Effects of melatonin applications on certain biochemical characteristics of strawberry seedlings in lime stress conditions

Yıl: 2021 Cilt: 45 Sayı: 3 Sayfa Aralığı: 285 - 289 Metin Dili: İngilizce DOI: 10.3906/tar-2006-83 İndeks Tarihi: 06-06-2022

Effects of melatonin applications on certain biochemical characteristics of strawberry seedlings in lime stress conditions

Öz:
The aim of this study is to determine the effects of different doses of melatonin (MEL) applications (0, 5, 10 µM) on certain biochemical characteristics of strawberry seedlings grown in calcareous stress conditions. The experiment was conducted in the pots filled with lime-added mixture at the rate of 1% and peat perlite at the rate of 1:1 with frigo seedlings belonging to “Albion” strawberry cultivar. In order to examine the effects of MEL application against lime stress in different development stages; analyses of proline, total phenolic content, and lipid peroxidation were performed on leaf samples taken in 3 different periods. MEL applications in strawberry seedlings grown in a controlled and calcareous condition increased the proline amount while decreasing lipid peroxidation (MDA). As a result, it was detected that MEL applications relieve the effects of lime stress and the dose of 10 µM generally offers better results.
Anahtar Kelime:

Belge Türü: Makale Makale Türü: Araştırma Makalesi Erişim Türü: Erişime Açık
  • Aguilera Y, Herrera T, Liébana R, Rebollo-Hernanz M, SanchezPuelles Cet al. (2015). Impact of melatonin enrichment during germination of legumes on bioactive compounds and antioxidant activity. Journal of Agricultural and Food Chemistry 63: 7967-7974. doi: 10.1021/acs.jafc.5b03128
  • Arnao MN, Hernandez-Ruiz J (2009). Chemical stress by different agents affects the melatonin content of barley roots. Journal of Pineal Research 46: 295-299. doi: 10.1111/j.1600- 079X.2008.00660.x
  • Arnao MN, Hernandez-Ruiz J (2015). Functions of melatonin in plants: a review. Journal of Pineal Research 59: 133-150. doi: 10.1111/jpi.12253
  • Arnao MN, Hernandez-Ruiz J (2013). Growth conditions determine different melatonin content of tomato plants. Food Chemistry 138 (2-3): 1212-1214. doi: 10.1016/j.foodchem.2012.10.077
  • Balcı G, Koç A, Keles H, Kılıç T (2017). Evaluation of the performance of some strawberry varieties in Yozgat. Fruit Science 4 (2): 6-12 (in Turkish with an English abstract).
  • Bates Waldren RP, Teare ID (1973). Rapid determination of free proline for water-stress studies. Plant and Soil 39: 205-207.
  • Byeon Y, Back K (2014). Melatonin synthesis in rice seedling in vivo is enhanced at hight temperatures and under dark conditions due to increased serotonin N-acelyltransferase and N-acetylserotonin methyltransrase activities. Journal of Pineal Research 56: 189-195. doi: 10.1111/jpi.12111
  • Çakaryıldırım N (2004). Çilek. Tarımsal Ekonomi Araştırma Enstitüsü, Bakış, 7, 1-4 (in Turkish).
  • Catala A (2007). The ability of melatonin to counteract lipid peroxidation in biological membranes. Current Molecular Medicine 7 (79): 638-649. doi: 10.2174/156652407782564444
  • Çetin ES, Daler S (2017). Mechanism of resistance against lime stress by plant growth-promoting Rhizobacteria in Vitis. Int. International Journal of Multidisciplinary Research and Development 4 (7): 462-466.
