidative damage and regulating osmotic adjustment. Frontiers in Plant Sciences, 13:1096606.
  • Folin, O. and Denis, W. 1915. A colourimetric method for the determination of phenols (and phenol derivatives) in urine. Journal of Biological Chemistry, 22(2):305-308.
  • Gilani, M., Danish, S., Ahmed, N., Rahi, A.A., Akrem, A., Younis, U., Irshad, I. and Iqbal R.K. 2020. Mitigation of drought stress in spinach usıng ındıvıdual and combıned applıcatıons of salıcylıc acıd and potassıum. Pakistan Journal of Botany, 52(5): 1505-1513.
  • Grieve, C.M. and Grattan, S.R. 1983. Rapid assay for determination of water-soluble quaternary ammonium compounds. Plant Soil, 70:303-307.
  • Gürel S. 2024. Effects of kitchen waste compost and chemical fertilizer application on spinach (Spinacia oleracea L.) c.v. Matador plant growth and nitrate accumulation. Journal of Plant Nutrition, 47(8):1246-1261.
  • Haghighia, M., Saadata, S. and Abbeyb, L. 2020. Effect of exogenous amino acids application on cabbage growth and nutritional value under drought stress. Scientia Horticulturae, 272: 109561.
  • Hamed, H., Mahmoud, G.A. and Abeed, A.H.A. 2025. Unravelling growth and metabolic dynamics in drought-stressed spinach plants: exploring the contribution of biological gibberellin. Scientia Horticulturae, 340: 113924. https://doi.org/10.1016/j.scienta.2024.113924
  • Haider, S.A., Lalarukh, I., Amjad, S.F., Mansoora, N., Naz, M., Naeem, M., Bukhari, S.A., Shahbaz, M., Ali, S.A. and Marfo, T.D. 2021. Drought stress alleviation by potassium-nitrate-containing chitosan/montmorillonite microparticles confers changes in Spinacia oleracea L. Sustainability, 13: 9903.
  • Hoagland, D.R. and Arnon, D.I. 1950. The water-culture method for growing plants without soil. California Agriculture Experiment Station Circular, 347:1-32.
  • Ibrahim, M.F.M., El-Samad, G.A., Ashour, H., El-Sawy, A.M., Hikal, M., Elkelish, A., El-Gawad, H.A., El-Yazied, A.A., Hozzein, W.N. and Farag, R. 2020. Regulation of agronomic traits, nutrient uptake, osmolytes and antioxidants of maise as ınfluenced by exogenous potassium silicate under deficit ırrigation and semiarid conditions. Agronomy, 10:1212.
  • Jafari, M., Shahsavar, A.R., Talebi, M. and Hesami, M. 2022. Exogenous Melatonin protects lime plants from drought stress-ınduced damage by maintaining cell membrane structure, detoxifying ROS and regulating antioxidant systems. Horticulturae, 8: 257.
  • Jalali, M., Ghaffarian Mogharab, M.H., Nazary, H. and Zare, A.A. 2020. Uptake and nitrate accumulation affected by the partial replacement of nitrate-N with different sources of amino acids in spinach and lettuce. Journal of Plant Physiology, 9: 37-45.
  • Jiao, Y., Chen, Y., Ma, C., Qin, J., Nguyen, T.H.N., Liu, D., Gan, H., Ding, S. and Luo, Z.B. 2018. Phenylalanine as a nitrogen source induces root growth and nitrogen-use efficiency in Populus canescens. Tree Physiol, 38:66-82.
  • Kaya, C., Aydemir, S., Sonmez, O., Ashraf, M. and Dikilitas, M. 2013. Regulation of growth and some key physiological processes in salt-stressed maise (Zea mays L.) plants by exogenous application of asparagine and glycerol. Acta Botanica Croatica, 72(1):57-168.
  • Kaya, C. and Shabala, S. 2023. Melatonin improves drought stress tolerance of pepper (Capsicum annuum) plants via upregulating nitrogen metabolism. Functional Plant Biology, 51(1).
  • Kaya, G. 2024. Effects of drought stress on germination and seedling growth of seed primed with boron in spinach. Journal of Agricultural Production, 5(3), 201-207.
  • Khan, S., Yu, H., Li, Q., Gao, Y., Noman Sallam, B., Wang, H., Liu, P. and Jiang, W. 2019. Exogenous application of amino acids improves the growth and yield of lettuce by enhancing photosynthetic assimilation and nutrient availability. Agronomy, 9: 266.
  • Kukric, Z.Z., Topalic-Trivunovic, L.N., Kukavica, B.M., Matoš, S.B., Pavičic, S.S., Boroja, M.M. and Savic, A.V. 2012. Characterisation of antioxidant and microbial activities of nettle leaves (Urtica dioica L.). Acta periodica Technologia, 43:257-272.
  • Kumar, V.B.A., Mohan, T.C.K. and Murugan, K. 2008. Purification and kinetic characterisation of polyphenol oxidase from Barbados cherry (Malpighia glabra L.). Food Chemistry, 110: 328-333.
  • Kumaran, A. and Karunakaran, R.J. 2006. Antioxidant and free radical scavenging activity of an aqueous extract of Coleus aromaticus. Food Chemistry, 97: 109-114.
  • Lutts, S., Kinet, J.M. and Bouharmont, J. 1996. Effects of various salts and mannitol on ion and proline accumulation in relation to osmotic adjustment in rice (Oryza sativa L.) callus cultures. Journal of Plant Physiology,149 (1-2): 86
