- Abdollahi, F., Erfani-Moghadam, J., Zarei, A., & Rostaminia, M. (2024). Effect of foliar application of silica and calcium nitrate on cracking, quantitative and qualitative characteristics of pomegranate fruit. Iranian Journal of Horticultural Science, 55(1), 123-134. (in Persian with English abstract). https://doi.org/10.22059/ijhs.2023.362286.2116
- Ahmadi, M.A., Daghighi, S., Azarmi-Atajan, F., & Bayat, H. (2023). Effects of foliar application of calcium chloride and potassium sulfate on physical and biochemical properties of jujube fruit (Ziziphus jujuba). Journal of Horticultural Science, 37(3), 769-786. https://doi.org/10.22067/jhs.2023.79367.1204
- Aizza, L.C.B., & Dornelas, M.C. (2011). A genomic approach to study anthocyanin synthesis and flower pigmentation in passionflowers. Journal of Nucleic Acids, 2011(1), 371517. https://doi.org/10.4061/2011/371517
- Álvarez-Fernández, A., Melgar, J. C., Abadía, J., & Abadía, A. (2011). Effects of moderate and severe iron deficiency chlorosis on fruit yield, appearance and composition in pear (Pyrus communis) and peach (Prunus persica (L.) Batsch). Environmental and Experimental Botany, 71(2), 280-286. https://doi.org/10.1016/j.envexpbot.2010.12.012
- Amaliotis, D., Velemis, D., Bladenopoulou, S., & Karapetsas, N. (2002). Leaf nutrient levels of strawberries (cv. Tudla) in relation to crop yield. Acta Horticulturae, 567, 447-450. https://doi.org/10.17660/ActaHortic.2002.567.93
- Amirinejad, M., Akbari, G., Baghizadeh, A., Allahdadi, I., Shahbazi, M., & Naimi, M. (2015). Effects of drought stress and foliar application of zinc and iron on some biochemical parameters of cumin. Journal of Crops Improvement, 17(4), 855-866. https://doi.org/10.22059/jci.2015.55136
- Ankerman, D. (1974). Soil and Plant Analysis, Agricultural Laboratories Inc., New York, USA. pp. 82.
- Asadi, E., Ghehsareh, A.M., Moghadam, E.G., Hodaji, M., & Zabihi, H.R. (2019). Improving of pomegranate aril paleness disorder through application of Fe and Zn elements. Indian Journal of Horticulture, 76(2), 279-288. https://doi.org/10.5958/0974-0112.2019.00043.4
- Badihi, L., Gerami, M., Akbarinodeh, D., Shokrzadeh, M., & Ramezani, M. (2021). Physio-chemical responses of exogenous calcium nanoparticle and putrescine polyamine in saffron (Crocus sativus). Physiology and Molecular Biology of Plants, 27, 119-133. https://doi.org/10.1007/s12298-020-00923-x
- Basiri, S., & Zeraatgar, H. (2023). Effect of calcium chloride, cultivar and maturity on shelf life of fresh jujube fruits. Journal of Agricultural Science and Technology, 25(6), 1375-1370. https://doi.org/10.22034/jast.25.6.1357
- Bedigian, D. (2007). Pomegranates. Ancient roots to modern medicine. Medicinal and aromatic plants—Industrial profiles 43. Economic Botany, 61(1), 107-108. https://doi.org/10.1663/0013-0001(2007)61[107b:PARTMM]2.0.CO;2
- Borochov-Neori, H., Judeinstein, S., Tripler, E., Harari, M., Greenberg, A., Shomer, I., & Holland, D. (2009). Seasonal and cultivar variations in antioxidant and sensory quality of pomegranate (Punica granatum) fruit. Journal of Food Composition and Analysis, 22(3), 189-195.
- Cheour, F.U.L.Q., Willemot, C., Arul, J., Desjardins, Y., Makhlouf, J., Charest, P.M., & Gosselin, A. (1990). Foliar application of calcium chloride delays postharvest ripening of strawberry. Journal of the American Society for Horticultural Science, 115(5), 789-792. https://doi.org/10.1016/j.jfca.2008.10.011
- Davarpanah, S., Akbari, M., Askari, M.A., Babalar, M., & Naddaf, M.E. (2013). Effect of iron foliar application (Fe-EDDHA) on quantitative and qualitative characteristics of pomegranate CV. “ Malas-e-Saveh". World of Sciences Journal, 4, 179-187.
