- Almaliotis, D., Therios, I. & Karatassiou, M. (1996, September). Effects of nitrogen fertilization on growth, leaf nutrient concentration and photosynthesis in three peach cultivars. In: II International Symposium on Irrigation of Horticultural Crops 449 (pp. 529-534).
- Aloni, B., Karni, L., Deventurero, G., Levin, Z., Cohen, R., Katzir, N. & Joel, D. M. (2008). Physiological and biochemical changes at the rootstock-scion interface in graft combinations between Cucurbita rootstocks and a melon scion. The Journal of Horticultural Science and Biotechnology, 83(6), 777-783.
- Ballesta, M. C. M., López, C. A., Muries, B., Cadenas, C. M. & Carvajal, M. (2010). Physiological aspects of rootstock–scion interactions: a Review. Scientia Horticulturae, 127, 112-118.
- Buysse, J. A. N. & Merckx, R. (1993). An improved colorimetric method to quantify sugar content of plant tissue. Journal of Experimental Botany, 44(10), 1627-1629.
- Colla, G., Rouphael, Y., Cardarelli, M., Salerno, A. & Rea, E. (2010a). The effectiveness of grafting to improve alkalinity tolerance in watermelon. Environmental and Experimental Botany, 68(3), 283-291.
- Colla, G., Rouphael, Y., Rea, E. & Cardarelli, M. (2012). Grafting cucumber plants enhance tolerance to sodium chloride and sulfate salinization. Scientia Horticulturae, 135, 177-185.
- Colla, G., Suárez, C. M. C., Cardarelli, M. & Rouphael, Y. (2010b). Improving nitrogen use efficiency in melon by grafting. HortScience, 45(4), 559-565.
- Davis, A. R., Perkins-Veazie, P., Hassell, R., Levi, A., King, S. R. & Zhang, X. (2008). Grafting effects on vegetable quality. HortScience, 43(6), 1670-1672.
- Han, J. S., Park, S., Shigaki, T., Hirschi, K. D. & Kim, C. K. (2009). Improved watermelon quality using bottle gourd rootstock expressing a Ca2+/H+ antiporter. Molecular breeding, 24(3), 201-211.
- Hasandokht, M. R. & Nosrati, S. Z. (2010). Effect of transplant age and fruit pruning on earliness and total yield of greenhouse cucumber (Cucumis sativus L. cv. Sultan). Journal of Plant Ecophysiology, 2(1), 21-25.
- Hoyos Echebarría, P. (2000, March). Influence of different rootstocks on the yield and quality of greenhouses grown cucumbers. In: V International Symposium on Protected Cultivation in Mild Winter Climates: Current Trends for Suistainable Technologies, 559 (pp. 139-144).
- Hu, C., Zhu, Y., Yang, L., Chen, S. & Huang, Y. (2005). Comparison of photosynthetic characteristics of grafted and ownroot seedlings of cucumber under low temperature circumstances. Acta Botanica Boreali-Occidentalia Sinica, 26(2), 247-253.
- Huang, Y., Li, J., Hua, B., Liu, Z., Fan, M. & Bie, Z. (2013). Grafting onto different rootstocks as a means to improve watermelon tolerance to low potassium stress. Scientia Horticulturae, 149, 80-85.
- Huang, Y., Tang, R., Cao, Q. & Bie, Z. (2009). Improving the fruit yield and quality of cucumber by grafting onto the salt tolerant rootstock under NaCl stress. Scientia Horticulturae, 122(1), 26-31.
- Humphries, E. C. (1956). Mineral components and ash analysis. In Moderne Methoden der Pflanzenanalyse/Modern Methods of Plant Analysis (pp. 468-502). Springer Berlin Heidelberg
- Khelil, A., Menu, T. & Ricard, B. (2007). Adaptive response to salt involving carbohydrate metabolism in leaves of a salt-sensitive tomato cultivar. Plant physiology and Biochemistry, 45(8), 551-559.
- Lee, J. M. (1994). Cultivation of grafted vegetables I. Current status, grafting methods, and benefits. HortScience, 29(4), 235-239.
- Lee, J. M. & Oda, M. (2010). Grafting of herbaceous vegetable and ornamental crops. Horticultural Reviews, Volume 28, 61-124.
- Lee, J. M., Kubota, C., Tsao, S. J., Bie, Z., Echevarria, P. H., Morra, L. & Oda, M. (2010). Current status of vegetable grafting: Diffusion, grafting techniques, automation. Scientia Horticulturae, 127(2), 93-105.
- Liu, Y. F., Qi, H. Y., Bai, C. M., Qi, M. F., Xu, C. Q., Hao, J. H., ... & Li, T. L. (2011). Grafting helps improve photosynthesis and carbohydrate metabolism in leaves of muskmelon. International journal of biological sciences, 7(8), 1161
- Marukawa, S. & Takatsu, I. (1969). Studies on the selection of Cucurbita spp. as cucumber stock. 1. Compatibility, ability to tolerate low-temperature conditions and yield of black prickly cucumber. Bulletin of the Ibaraki Agricultural Experiment Station, 3, 11-18.
- Miguel, A., Maroto, J. V., San Bautista, A., Baixauli, C., Cebolla, V., Pascual, B., ... & Guardiola, J. L. (2004). The grafting of triploid watermelon is an advantageous alternative to soil fumigation by methyl bromide for control of Fusarium wilt. Scientia Horticulturae, 103(1), 9-17.
- Mohsenian Sisakht, Y. & Roosta, H. R. (2014). Effect of eggplant, field tomato, datura, orange nightshade and Iranian tobacco rootstocks on iron and chlorophyll concentrations in grafted tomato. Journal of Science & Technology, Greenhouse Culture, Vol. 5, No. 17, Spring 2014. (in Farsi)
- Mohsenian, Y. & Roosta, H. R. (2015). Effects of grafting on alkali stress in tomato plants: datura rootstock improve alkalinity tolerance of tomato plants. Journal of Plant Nutrition, 38(1), 51-72.