  • Mir, A.R., Siddiqui, H., Alam, P. and Hayat, S. 2020. Melatonin modulates photosynthesis, redox status, and elemental composition to promote the growth of Brassica juncea-a dose-dependent effect. Protoplasma, 257(6):1685-700.
  • Naz, H., Akram, N.A. and Kong, H. 2020. Assessment of secondary metabolism involvement in water stress tolerance of Quinoa (Chenopodium quinoa WILLD.) subjected to varying water regimes. Pakistan Journal of Botany, 52:1553-1559.
  • Ors, A. and Suarez, D.L. 2017. Spinach biomass yield and physiological response to interactive salinity and water stress. Agricultural Water Management, 190: 31-41.
  • Qu, C., Hao, B., Xu, X., Wang, Y., Yang, C., Xu, Z. and Liu, G. 2019. Functional research on three presumed asparagine synthetase family members in Poplar. Genes, 10(5): 326.
  • Ramzan, T., Shahbaz, M., Maqsood, M.F., Zulfiqar, U., Saman, R.U., Lili, N., Irshad, M., Maqsood, S., Haider, A., Shahzad, B., Gaafar, A.Z. and Haider, F.U. 2023. Phenylalanine supply alleviates the drought stress in mustard (Brassica campestris) by modulating plant growth, photosynthesis, and antioxidant defence system. Plant Physiology and Biochemistry, 201:107828.
  • Sadak, M.S., Abdalla, A.M. and Abd Elhamid, E.M. 2020. Role of melatonin in improving growth, yield quantity and quality of Moringa oleifera L. plant under drought stress. Bulletin of the National Research Centre, 44: 1-13, 18.
  • Soares, E., Shumbe, L., Dauchot, N., Notte, C., Prouin, C., Maudoux, O. and Vanderschuren, H. 2020. Asparagine accumulation in chicory storage roots is controlled by translocation and feedback regulation of biosynthesis in leaves. BioRxiv, 228(3): 922-931.
  • .Turfan, N. 2017. Effect of some abiotic stress factories on savrun spinach (Spinacea oleracea L.). Turkish Journal of Agriculture - Food Science and Technology, (6): 660-667.
  • Turfan, N. 2023a. The effects of exogenous melatonın applıcatıon on growth rate parameters and bıoactıve compounds of some spınach cultivars (Spinach oleracea L.) grown under wınter condıtıons. Applied Ecology and Environmental Research, 21(2):1533-1547.
  • Turfan, N. 2023b. The effects of exogenous tyrosine supplement on spinach (Spinacia oleracea L.) cultivation under lithium stress. Medıterranean Agrıcultural Scıences, 36(3): 101-108.
  • Turfan, N. 2025. Revealing the impact of L-cysteine and L-phenylalanine supplements on the yield, nutritional quality and storage of garlic. Journal of Plant Nutrition, 48:10, 1742-1763.
  • Turfan, N., Kibar, B., Davletova, N. and Kibar, H. 2024. Ameliorative effects of humic acid and L-tryptophan on enzyme activity, mineral content, biochemical properties, and plant growth of spinach cultivated in saline conditions. Food Science & Nutrition, 12: 8324-8339. Food Science & Nutrition, 12: 8324-8339.
  • Velikova, V., Yordanov, I. and Edreva, A. 2000. Oxidative stress and some antioxidant systems in acid rain-treated bean plants: protective role of exogenous polyamines. Plant Science, 151 (1): 59-66.
  • Wen, Z.H., Li, H.G., Shen, J.B. and Rengel, Z. 2017. Maize responds to low shoot P concentration by altering root morphology rather than increasing root exudation. Plant Soil, 416:377-389.
  • Yaman Türkkan, Ö. and Kibar, B. 2022. Effects of different organic fertilizers on plant growth, yield, quality properties and element contents in spinach. International Journal of Agriculture and Wildlife Science, 8(2): 208-222.
  • Yang, X., Cui, X., Zhao, L., Guo, D., Feng, L., Wei, S., Zhao, C. and Huang, D. 2020. Exogenous glycine nitrogen enhances accumulation of glycosylated flavonoids and antioxidant activity in lettuce (Lactuca sativa L.). Frontiers in Plant Science, 8:2098.
  • Zahoor, R., Zhao, W., Abid, M., Dong, H. and Zhou, Z. 2017. Potassium application regulates nitrogen metabolism and osmotic adjustment in cotton (Gossypium hirsutum L.) functional leaf under drought stress. Journal of Plant Physiology, 215:30-38.
  • Zhang, L.L., Han, S.C., Li, Z.G., Liu, N. and Li, L.Y. 2006. Effects of the infestation by Actinote thalia pyrrha (Fabricius) on the physiological indexes of Mikania micrantha leaves. Acta Ecologica Sinica, 26 (5): 1330-1336.
  • Zhang, N., Sun, Q., Li, H., Li, X., Cao, Y. and Zhang, H. 2016. Melatonin improved anthocyanin accumulation by regulating gene expressions and resulted in high reactive oxygen species scavenging capacity in cabbage. Frontiers in Plant Sciences, 7:197.
  • Zhang, N., Zhao, B., Zhang, H.J., Weeda, S., Yang, C., Yang, Z.C., Ren, S. and Guo, Y.D. 2013. Melatonin promotes water-stress tolerance, lateral root formation, and seed germination in cucumber (Cucumis sativus L.). Journal of Pineal Research, 54(1):15-23.
  • Zhou, Z., Zhou, J., Li, R., Wang, H. and Wang, J. 2007. Effect of exogenous amino acids on Cu uptake and translocation in maie seedlings. Plant and Soil, 292: 105-117.