  • Chen THH, Murata N (2002). Enhancement of tolerance of abiotic stress by metabolic engineering of betaines and other compatible solutes. Current Opinion in Plant Biology 5: 250- 257. doi: 10.1016/S1369-5266(02)00255-8
  • Chernyshuk DK, Ivachenko LY, Doğan H, Raza G, Ali MA et al. (2020). Dihydroquercetin increases the adaptive potential of wild soybean against copper sulfate and cadmium sulfate toxicity. Turkish Journal of Agriculture and Forestry 44: 492- 499. doi: 10.3906/tar-1912-50
  • Dubbles R, Reiter RJ, Klenke E, Goebel A, Schnakenberg E et al. (1995). Melatonin in edible plants identified by radioimmunoassay and by high performance liquid chromatography-mass spectrometry. Journal of Pineal Research 18: 28-31. doi: 10.1111/j.1600-079X.1995.tb00136.x
  • Ercisli S, Esitken A, Cangi R, Sahin F (2003). Adventitious root formation of kiwifruit in relation to sampling date, IBA and Agrobacterium rubi inoculation. Plant Growth Regulation 41: 133-137. doi: 10.1023/A:1027307720934
  • García JJ, López‐Pingarrón L, Almeida‐Souza P, Tres A, Escudero P et al. (2014). Protective effects of melatonin in reducing oxidative stress and in preserving the fluidity of biological membranes: a review. Journal of Pineal Research 56: 225-237. doi: 10.1111/jpi.12128
  • Hancock JF (1999). Strawberries. Cambridge, UK: Cambridge University Press.
  • Hattori A, Migitaka H, Masayaki I, Itoh M, Yamamoto K et al. (1995). Identification of melatonin in plants and its effects on plasma melatonin levels and binding to melatonin receptors in vertebrates. International Journal of Molecular Sciences 35: 627-634.
  • Kaçar B (2012). Toprak Analizleri. Ankara, Turkey: Nobel Academic Publishing (in Turkish).
  • Kaya C, Aslan M, Uğurlar F, Ashraf M (2020). Thiamine-induced nitric oxide improves tolerance to boron toxicity in pepper plants by enhancing antioxidants. Turkish Journal of Agriculture and Forestry 44: 379-390. doi: 10.3906/tar-1909-40
  • Kepenek K, Koyuncu MA, Koyuncu F (2002). Bazı çilek çeşitlerinin Isparta koşullarinda adaptasyonu. Bahçe 31 (1-2): 17-23 (in Turkish).
  • Korkmaz A, Köklü Ş, Yakupoğlu G (2018). Investigating the effects of melatonin application on the ageing process of pepper seeds. Acta Horticulturae 1204: 9-16. doi: 10.17660/ ActaHortic.2018.1204.2
  • Lerner AB, Case JD, Takahashi Y, Lee TH, Mori W (1958). Isolation of melatonin, the Pineal factor that lightness melanocytes. Journal of the American Chemical Society 80: 2587-2592. doi: 10.1021/ ja01543a060
  • Liu C, Zheng H, Sheng K, Liu W, Zheng L (2018). Effects of melatonin treatment on the postharvest quality of strawberry fruit. Postharvest Biology and Technology 139: 47-55. doi: 10.1016/j. postharvbio.2018.01.016
  • Meng JF, Xu TF, Wang ZZ, Fang YL, Xi ZM et al. (2014). The ameliorative effects of exogenous melatonin on grape cuttings under waterdeficient stress: antioxidant metabolites, leaf anatomy, and chloroplast morphology. Journal of Pineal Research 57: 200-212. doi: 10.1111/jpi.12159
  • Pešaković M, Milenković S, Đukić D, Mandić L, KaraklajićStajić Ž et al. (2016) Phenolic composition and antioxidant capacity of integrated and conventionally grown strawberry (Fragaria×ananassa Duch.). Hortscience 43 (1): 17-24 doi: 10.17221/180/2014-HORTSCI
  • Posmyk, MM, Kuran H, Marciniak K, Janas KM (2008). Presowing seed treatment with melatonin protects red cabbage seedlings against toxic copper ion concentrations. Journal of Pineal Research 45: 24-31. doi: 10.1111/j.1600-079X.2007.00552.x
  • Sahin U, Anapali O, Ercisli S (2002). Physico-chemical and physical properties of some substrates used in horticulture. Gartenbauwissenschaft 67: 55-60.
  • Shi H, Jiang C, Ye T, Tan DX, Reiter RJ et al. (2015) Comparative physiological, metabolomic, and transcriptomic analyses reveal mechanisms of improved abiotic stress resistance in bermuda grass [Cynodon dactylon (L). Pers.] by exogenous melatonin. Journal of Experimental Botany 66: 681-694. doi: 10.1093/jxb/ eru373
  • Singleton VL, Rossi JR (1965). Colorimetry of total phenolics with phosphomolybdic phosphotungstic acid. American Journal of Enology and Viticulture 16: 144-158.