- Mohsenian, Y., Roosta, H. R., Karimi, H. R. & Esmaeilizade, M. (2012). Investigation of the ameliorating effects of eggplant, datura, orange nightshade, local Iranian tobacco, and field tomato as rootstocks on alkali stress in tomato plants. Photosynthetica, 50(3), 411-421.
- Olsen, S. R. & Sommers, L. E. (1982). Phosphorus. P 403-430, In: Page, A.L. (Eds.), Methods of Soil Analysis. Part 2. 2nd ed. Argon. Mongr. 9. ASA and SSSA, Madison, WI.
- Pulgar, G., Villora, G., Moreno, D. A. & Romero, L. (2000). Improving the mineral nutrition in grafted watermelon plants: nitrogen metabolism. Biologia Plantarum, 43(4), 607-609.
- Roosta, H. R. & Karimi, H. R. (2012). Effects of alkali-stress on ungrafted and grafted cucumber plants: using two types of local squash as rootstock. Journal of plant nutrition, 35(12), 1843-1852.
- Rouphael, Y., Cardarelli, M., Rea, E. & Colla, G. (2008). Grafting of cucumber as a means to minimize copper toxicity. Environmental and Experimental Botany, 63(1), 49-58..
- Rouphael, Y., Cardarelli, M., Rea, E. & Colla, G. (2012). Improving melon and cucumber photosynthetic activity, mineral composition, and growth performance under salinity stress by grafting onto Cucurbita hybrid rootstocks. Photosynthetica, 50(2), 180-188
- Ruiz, J. M. & Romero, L. (1999). Nitrogen efficiency and metabolism in grafted melon plants. Scientia Horticulturae, 81(2), 113-123.
- Ruiz, J. M., Belakbir, A., López-Cantarero, I. & Romero, L. (1997). Leaf-macronutrient content and yield in grafted melon plants. A model to evaluate the influence of rootstock genotype. Scientia Horticulturae, 71(3), 227-234.
- Sainju, U. M., Dris, R. & Singh, B. (2003). Mineral nutrition of tomato. Food, Agriculture & Environment, 1(2), 176-183.
- Salehi, R., Kashi, A., Lee, J. M., Babalar, M., Delshad, M., Lee, S. G. & Huh, Y. C. (2010). Leaf gas exchanges and mineral ion composition in xylem sap of Iranian melon affected by rootstocks and training methods. HortScience, 45(5), 766-770.
- Salehi-Mohammadi, R., Kashi, A., Lee, S. G., Huh, Y. C., Lee, J. M., Babalar, M. & Delshad, M. (2009). Assessing survival and growth performance of Iranian melon to grafting onto Cucurbita rootstocks. Korean J. Hortic. Sci. Technol, 27(1), 1-6.
- Samuels, A. L., Glass, A. D. M., Ehret, D. L. & Menzies, J. G. (1993). The effects of silicon supplementation on cucumber fruit: changes in surface characteristics. Annals of Botany, 72(5), 433-440.
- Sugiyama, M., Sakata, Y. & Ohara, T. (2006, August). The History of Melon and Cucumber Grafting in Japan. In XXVII International Horticultural Congress-IHC2006: International Symposium on Sustainability through Integrated and Organic, 767 (pp. 217-228).
- Tucker, M. (2004). Primary nutrients and plant growth. Essential plant nutrients, 126.
- Waling, I., Vark, W. V., Houba, G. & Van der lee, J. J. (1989). Soil and Plant Analysis, a series of syllabi. Part 7.Plant Anal Proced. Wageningen Agriculture University. Netherland.
- Wang, L. P., Guo, S. R., Sun, J., Tian, J., Yang, Y. J. & He, L. Z. (2012). Analysis of photosynthetic characteristics and key enzyme genes expression of carbon assimilation in cucumber by grafting onto salt-tolerant rootstock under iso-osmotic Ca (NO_3) _2 or NaCl stress. Journal of Nanjing Agricultural University, 3, 007.
- Xing, W. W., Li, L., Gao, P., Li, H., Shao, Q. S., Shu, S., ... & Guo, S. R. (2015). Effects of grafting with pumpkin rootstock on carbohydrate metabolism in cucumber seedlings under Ca (NO 3) 2 stress. Plant Physiology and Biochemistry, 87, 124-132.
- Yamamoto, Y., Hayashi, M., Kanamaru, T., Watanabe, T., Mametsuka, S. & Tanaka, Y. (1989). Studies on bloom on the surface of cucumber fruits, 2: relation between the degree of bloom occurrence and contents of mineral elements. Bulletin of the Fukuoka Agricultural Research Center, 9, 1-6.
- Yamasaki, A., Yamashita, M. & Furuya, S. (1994). Mineral concentrations and cytokinin activity in the xylem exudate of grafted watermelons [Citrullus lanatus] as affected by rootstocks and crop load. Journal of the Japanese Society for Horticultural Science (Japan).
- Yetisir, H., Özdemir, A. E., Aras, V., Candir, E. & Aslan, Ö. (2013). Rootstocks effect on plant nutrition concentration in different organ of grafted watermelon. Agricultural Sciences, 4(5), 230.
- Zhou, Y., Huang, L., Zhang, Y., Shi, K., Yu, J. & Nogués, S. (2007). Chill-induced decrease in capacity of RuBP carboxylation and associated H2O2 accumulation in cucumber leaves are alleviated by grafting onto figleaf gourd. Annals of Botany, 100(4), 839-848.
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