nvestigation of the Effects of Foliar Amino Acid, Melatonin and Potassium Applications on Spinach Cultivar under Water Stress

Year 2025, Volume: 39 Issue: 1, 1 - 23, 18.06.2025
https://doi.org/10.20479/bursauludagziraat.1489707

Abstract

The main objective of this study is to explore the potential benefits of exogenous supplements of asparagine (Asn), phenylalanine (Phe), melatonin (Mel), and potassium (KNO3) in mitigating the effects of drought stress (WD) on spinach. The improvement effects of four chemicals on drought-stressed seedlings were assessed by comparing growth rate traits, chlorophyll, secondary metabolites, nitrogenous compounds, mineral contents and variations in antioxidant enzyme activity. According to the results, the growth rate traits of seedlings were reduced with WD application, but the exogenous supplements of Asn, Phe, Melatonin, and KNO3 alleviated the suppressing effect of drought on growth parameters. Supplements of four stimulants led to a marked boost in the content of chlorophyll, lutein, anthocyanin, phenolic compounds, flavonoids, proline, and GB in the WD-treated seedlings compared to the control. Moreover, these substances suppressed the generation of MDA and H2O2 in seedlings under WD stress but caused a significant enhancement in PPO, APX, CAT, POD and SOD activities. The WD treatment reduced the accumulation of Mg, Ca, Mn, and Fe in seedlings, but induced the accumulation of K, P, S, Ni, Cu, and Zn. Supplementation of four substances to drought-exposed seedlings generally increased Mg, S, K, Ca, Mn, Fe, and Cu levels. Considering all data, it can be said that an exogenous supply of Asn, Phe, Mel and KNO3 to the Acosta spinach variety exposed to drought stress made a significant contribution to increasing yield and nutritional quality by preventing oxidative stress and strengthening enzymatic and non-enzymatic defences.