  • Tal O, Haim A, Harel O, Gerchman Y (2011). Melatonin as an antioxidant and its semi-lunar rhythm in green macroalga Ulva sp. Journal of Experimental Botany 62: 1903-1910. doi: 10.1093/ jxb/erq378
  • Turk H, Erdal S, Genisel M, Atici O, Demir Y et al. (2014) The regulatory effect of melatonin on physiological, biochemical and molecular parameters in cold-stressed wheat seedlings. Plant Growth Regulation 74: 139-152. doi: 10.1007/s10725-014-9905-0
  • Vardharajula S, Zulfikar AS, Grover M, Reddy G, Bandi V (2011). Drought-tolerant plant growth promoting Bacillus spp. effect on growth, osmolytes, and antioxidant status of maize under drought stres. Journal of Plant Interactions 6 (1): 1-14. doi: 10.1080/17429145.2010.535178
  • Yakupoğlu G, Köklü Ş, Korkmaz A (2018). Phytomelatonin and its roles in plants. KSÜ Doğa Bilimleri Dergisi 21 (2): 264-276 (in Turkish with an English abstract).
  • Zhang Y, Guo H, Kwan H, Wang JW, Kosek J et al. (2007). PAR-1 kinase phosphorylates Dlg and regulates its postsynaptic targeting at the Drosophila neuromuscular junction. Neuron 53 (2): 201- 215. doi: 10.1016/j.neuron.2006.12.016
APA Balcı G (2021). Effects of melatonin applications on certain biochemical characteristics of strawberry seedlings in lime stress conditions. , 285 - 289. 10.3906/tar-2006-83
Chicago Balcı Gülden Effects of melatonin applications on certain biochemical characteristics of strawberry seedlings in lime stress conditions. (2021): 285 - 289. 10.3906/tar-2006-83
MLA Balcı Gülden Effects of melatonin applications on certain biochemical characteristics of strawberry seedlings in lime stress conditions. , 2021, ss.285 - 289. 10.3906/tar-2006-83
AMA Balcı G Effects of melatonin applications on certain biochemical characteristics of strawberry seedlings in lime stress conditions. . 2021; 285 - 289. 10.3906/tar-2006-83
Vancouver Balcı G Effects of melatonin applications on certain biochemical characteristics of strawberry seedlings in lime stress conditions. . 2021; 285 - 289. 10.3906/tar-2006-83
IEEE Balcı G "Effects of melatonin applications on certain biochemical characteristics of strawberry seedlings in lime stress conditions." , ss.285 - 289, 2021. 10.3906/tar-2006-83
ISNAD Balcı, Gülden. "Effects of melatonin applications on certain biochemical characteristics of strawberry seedlings in lime stress conditions". (2021), 285-289. https://doi.org/10.3906/tar-2006-83
APA Balcı G (2021). Effects of melatonin applications on certain biochemical characteristics of strawberry seedlings in lime stress conditions. Turkish Journal of Agriculture and Forestry, 45(3), 285 - 289. 10.3906/tar-2006-83
Chicago Balcı Gülden Effects of melatonin applications on certain biochemical characteristics of strawberry seedlings in lime stress conditions. Turkish Journal of Agriculture and Forestry 45, no.3 (2021): 285 - 289. 10.3906/tar-2006-83
MLA Balcı Gülden Effects of melatonin applications on certain biochemical characteristics of strawberry seedlings in lime stress conditions. Turkish Journal of Agriculture and Forestry, vol.45, no.3, 2021, ss.285 - 289. 10.3906/tar-2006-83
AMA Balcı G Effects of melatonin applications on certain biochemical characteristics of strawberry seedlings in lime stress conditions. Turkish Journal of Agriculture and Forestry. 2021; 45(3): 285 - 289. 10.3906/tar-2006-83
Vancouver Balcı G Effects of melatonin applications on certain biochemical characteristics of strawberry seedlings in lime stress conditions. Turkish Journal of Agriculture and Forestry. 2021; 45(3): 285 - 289. 10.3906/tar-2006-83
IEEE Balcı G "Effects of melatonin applications on certain biochemical characteristics of strawberry seedlings in lime stress conditions." Turkish Journal of Agriculture and Forestry, 45, ss.285 - 289, 2021. 10.3906/tar-2006-83
ISNAD Balcı, Gülden. "Effects of melatonin applications on certain biochemical characteristics of strawberry seedlings in lime stress conditions". Turkish Journal of Agriculture and Forestry 45/3 (2021), 285-289. https://doi.org/10.3906/tar-2006-83