- El- Razek, E.A., Yousef, A.R.M., & Abdel-Hamed, N. (2015). Effect of chelated Fe, Zn and Mn soil application with spraying GA3 and ascorbic acid on growth, yield and fruit quality of Flame Seedless grapevines under calcareous soil conditions. International Journal of ChemTech Research, 8(6), 441-451.
- Faraji, S., & Karami, S. (2024a). Spatial distribution of pomegranate aril paleness and its relationship with some environmental and non-environmental factors using geographic information system (GIS). Iranian Journal of Horticultural Science. (in Persian with English abstract). https://doi.org/10.22059/ijhs.2024.372626.2156
- Faraji, S., & Karami, S. (2024b). The effect of complication of pomegranate aril paleness on the secondary metabolites content and activity of phenylalanine amonialyase (PAL) at different stages of fruit ripening. Iranian Journal of Horticultural Science. (in Persian with English abstract). https://doi.org/10.22059/ijhs.2024.378987.2184
- Gerami, M., Akbari Nodehi, D., Amiri, M., & Darvakh, E. (2024). Effects of calcium nano-paticle on some physiologic and biochemical characteristics of Ocimum basilicum under salinity stress. Iranian Journal of Medicinal and Aromatic Plants Research, 40(2), 415-400. (in Persian with English abstract). https://doi.org/10.22092/ijmapr.2024.131551
- Ghasemi-Soloklui, A.A., Kordrostami, M., & Gharaghani, A. (2023). Environmental and geographical conditions influence color, physical properties, and physiochemical composition of pomegranate fruits. Scientific Reports, 13(1), 15447. https://doi.org/10.1038/s41598-023-42749-z
- Ghayekhloo, S., & Sedaghathoor, S. (2015). Changes in quantitative and qualitative traits of miagava tangerine (Citrus reticulata) as affected by Fe, Zn and Mn micronutrients foliar application. International Journal of Bioscience, 6(1), 218-226. https://dx.doi.org/10.12692/ijb/6.1.218-227
- Gil, M.I., Tomás-Barberán, F.A., Hess-Pierce, B., Holcroft, D.M., & Kader, A.A. (2000). Antioxidant activity of pomegranate juice and its relationship with phenolic composition and processing. Journal of Agricultural and Food Chemistry, 48(10), 4581-4589. https://doi.org/10.1021/jf000404a
- Giusti, M.M., & Wrolstad, R.E. (2001). Anthocyanins. characterization and measurement with UV-visible spectroscopy. Current Protocols in Food Analytical Chemistry, 1, 1-13.
- Gould, K., Davies, K.M., & Winefield, C. (Eds.). (2008). Anthocyanins: Biosynthesis, Functions, and Applications. Springer Science and Business Media, LLC. pp. 8, 174.
- Hamouda, H.A., El-Dahshouri, M.F., Hafez, O.M., & Zahran, N.G. (2015). Response of leconte pear performance, chlorophyll content and active iron to foliar application of different iron sources under the newly reclaimed soil conditions. International Journal of Chemistry Technolgy Research, 8(4), 1446-1453.
- Han, Z. H., Shen, T., Korcak, R.F., & Baligar, V.C. (1998). Iron absorption by iron‐efficient and‐inefficient species of apples. Journal of Plant Nutrition, 21(1), 181-190. https://doi.org/10.1080/01904169809365392
- Hasani, M., Zamani, Z., Savaghebi, G., & Fatahi, R. (2012). Effects of zinc and manganese as foliar spray on pomegranate yield, fruit quality and leaf minerals. Journal of Soil Science and Plant Nutrition, 12(3), 471-480. http://dx.doi.org/10.4067/S0718-95162012005000009
- Hassan, H.S.A., Sarrwy, S.M.A., & Mostafa, E.A.M. (2010). Effect of foliar spraying with liquid organic fertilizer, some micronutrients, and gibberellins on leaf mineral content, fruit set, yield, and fruit quality of “Hollywood” plum trees. Agriculture and Biology Journal of North America, 1(4), 638-643.
- Hepaksoy, S., Aksoy, U., Can, H. Z., & Ui, M.A. (2000). Determination of relationship between fruit cracking and some physiological responses, leaf characteristics and nutritional status of some pomegranate varieties. In P. Melgarejo, J.J. Martínez-Nicolás & J. Martínez-Tomé (Eds.), Production, Processing and Marketing of Pomegranate in the Mediterranean Region: Advances in Research and Technology. pp. 87-92. Options Méditerranéennes Série A. Séminaires Méditerranéens.