References

  • Aghaei, K., Pirbalouti, A.G., Mousavi, A., Badi, H.N. and Mehnatkesh, A. 2019. Effects of foliar spraying of L-phenylalanine and application of bio-fertilisers on growth, yield and essential oil of hyssop [Hyssopus officinalis L. subsp. Angustifolius (Bieb.)]. Biocatalysis and Agricultural Biotechnology, 21: 101318.
  • Ahanger, M.A. and Agarwal, R.M. 2017. Potassium up-regulates antioxidant metabolism and alleviates growth inhibition under water and osmotic stress in wheat (Triticum aestivum L). Protoplasm, 254 (4): 1471-1486.
  • Ahmad, S., Su, W., Kamran, M., Ahmad, I., Meng, X., Wu, X., Javed, T. and Han, Q. 2020. Foliar application of melatonin delays leaf senescence in maise by improving the antioxidant defence system and enhancing photosynthetic capacity in semiarid regions. Protoplasm, 57(4):1079-1092.
  • Akın, S. and Kaya, C. 2023. Asparagine and nitric oxide jointly enhance antioxidant capacity and nitrogen metabolism to improve drought resistance in cotton: Evidence from long-term field trials. Food and Energy Security 00, e502.
  • Akpınar, A., Cansev, A. and Altınşeker Acun, D.Z. 2021. Responses of Spinacia oleracea L. cv. matador plants to various abiotic stresses such as cadmium metal toxicity, drought and salinity.Journal of Agricultural Faculty of Bursa Uludag University, 35(1):103-117.
  • Akşahin, V. ve Gülser, F. 2020. Bazı organik materyallerin ve inorganik gübrelerin çemen bitkisinin gelişimine etkileri. Bursa Uludag Üniv. Ziraat Fak. Derg., 34(2): 255-266.
  • Bahar, A.A., Faried, H.N., Razzaq, K., Ullah, S., Akhtar, G. and Amin, M. 2021. Potassium-induced drought tolerance of potato by improving morphophysiological and biochemical attributes. Agron, 11(12): 2573.
  • Bates, L.S., Waldern, R.P. and Teare, I.D. 1973. Rapid determination of free proline for water stress studies. Plant and Soil, 39: 205-207.
  • Bukhari, S.A.B.H., Lalarukh, I., Amjad, S.F., Mansoora, N., Naz, M., Naeem, M., Bukhari, S.A., Shahbaz, M., Ali, S.A. and Marf, T.D. 2023. Drought stress alleviation by potassium-nitrate-containing chitosan/montmorillonite microparticles confers changes in Spinacia oleracea L.. Sustainability, 13: 9903.
  • Cataldo, D.A., Haroon, M., Schrader, L.E. and Youngs, V.L. 1975. Rapid colourimetric determination of nitrate in plant tissue by nitration of salicylic acid. Communications in Soil Science and Plant Analysis, 6: 71-80.
  • Cemeroğlu, B. (2007). Gıda Analizleri. Gıda Teknolojisi Derneği Yayınları, 34, 168–171.
  • Chen, Z., Cao, X. and Niu, J. 2021. Effects of Melatonin on morphological characteristics, mineral nutrition, nitrogen metabolism, and energy status in alfalfa under high-nitrate stress. Frontiers in Plant Sciences, 12: 694179.
  • Ekinci, M., Ors, S., Sahin, U., Yildirim, E. and Dursun, A. 2015. Responses to the ırrigation water amount of spinach supplemented with an organic amendment in greenhouse conditions. Communications in Soil Science and Plant Analysis, 46(3): 327-342.
  • El-Bauome, H.A., Abdeldaym, E.A., Abd El-Hady, M.A.M., Darwish, D.B.E., Alsubeie, M.S., El-Mogy, M.M., Basahi, M.A., Al-Qahtani, S.M., Al-Harbi, N.A. and Alzuaibr, F.M. 2022. Exogenous proline, methionine, and melatonin stimulate growth, quality, and drought tolerance in cauliflower plants. Agriculture, 12(9):1301.
  • Fang, S., Yang, H., Wei, G., Shen, T., Wan, Z., Wang, M., Wang, X. and Wu, Z. 2022. Potassium application enhances drought tolerance in sesame by mitigating oxidative damage and regulating osmotic adjustment. Frontiers in Plant Sciences, 13:1096606.
