اردکانی، ا.، داودینژاد، غ و عزیزی، م.1391. تأثیر کاربرد محلولپاشی سالیسیلیکاسید قبل از برداشت بر روی ماندگاری، کیفیت پس از برداشت و فعالیت آنتیاکسیدانی زردآلو رقم نوری. نشریه علوم باغبانی، 26(4): 448-459.
رنجبران، ا.، ساریخانی، ح. و بخشی، د. 1388. اثر تیمار قبل و پس از برداشت سالیسیلیکاسید روی برخی شاخصهایی کیفی انگور رقم بیدانه سفید. ششمین کنگره باغبانی ایران، رشت دانشگاه گیلان.
Bisti, A., Hasanpour, H., and Rashid Hasanlouie, A. 2015. The effect of gamma amino butyric acid on postharvest quality of cherry cultivar “Takdaneh Mashhad”, Second conference on new findings in environmental and agricultural ecosystems, Institute of new energy and environment, University of Tehran, Tehran.
Aghdam, M.S., Dokhanieh, A.Y., Hassanpour, H. and Fard, J.R. 2013. Enhancement of antioxidant capacity of cornelian cherry (Cornus mas) fruit by postharvest calcium treatment. Scientia Horticulturae, 161:160-164.
Aghdam, M.S., Naderi, R., Jannatizadeh, A., Sarcheshmeh, M.A.A. and Babalar, M. 2016. Enhancement of postharvest chilling tolerance of anthurium cut flowers by γ-aminobutyric acid (GABA) treatments. Scientia Horticulturae, 198: 52-60.
Al Shoffe, Y., Nock, J.F., Zhang, Y. and Watkins, C.B. 2021. Pre-and post-harvest γ-aminobutyric acid application in relation to fruit quality and physiological disorder development in ‘Honeycrisp’apples. Scientia Horticulturae, 289:110431.
Arnon, D.I. 1949. Copper enzymes in isolated chloroplasts. Polyphenoloxidase in Beta vulgaris. Plant Physiology, 24: 1-15.
Asgarian, Z.S., Karimi, R., Ghabooli, M. and Maleki, M. 2022. Biochemical changes and quality characterization of cold-stored ‘Sahebi’grape in response to postharvest application of GABA. Food Chemistry, 373:131401.
Bai, J., Alleyne, V., Hagenmaier, R.D., Mattheis, J.P. and Baldwin, E.A. 2003. Formulation of zein coatings for apples (Malus domestica Borkh). Postharvest Biology and Technology, 28(2):259-268.
Bown, A.W. and Shelp, B.J. 2016. Plant GABA: not just a metabolite. Trends in Plant Science, 21(10): 811-813.
Brand-Williams, W., Cuvelier, M.E. and Berset, C.L.W.T. 1995. Use of a free radical method to evaluate antioxidant activity. LWT-Food Science and Technology, 28(1):25-30.
Carrión-Antolí, A., Martínez-Romero, D., Guillén, F., Zapata, P.J., Serrano, M. and Valero, D. 2022. Melatonin pre-harvest treatments leads to maintenance of sweet cherry quality during storage by increasing antioxidant systems. Frontiers in Plant Science, 13:863467.
Chi, Z., Dai, Y., Cao, S., Wei, Y., Shao, X., Huang, X., Xu, F. and Wang, H. 2021. Exogenous calcium chloride (CaCl2) promotes γ-aminobutyric acid (GABA) accumulation in fresh-cut pears. Postharvest Biology and Technology, 174:111446.
Ciccarese, A., Stellacci, A.M., Gentilesco, G. and Rubino, P. 2013. Effectiveness of pre-and post-veraison calcium applications to control decay and maintain table grape fruit quality during storage. Postharvest Biology and Technology, 75:135-141.
Debnath, B., Islam, W., Li, M., Sun, Y., Lu, X., Mitra, S., Hussain, M., Liu, S. and Qiu, D. 2019. Melatonin mediates enhancement of stress tolerance in plants. International Journal of Molecular Sciences, 20(5):1040.
Dong, H., Lan, Q., Zhou, Y., Zhou, Y., Bao, Z., Wen, Q. and Li, X. 2022. Exogenous γ-Aminobutyric acid (GABA) treatment suppresses ethylene biosynthesis in hardy kiwifruit (Actinidia aruguta) during postharvest storage. Creative Commons CC BY license, 1-17.
FAOSTAT. 2021. Statistical Yearbook. Statistics Division, Food and Agriculture Organizatio of the United Nations, Rome, Italy. http://www.fao.org/ Statistics.