- Kavand, M., Arzani, K., Barzegar, M., & Mirlatifi, M. (2020). Pomegranate (Punica granatum) fruit quality attributes in relation to aril browning disorder. Journal of Agricultural Science and Technology, 22(4), 1053-1065. (in Persian with English abstract). https://dorl.net/dor/20.1001.1.16807073.2020.22.4.7.9
- Koushesh Saba, M., Arzani, K., & Barzegar, M. (2016). Impact of postharvest calcium treatments on storage life, biochemical attributes and chilling injury of apricot. Journal of Agricultural Science and Technology, 16, 1355-1366.
- Kulkarni, A.P., & Aradhya, S.M. (2005). Chemical changes and antioxidant activity in pomegranate arils during fruit development. Food Chemistry, 93(2), 319-324. https://doi.org/10.1016/j.foodchem.2004.09.029
- Landi, L., Feliziani, E., & Romanazzi, G. (2014). Expression of defense genes in strawberry fruits treated with different resistance inducers. Journal of Agricultural and Food Chemistry, 62(14), 3047-3056. https://doi.org/10.1021/jf404423x
- Latha, K., Dhanya, K.J., & Swapna, K.R. (2013). Isolation and characterization of polyphenol oxidase from Phyllanthus emblica (Indian gooseberry). International Journal of Science Inventions Today, 2, 311-318.
- Mayer, A.M. (2006). Polyphenol oxidases in plants and fungi: going places? A review. Phytochemistry, 67(21), 2318-2331. https://doi.org/10.1016/j.phytochem.2006.08.006
- Meighani, H., Ghasemnezhad, M., & Bakshi, D. (2014). Evaluation of biochemical composition and enzyme activities in browned arils of pomegranate fruits. International Journal of Horticultural Science and Technology, 1(1), 53-65. https://doi.org/10.22059/ijhst.2014.50518
- Mirdehghan, S.H., & Rahemi, M. (2007). Seasonal changes of mineral nutrients and phenolics in pomegranate (Punica granatum) fruit. Scientia Horticulturae, 111(2), 120-127. https://doi.org/10.1016/j.scienta.2006.10.001
- Mirzapour, M.H., & Khoshgoftarmanesh, A.H. (2013). Effect of soil and foliar application of iron and zinc on quantitative and qualitative yield of pomegranate. Journal of Plant Nutrition, 36(1), 55-66. https://doi.org/10.1080/01904167.2012.733049
- Moradinezhad, F., Hassan Pour, S., & Sayyari Zahan, M.H. (2018). Influence of preharvest spray of calcium chlorideand salicylic acid on physicochemical and quality properties of fresh seedless barberry fruit. Journal of Horticultural Science, 32(1), 61-74. (in Persian with English abstract). https://doi.org/10.22067/jhorts4.v32i1.60331
- Mori, K., Goto-Yamamoto, N., Kitayama, M., & Hashizume, K. (2007). Loss of anthocyanins in red-wine grape under high temperature. Journal of Experimental Botany, 58(8), 1935-1945. https://doi.org/10.1093/jxb/erm055
- Narjesi, V. (2021). Effects of different shade netting treatments on some quantitative and qualitative characteristics of pomegranate fruits cv. Malas-e-Saveh. Journal of Agricultural Science and Sustainable Production, 31(1), 275-293. (in Persian). https://doi.org/10.22034/saps.2021.12815
- Oren-Shamir, M. (2009). Does anthocyanin degradation play a significant role in determining pigment concentration in plants?. Plant Science, 177(4), 310-316. https://doi.org/10.1016/j.plantsci.2009.06.015
- Pojer, E., Mattivi, F., Johnson, D., & Stockley, C.S. (2013). The case for anthocyanin consumption to promote human health: A review. Comprehensive Reviews in Food Science And Food Safety, 12(5), 483-508. https://doi.org/10.1111/1541-4337.12024
- Rachappanavar, V., Padiyal, A., Sharma, J.K., Gupta, S.K., & Negi, N. (2021). Efficient Exploration of Silicon Derived Benefits to Combat Biotic and Abiotic Stresses in Fruit Crops. Preprint from Research Square, 13 Dec 2021. https://doi.org/10.21203/rs.3.rs-1052525/v1
- Rahemi, M. (2011). Post-Harvest Physiology: An Introduction to the Physiology and Handling of Fruits, Vegetables and Ornamental. Shiraz University Press, Shiraz, Iran. pp. 460.