  • Folin, O. and Denis, W. 1915. A colourimetric method for the determination of phenols (and phenol derivatives) in urine. Journal of Biological Chemistry, 22(2):305-308.
  • Gilani, M., Danish, S., Ahmed, N., Rahi, A.A., Akrem, A., Younis, U., Irshad, I. and Iqbal R.K. 2020. Mitigation of drought stress in spinach usıng ındıvıdual and combıned applıcatıons of salıcylıc acıd and potassıum. Pakistan Journal of Botany, 52(5): 1505-1513.
  • Grieve, C.M. and Grattan, S.R. 1983. Rapid assay for determination of water-soluble quaternary ammonium compounds. Plant Soil, 70:303-307.
  • Gürel S. 2024. Effects of kitchen waste compost and chemical fertilizer application on spinach (Spinacia oleracea L.) c.v. Matador plant growth and nitrate accumulation. Journal of Plant Nutrition, 47(8):1246-1261.
  • Haghighia, M., Saadata, S. and Abbeyb, L. 2020. Effect of exogenous amino acids application on cabbage growth and nutritional value under drought stress. Scientia Horticulturae, 272: 109561.
  • Hamed, H., Mahmoud, G.A. and Abeed, A.H.A. 2025. Unravelling growth and metabolic dynamics in drought-stressed spinach plants: exploring the contribution of biological gibberellin. Scientia Horticulturae, 340: 113924. https://doi.org/10.1016/j.scienta.2024.113924
  • Haider, S.A., Lalarukh, I., Amjad, S.F., Mansoora, N., Naz, M., Naeem, M., Bukhari, S.A., Shahbaz, M., Ali, S.A. and Marfo, T.D. 2021. Drought stress alleviation by potassium-nitrate-containing chitosan/montmorillonite microparticles confers changes in Spinacia oleracea L. Sustainability, 13: 9903.
  • Hoagland, D.R. and Arnon, D.I. 1950. The water-culture method for growing plants without soil. California Agriculture Experiment Station Circular, 347:1-32.
  • Ibrahim, M.F.M., El-Samad, G.A., Ashour, H., El-Sawy, A.M., Hikal, M., Elkelish, A., El-Gawad, H.A., El-Yazied, A.A., Hozzein, W.N. and Farag, R. 2020. Regulation of agronomic traits, nutrient uptake, osmolytes and antioxidants of maise as ınfluenced by exogenous potassium silicate under deficit ırrigation and semiarid conditions. Agronomy, 10:1212.
  • Jafari, M., Shahsavar, A.R., Talebi, M. and Hesami, M. 2022. Exogenous Melatonin protects lime plants from drought stress-ınduced damage by maintaining cell membrane structure, detoxifying ROS and regulating antioxidant systems. Horticulturae, 8: 257.
  • Jalali, M., Ghaffarian Mogharab, M.H., Nazary, H. and Zare, A.A. 2020. Uptake and nitrate accumulation affected by the partial replacement of nitrate-N with different sources of amino acids in spinach and lettuce. Journal of Plant Physiology, 9: 37-45.
  • Jiao, Y., Chen, Y., Ma, C., Qin, J., Nguyen, T.H.N., Liu, D., Gan, H., Ding, S. and Luo, Z.B. 2018. Phenylalanine as a nitrogen source induces root growth and nitrogen-use efficiency in Populus canescens. Tree Physiol, 38:66-82.
  • Kaya, C., Aydemir, S., Sonmez, O., Ashraf, M. and Dikilitas, M. 2013. Regulation of growth and some key physiological processes in salt-stressed maise (Zea mays L.) plants by exogenous application of asparagine and glycerol. Acta Botanica Croatica, 72(1):57-168.
  • Kaya, C. and Shabala, S. 2023. Melatonin improves drought stress tolerance of pepper (Capsicum annuum) plants via upregulating nitrogen metabolism. Functional Plant Biology, 51(1).
  • Kaya, G. 2024. Effects of drought stress on germination and seedling growth of seed primed with boron in spinach. Journal of Agricultural Production, 5(3), 201-207.