Guo, H., Chen, Y. and Li, J. 2018. Effects of 6-benzylaminopurine–calcium chloride–salicylic acid on yellowing and reactive oxygen metabolism of Broccoli. Transactions of Tianjin University, 318-325.
Guohua, Z. 2009. Research on the calcium treatment on physiological characteristics of postharvest loquat fruit [J]. Chinese agricultural. Chinese Agricultural Science Bulletin, 25(11):117-122.
Habibi, F. and Ramezanian, A. 2017. Vacuum infiltration of putrescine enhances bioactive compounds and maintains quality of blood orange during cold storage. Food Chemistry, 227:1-8.
Hadian-Deljou, M., Esna-Ashari, M. and Sarikhani, H. 2017. Effect of pre-and post-harvest salicylic acid treatments on quality and antioxidant properties of ‘Red Delicious’ apples during cold storage. Advances in Horticultural Science, 31(1): 31-38.
Hassanpour, H., Yousef, H., Jafar, H. and Mohammad, A. 2011. Antioxidant capacity and phytochemical properties of cornelian cherry (Cornus mas L.) genotypes in Iran. Scientia Horticulturae, 129(3): 459-463.
Hocking, B., Tyerman, S.D., Burton, R.A. and Gilliham, M. 2016. Fruit calcium: transport and physiology. Frontiers in Plant Science, 7: 569.
Huang, R.H., Liu, J.H., Lu, Y.M. and Xia, R.X. 2008. Effect of salicylic acid on the antioxidant system in the pulp of ‘Cara cara’navel orange (Citrus sinensis L. Osbeck) at different storage temperatures. Postharvest Biology and Technology, 47(2): 168-175.
Hussein, J.M., Tibuhwa, D.D., Mshandete, A.M. and Kivaisi, A.K. 2015. Antioxidant properties of seven wild edible mushrooms from Tanzania. African Journal of Food Science, 9(9): 471-479.
Kang, H.M. and Saltveit, M.E. 2002. Antioxidant capacity of lettuce leaf tissue increases after wounding. Journal of Agricultural and Food Chemistry, 50(26): 7536-7541.
Kant, K., Arora, A. and Singh, V.P. 2016. Salicylic acid influences biochemical characteristics of harvested tomato (Solanum lycopersicon L.) during ripening. Indian Journal of Plant Physiology, 21(1): 50-55.
Kant, K., Arora, A., Singh, V.P. and Kumar, R. 2013. Effect of exogenous application of salicylic acid and oxalic acid on post harvest shelf-life of tomato (Solanum lycopersicon L.). Indian Journal of Plant Physiology, 18: 15-21.
Kazemi, M., Aran, M. and Zamani, S. 2011. Effect of salicylic acid treatments on quality characteristics of apple fruits during storage. American Journal of Plant Physiology, 6(2): 113-119.
Kinnersley, A.M. and Turano, F.J. 2000. Gamma aminobutyric acid (GABA) and plant responses to stress. Critical Reviews in Plant Sciences, 19(6): 479-509.
Li, J., Zhou, X., Wei, B., Cheng, S., Zhou, Q. and Ji, S. 2019. GABA application improves the mitochondrial antioxidant system and reduces peel browning in ‘Nanguo’pears after removal from cold storage. Food Chemistry, 297: 124903.
Li, Z., Zhang, S., Xue, J., Mu, B., Song, H. and Liu, Y. 2022. Exogenous melatonin treatment induces disease resistance against Botrytis cinerea on post-harvest grapes by activating defence responses. Foods, 11(15): 231.
Malekzadeh, P., Khosravi-Nejad, F., Hatamnia, A.A. and Sheikhakbari Mehr, R. 2017. Impact of postharvest exogenous γ-aminobutyric acid treatment on cucumber fruit in response to chilling tolerance. Physiology and Molecular Biology of Plants, 23: 827-836.
Marzouk, H.A. and Kassem, H.A. 2011. Improving yield, quality, and shelf life of Thompson seedless grapevine by preharvest foliar applications. Scientia Horticulturae, 130(2): 425-430.
Meighani, H., Ghasemnezhad, M. and Bakhshi, D. 2015. Effect of different coatings on post-harvest quality and bioactive compounds of pomegranate (Punica granatum L.) fruits. Journal of Food Science and Technology, 52: 4507-4514.
Meng, J.F., Xu, T.F., Song, C.Z., Yu, Y., Hu, F., Zhang, L., Zhang, Z.W. and Xi, Z.M. 2015. Melatonin treatment of pre-veraison grape berries to increase size and synchronicity of berries and modify wine aroma components. Food Chemistry, 185: 127-134.