- Rajpal, S., Godara, N.R., & Ahlawat, V.P. (2002). Qualitative attributes affected by foliar spraying of nutrients and growth regulators in ber (Ziziphus mauritiana) cv. Umran. Haryana Journal of Horticultural Sciences, 31(1/2), 23-25.
- Ramezanian, A., Rahemi, M., & Vazifehshenas, M.R. (2009). Effects of foliar application of calcium chloride and urea on quantitative and qualitative characteristics of pomegranate fruits. Scientia Horticulturae, 121(2), 171-175. https://doi.org/10.1016/j.scienta.2009.01.039
- Rezaei, S., Amiri, M., Bahari, A., Razavi, F., Soleimani Aghdam, M., & Beyrami, H. (2022). Effect of foliar iron application on anthocyanin genes expression during of developmental stages in strawberry fruit. Journal of Plant Research (Iranian Journal of Biology), 35(4), 745-762. (in Persian with English abstract).
- Schaart, J.G., Dubos, C., Romero De La Fuente, I., van Houwelingen, A.M., de Vos, R.C., Jonker, H.H., Xu, W., Routaboul, J.M., Lepinies, L., & Bovy, A.G. (2013). Identification and characterization of MYB‐b HLH‐WD 40 regulatory complexes controlling proanthocyanidin biosynthesis in strawberry (F. ragaria× ananassa) fruits. New Phytologist, 197(2), 454-467. https://doi.org/10.1111/nph.12017
- Sedaghat, S., Rahemi, M., & Jafari, M. (2021). Effects of soil and water salinity on aril whitening in pomegranate. Research in Pomology, 6(1), 121-128. (in Persian). https://doi.org/10.30466/rip.2021.121091
- Shete, M.B., & Waskar, D.P. (2005). Internal breakdown of pomegranate (Punica granatum) fruits-a review. Journal of Maharashtra Agricultural Universities, 30, 59-61.
- Shivashankara, K.S., Subhas, C.M., Laxman, R.H., Vijayalaxmi, G.P., & Bujjibabu, C.S. (2004). Physiological and biochemical changes associated with aril browning of pomegranate (Punica granatum Ganesh). Journal of Plant Biology, 31, 149-152.
- Siegelman, H.W., & Hendricks, S.B. (1958). Photocontrol of anthocyanin synthesis in apple skin. Plant Physiology, 33(3), 185. https://doi.org/10.1104/pp.33.3.185
- Song, C.Z., Liu, M.Y., Meng, J.F., Chi, M., Xi, Z.M., & Zhang, Z.W. (2015). Promoting effect of foliage sprayed zinc sulfate on accumulation of sugar and phenolics in berries of Vitis vinifera Merlot growing on zinc deficient soil. Molecules, 20(2), 2536-2554. https://doi.org/10.3390/molecules20022536
- Tabatabaei, J. (2013). Principles of Plant Mineral Nutrition. Tabriz University Press, Tabriz, Iran. pp. 562. (In Persian)
- Taiz, L., & Zeiger, E. (2002). Mineral Nutrition. p. 67-86. Plant Physiology. 3rd Ed. Sinauer Associates Inc. Publishers.
- Tomás‐Barberán, F.A., & Espín, J.C. (2001). Phenolic compounds and related enzymes as determinants of quality in fruits and vegetables. Journal of the Science of Food and Agriculture, 81(9), 853-876. https://doi.org/10.1002/jsfa.885
- Zabihi, H.R., & Rezaeian, S. (2019). The effect of iron and zinc sulfate foliar application on the reduction of seed whitening of Shisheh-Cap cultivar for pomegranate fruit. Journal of Horticultural Science, 33(2), 323-333. (in Persian). https://doi.org/10.22067/jhorts4.v0i0.76011
- Zaouay, F., Mena, P., Garcia-Viguera, C., & Mars, M. (2012). Antioxidant activity and physico-chemical properties of Tunisian grown pomegranate (Punica granatum) cultivars. Industrial Crops and Products, 40, 81-89. https://doi.org/10.1016/j.indcrop.2012.02.045
- Zareh, M., Adhami, E., Owliaie, H., & Ramezanian, A. (2012). Effects of foliar applications of iron and zinc on yield, fruit quantitative and qualitative characteristics and mineral composition of pomegranate (Punica granatum) leaf. Journal of Horticultural Science and Technology, 13, 189-198. (in Persian)
- Zhao, Z., Zhu, L., Yu, S., & Saska, M. (2011). Partial purification and characterization of polyphenol oxidase from sugarcane (Saccharum officinarum). Zuckerindustrie-Sugar Industry, 136(5), 296.
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