Yıl: 2021 Cilt: 9 Sayı: 8 Sayfa Aralığı: 1322 - 1328 Metin Dili: İngilizce DOI: 10.24925/turjaf.v9i8.1322-1328.2672 İndeks Tarihi: 19-10-2021

Determination of Some Agronomic and Fruit Quality Characteristics of Some Watermelon Accessions from Turkish Watermelon Germplasm

Öz:
This study has been conducted to determine the fruit quality parameters such as sugar andcarotenoid content as well as plant and fruit characteristics of 11 local watermelon genotypes fromwatermelon genetic resources collection of Cukurova University, Department of Horticulture. Firstand 50% male and female flowering period, main stem length, main stem diameter, number of nodeson main stem, total yield, fruit weight, fruit length, fruit diameter, fruit rind thickness, total solublesolids (TSS), sugar and carotenoid contents were examined. Although there is no significantdifference for main stem diameter and number of nodes on the main stem, significant differenceswere obtained for total yield, sugar and carotenoid composition of the genotypes. Carotenoid andsugar analysis were performed with a high-performance liquid chromatographic method coupledwith diode-array detector (HPLC-DAD) and HPLC coupled with refractive index detector (RID),respectively. In all studied genotypes, cis-13-lycopene and β-carotene were the most abundantcompounds. As expected for watermelon genotypes, the main sugar found in all studied genotypeswas fructose. According to PCA analyses, genotypes were characterized by physical and chemicalcomposition. Overall evaluation of results revealed that Kar 147 had better potential withcarotenoid, sugar contents and fruit characteristics.
Anahtar Kelime:

Belge Türü: Makale Makale Türü: Araştırma Makalesi Erişim Türü: Erişime Açık
  • Erdem Y, Yüksel AN, Orta AH. 2001. The Effects of Defficit Irrigation on Watermelon Yield, Water Use and Quality Characteristics. Pakistan Jourrnal of Biological Sciences, 4(7): 785-789.
  • FAO, 2019. Year Production, Statistics, FAOSTAT, Watermelon Production, http://faostat.fao.org/default.aspx
  • Gichimu BM, Owuor BO, Dida MM. 2008. Agronomic Performance of Three Most Popular Commercial Watermelon Cultivars in Kenya as Compared to One Newly Introduced Cultivar and Local Landrace Grown on Dystrict Nitisols under Sub-Humid Tropical Conditions. Journal of Agricultural and Biological Science, 3(5/6): 65-71.
  • Gusmuni JR, Schultheis J, Wehner T. 2004. Rind Thickness of Watermelon Cultivars for Use in Pickle Production. HortTechnology, 14(4): 540-545.
  • Ilahy R, Tlili I, Siddiqui MW, Hdider C, Lenucci MS. 2019. Inside and Beyond Color: Comparative Overview of Functional Quality of Tomato and Watermelon Fruits. Front. Plant Sci., 10: 769. doi: 10.3389/fpls.2019.00769
  • Karipçin MZ. 2009. Yerli ve Yabani Karpuz Genotiplerinde Kuraklığa Toleransın Belirlenmesi. Doktora Tezi, Çukurova Üniversitesi Fen Bilimleri Enstitüsü, Adana, Turkey.
  • Kelebek H, Selli S, Kadiroglu P, Kola O, Kesen S, Ucar B, Cetiner B. 2017. Bioactive Compounds and Antioxidant Potential in Tomato Pastes as Affected by Hot and Cold Break Process. Food Chemistry, 220: 31-41.
  • Kim CH, Park MK, Kim SK, Cho YH. 2014. Antioxidant Capacity and Anti-inflammatory Activity of Lycopene in Watermelon. International Journal of Food Science and Technology, 49(9): 2083-2091.
  • Krasteva L. 2000. Watermelon Genetic Resources in Bulgaria. Acta Horticulturae, 510: 253-256.
