1. Alan, Ö., Duzyaman, E., Sen, F. (2017). How growing cycles affect plant growth and yield of grafted watermelon combinations. Fresenius Environmental Bulletin, 26 (6): 4214-4221. https://scholar.google.com.tr/scholar?hl=tr&as_sdt=0%2C5&q=HOW+GROWING+CYCLES+AFFECT+PLANT+GROWTH+AND+YIELD+OF+GRAFTED+WATERMELON+COMBINATIONS&btnG=
2. Alan, Ö., Özdemir, N., Günen, Y. (2007). Effect of grafting on watermelon plant growth, yield and quality. Journal of Agronomy, 6(2):362-365.https://scholar.google.com.tr/scholar?hl=tr&as_sdt=0%2C5&q=Alan%2C+%C3%96.%2C+%C3%96zdemir%2C+N.%2C+G%C3%BCnen%2C+Y.+%282007%29.+Effect+of+grafting+on+watermelon+plant+growth%2C+yield+and+quality.+Journal+of+Agronomy%2C+6%282%29%3A362-365.&btnG=
3. Alexopoulos, A.A., Kondylis, A., Passam, H.C. (2007). Fruit yield and quality of watermelon in relation to grafting. Journal of Food Agriculture and Environment, 5(1):178-179.https://scholar.google.com.tr/scholar?hl=tr&as_sdt=0%2C5&q=Alexopoulos%2C+A.A.%2C+Kondylis%2C+A.%2C+Passam%2C+H.C.+%282007%29.+Fruit+yield+and+quality+of+watermelon+in+relation+to+grafting.+Journal+of+Food+Agriculture+and+Environment%2C+5%281%29%3A178-179.&btnG=
4. Besri, M. (2002). Alternatives to methyl bromide for tomato production in the Mediterranean area. Proceedings of the International Conference on Alternatives to Methyl Bromide, Spain, 5-8 March, 2002, 177-181. https://scholar.google.com.tr/scholar?q=related:YUgAFERBOWgJ:scholar.google.com/&scioq=Besri+M+(2002).+Alternatives+to+methyl+bromide+for+tomato+production+in+the+Mediterranean+area.+Proceedings+of+the+International+Conference+on+Alternatives+to+Methyl+Bromide,+Sevilla,+Spain,+5-8+March,+2002,+177-181.+&hl=tr&as_sdt=0,5
5. Besri, M. (2008). Cucurbits grafting as an alternative to methyl bromide for cucurbits production in Morocco.https://scholar.google.com.tr/scholar?hl=tr&as_sdt=0%2C5&q=Besri+M+%282008%29.+Cucurbits+grafting+as+an+alternative+to+methyl+bromide+for+cucurbits+production+in+Morocco.&btnG=