Michailidis, M., Tanou, G., Sarrou, E., Karagiannis, E., Ganopoulos, I., Martens, S. and Molassiotis, A. 2021. Pre-and post-harvest melatonin application boosted phenolic compounds accumulation and altered respiratory characters in sweet cherry fruit. Frontiers in Nutrition, 8:695061.
Mohd Hassan, N., Yusof, N.A., Yahaya, A.F., Mohd Rozali, N.N. and Othman, R. 2019. Carotenoids of capsicum fruits: Pigment profile and health-promoting functional attributes. Antioxidants, 8(10): 469.
Nazoori, F., ZamaniBahramabadi, E., Mirdehghan, S.H. and Rafie, A. 2020. Extending the shelf life of pomegranate (Punica granatum L.) by GABA coating application. Journal of Food Measurement and Characterization, 14(5): 2760-2772.
Niazi, Z., Razavi, F., Khademi, O. and Aghdam, M.S. 2021. Exogenous application of hydrogen sulfide and γ-aminobutyric acid alleviates chilling injury and preserves quality of persimmon fruit (Diospyros kaki, cv. Karaj) during cold storage. Scientia Horticulturae, 285: 110198.
Pandi‐Perumal, S.R., Srinivasan, V., Maestroni, G.J.M., Cardinali, D.P., Poeggeler, B. and Hardeland, R. 2006. Melatonin: Nature's most versatile biological signal?. The FEBS Journal, 273(13): 2813-2838.
Ramesh, S.A., Tyerman, S.D., Gilliham, M. and Xu, B. 2017. γ-Aminobutyric acid (GABA) signalling in plants. Cellular and Molecular Life Sciences, 74: 1577-1603.
Rastegar, S., Khankahdani, H.H. and Rahimzadeh, M. 2020. Effect of γ-aminobutyric acid on the antioxidant system and biochemical changes of mango fruit during storage. Journal of Food Measurement and Characterization, 14(2): 778-789.
Sharma, A. and Zheng, B. 2019. Melatonin mediated regulation of drought stress: Physiological and Molecular Aspects. Plants, 8(7): 190.
Sheng, L., Shen, D., Luo, Y., Sun, X., Wang, J., Luo, T., Zeng, Y., Xu, J., Deng, X. and Cheng, Y. 2017. Exogenous γ-aminobutyric acid treatment affects citrate and amino acid accumulation to improve fruit quality and storage performance of postharvest citrus fruit. Food Chemistry, 216:138-145.
Tsai, C.J., Harding, S.A., Tschaplinski, T.J., Lindroth, R.L. and Yuan, Y. 2006. Genome‐wide analysis of the structural genes regulating defense phenylpropanoid metabolism in Populus. New Phytologist, 172(1): 47-62.
Velickova, E., Winkelhausen, E., Kuzmanova, S., Alves, V.D. and Moldão-Martins, M. 2013. Impact of chitosan-beeswax edible coatings on the quality of fresh strawberries (Fragaria ananassa cv Camarosa) under commercial storage conditions. LWT-Food Science and Technology, 52(2): 80-92.
Wang, L., Zhang, H., Jin, P., Guo, X., Li, Y., Fan, C., Wang, J. and Zheng, Y. 2016. Enhancement of storage quality and antioxidant capacity of harvested sweet cherry fruit by immersion with β-aminobutyric acid. Postharvest Biology and Technology, 118: 71-78.
Wang, Y., Luo, Z., Huang, X., Yang, K., Gao, S. and Du, R. 2014. Effect of exogenous γ-aminobutyric acid (GABA) treatment on chilling injury and antioxidant capacity in banana peel. Scientia Horticulturae, 1: 132-137.
Xin, D., Si, J. and Kou, L. 2017. Postharvest exogenous melatonin enhances quality and delays the senescence of cucumber. Acta Horticulturae Sinica, 44(5): 891.
Yang, A., Cao, S., Yang, Z., Cai, Y. and Zheng, Y. 2011. γ-Aminobutyric acid treatment reduces chilling injury and activates the defence response of peach fruit. Food Chemistry, 129(4): 1619-1622.
Zahran, A.A., Hassanein, R.A. and AbdelWahab, A.T. 2015. Effect of chitosan on biochemical composition and antioxidant activity of minimally processed ‘Wonderful’pomegranate arils during cold storage. Journal of Applied Botany and Food Quality, 88: 41-248.
Zarbakhsh, S., Kazemzadeh‐Beneh, H. and Rastegar, S. 2020. Quality preservation of minimally processed pomegranate cv. Jahrom arils based on chitosan and organic acid edible coatings. Journal of Food Safety, 40(2): e12752.