  • Kumar CS, Mythily R, Chandraju S. 2012. Studies on Sugars Extracted from Watermelon (Citrullus lanatus) Rind, A Remedy for Related Waste and its Management. International Journal of Chemical and Analytical Science, 3(8): 1527- 1529.
  • Li H, Deng Z, Liu R, Young, JC, Zhu H, Loewen S, Tsao R. 2011. Characterization of Phytochemicals and Antioxidant Activities of a Purple Tomato (Solanum lycopersicum L.). Journal of Agricultural and Food Chemistry, 59: 11803- 11811.
  • Liu C, Zhang H, Dai Z, Liu X, Liu Y, Deng X, Chen F, Xu J. 2012. Volatile Chemical and Carotenoid Profiles in Watermelons [Citrullus vulgaris (Thunb.) Schrad (Cucurbitaceae)] with Different Flesh Colors. Food Science and Biotechnology, 21(2): 531-541.
  • Maggs-Kolling GL, Christiansen JL. 2003. Variability in Namibian Landraces of Watermelon (Citrullus lanatus L.). Euphytica, 132(3): 251-258.
  • Perkins-Veazie P, Collins JK, Davis AR, Roberts W. 2006. Carotenoid Content of 50 Watermelon Cultivars. Journal of Agricultural and Food Chemistry, 54: 2593-2597.
  • Sari N, Solmaz I, Unlu H, Yetisir H. 2007. Watermelon Genetic Resources in Turkey and Their Characteristics. Acta Horticulturae, 731: 433-438.
  • Schulteis JR, Thompson WB, Jester WB, Hassell RL. 2007. Mini Triploid Watermelon Cultigen Evaluations for Yield and Quality and Marketing in the United States. In: Conchie R.Mc, Rogers G (editors). Proc. IIIrd ISHS on Cucurbits, 731: 171-182.
  • Solmaz I, Sarı N. 2009. Characterization of Watermelon (Citrullus lanatus) Accessions Collected from Turkey for Morphological Traits. Genetic Resources and Crop Evolution, 56(2): 173-188.
  • Solmaz I, Sari N, Aka-Kacar Y, Yalcin-Mendi NY. 2010. The Genetic Characterization of Turkish Watermelon Accessions Using RAPD Markers. Genetic Resources and Crop Evolution, 57: 763-771.
  • Solmaz I, Sarı N, Tarım G, Acembekiroğlu M, Pehlivan M. 2012. Determining the Agronomic Characteristics of Turkish Watermelon Genotypes for Developing Breeding Lines. Cucurbitaceae 2012, ss. 368-373.
  • Tanksley SD, Mccouch SR. 1997. Seed Banks and Molecular Maps: Unlocking Genetic Potential from the Wild. Science, 277: 1063-1066.
  • Yoo KS, Bang H, Lee EJ, Crosby K, Patil BS. 2012. Variation of Carotenoid, Sugar and Ascorbic Acid Concentrations in Watermelon Genotypes and Genetic Analyses. Horticulture Environment and Biotechnology, 53(6): 552-560.
  • Yuan-feng Z, Xuan-min D, Zhang X. 2013. A New Miniwatermelon F1 Hybrid- ‘Qiongli’. Tropical Crops Genetic Resources Institute of Chinese Academy of Tropical Agricultural Sciences, Key Laboratory of Crop Gene Resources and Germplasm Enhancement in Southern China, Ministry of Agriculture. 24: 76-78.
  • Zhao W, Lv P, Gu H. 2013. Studies on Carotenoids in Watermelon Flesh. Agricultural Science, 4(7A): 13-20.