  • Khan, S., Yu, H., Li, Q., Gao, Y., Noman Sallam, B., Wang, H., Liu, P. and Jiang, W. 2019. Exogenous application of amino acids improves the growth and yield of lettuce by enhancing photosynthetic assimilation and nutrient availability. Agronomy, 9: 266.
  • Kukric, Z.Z., Topalic-Trivunovic, L.N., Kukavica, B.M., Matoš, S.B., Pavičic, S.S., Boroja, M.M. and Savic, A.V. 2012. Characterisation of antioxidant and microbial activities of nettle leaves (Urtica dioica L.). Acta periodica Technologia, 43:257-272.
  • Kumar, V.B.A., Mohan, T.C.K. and Murugan, K. 2008. Purification and kinetic characterisation of polyphenol oxidase from Barbados cherry (Malpighia glabra L.). Food Chemistry, 110: 328-333.
  • Kumaran, A. and Karunakaran, R.J. 2006. Antioxidant and free radical scavenging activity of an aqueous extract of Coleus aromaticus. Food Chemistry, 97: 109-114.
  • Lutts, S., Kinet, J.M. and Bouharmont, J. 1996. Effects of various salts and mannitol on ion and proline accumulation in relation to osmotic adjustment in rice (Oryza sativa L.) callus cultures. Journal of Plant Physiology,149 (1-2): 86
  • Mir, A.R., Siddiqui, H., Alam, P. and Hayat, S. 2020. Melatonin modulates photosynthesis, redox status, and elemental composition to promote the growth of Brassica juncea-a dose-dependent effect. Protoplasma, 257(6):1685-700.
  • Naz, H., Akram, N.A. and Kong, H. 2020. Assessment of secondary metabolism involvement in water stress tolerance of Quinoa (Chenopodium quinoa WILLD.) subjected to varying water regimes. Pakistan Journal of Botany, 52:1553-1559.
  • Ors, A. and Suarez, D.L. 2017. Spinach biomass yield and physiological response to interactive salinity and water stress. Agricultural Water Management, 190: 31-41.
  • Qu, C., Hao, B., Xu, X., Wang, Y., Yang, C., Xu, Z. and Liu, G. 2019. Functional research on three presumed asparagine synthetase family members in Poplar. Genes, 10(5): 326.
  • Ramzan, T., Shahbaz, M., Maqsood, M.F., Zulfiqar, U., Saman, R.U., Lili, N., Irshad, M., Maqsood, S., Haider, A., Shahzad, B., Gaafar, A.Z. and Haider, F.U. 2023. Phenylalanine supply alleviates the drought stress in mustard (Brassica campestris) by modulating plant growth, photosynthesis, and antioxidant defence system. Plant Physiology and Biochemistry, 201:107828.
  • Sadak, M.S., Abdalla, A.M. and Abd Elhamid, E.M. 2020. Role of melatonin in improving growth, yield quantity and quality of Moringa oleifera L. plant under drought stress. Bulletin of the National Research Centre, 44: 1-13, 18.
  • Soares, E., Shumbe, L., Dauchot, N., Notte, C., Prouin, C., Maudoux, O. and Vanderschuren, H. 2020. Asparagine accumulation in chicory storage roots is controlled by translocation and feedback regulation of biosynthesis in leaves. BioRxiv, 228(3): 922-931.
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There are 56 citations in total.

Details

Primary Language English
Subjects Vegetable Growing and Treatment, Food Sciences (Other)
Journal Section Research Articles
Authors

Nezahat Turfan 0000-0002-5753-0390

Publication Date June 18, 2025
Submission Date May 25, 2024
Acceptance Date December 24, 2024
Published in Issue Year 2025 Volume: 39 Issue: 1

Cite

APA Turfan, N. (2025). Investigation of the Effects of Foliar Amino Acid, Melatonin and Potassium Applications on Spinach Cultivar under Water Stress. Bursa Uludağ Üniversitesi Ziraat Fakültesi Dergisi, 39(1), 1-23. https://doi.org/10.20479/bursauludagziraat.1489707