APA Atlı E, SOLMAZ I, SARI N, Kelebek H (2021). Determination of Some Agronomic and Fruit Quality Characteristics of Some Watermelon Accessions from Turkish Watermelon Germplasm. , 1322 - 1328. 10.24925/turjaf.v9i8.1322-1328.2672
Chicago Atlı Ercüment,SOLMAZ Ilknur,SARI NEBAHAT,Kelebek Hasim Determination of Some Agronomic and Fruit Quality Characteristics of Some Watermelon Accessions from Turkish Watermelon Germplasm. (2021): 1322 - 1328. 10.24925/turjaf.v9i8.1322-1328.2672
MLA Atlı Ercüment,SOLMAZ Ilknur,SARI NEBAHAT,Kelebek Hasim Determination of Some Agronomic and Fruit Quality Characteristics of Some Watermelon Accessions from Turkish Watermelon Germplasm. , 2021, ss.1322 - 1328. 10.24925/turjaf.v9i8.1322-1328.2672
AMA Atlı E,SOLMAZ I,SARI N,Kelebek H Determination of Some Agronomic and Fruit Quality Characteristics of Some Watermelon Accessions from Turkish Watermelon Germplasm. . 2021; 1322 - 1328. 10.24925/turjaf.v9i8.1322-1328.2672
Vancouver Atlı E,SOLMAZ I,SARI N,Kelebek H Determination of Some Agronomic and Fruit Quality Characteristics of Some Watermelon Accessions from Turkish Watermelon Germplasm. . 2021; 1322 - 1328. 10.24925/turjaf.v9i8.1322-1328.2672
IEEE Atlı E,SOLMAZ I,SARI N,Kelebek H "Determination of Some Agronomic and Fruit Quality Characteristics of Some Watermelon Accessions from Turkish Watermelon Germplasm." , ss.1322 - 1328, 2021. 10.24925/turjaf.v9i8.1322-1328.2672
ISNAD Atlı, Ercüment vd. "Determination of Some Agronomic and Fruit Quality Characteristics of Some Watermelon Accessions from Turkish Watermelon Germplasm". (2021), 1322-1328. https://doi.org/10.24925/turjaf.v9i8.1322-1328.2672
APA Atlı E, SOLMAZ I, SARI N, Kelebek H (2021). Determination of Some Agronomic and Fruit Quality Characteristics of Some Watermelon Accessions from Turkish Watermelon Germplasm. Türk Tarım - Gıda Bilim ve Teknoloji dergisi, 9(8), 1322 - 1328. 10.24925/turjaf.v9i8.1322-1328.2672
Chicago Atlı Ercüment,SOLMAZ Ilknur,SARI NEBAHAT,Kelebek Hasim Determination of Some Agronomic and Fruit Quality Characteristics of Some Watermelon Accessions from Turkish Watermelon Germplasm. Türk Tarım - Gıda Bilim ve Teknoloji dergisi 9, no.8 (2021): 1322 - 1328. 10.24925/turjaf.v9i8.1322-1328.2672
MLA Atlı Ercüment,SOLMAZ Ilknur,SARI NEBAHAT,Kelebek Hasim Determination of Some Agronomic and Fruit Quality Characteristics of Some Watermelon Accessions from Turkish Watermelon Germplasm. Türk Tarım - Gıda Bilim ve Teknoloji dergisi, vol.9, no.8, 2021, ss.1322 - 1328. 10.24925/turjaf.v9i8.1322-1328.2672
AMA Atlı E,SOLMAZ I,SARI N,Kelebek H Determination of Some Agronomic and Fruit Quality Characteristics of Some Watermelon Accessions from Turkish Watermelon Germplasm. Türk Tarım - Gıda Bilim ve Teknoloji dergisi. 2021; 9(8): 1322 - 1328. 10.24925/turjaf.v9i8.1322-1328.2672
Vancouver Atlı E,SOLMAZ I,SARI N,Kelebek H Determination of Some Agronomic and Fruit Quality Characteristics of Some Watermelon Accessions from Turkish Watermelon Germplasm. Türk Tarım - Gıda Bilim ve Teknoloji dergisi. 2021; 9(8): 1322 - 1328. 10.24925/turjaf.v9i8.1322-1328.2672
IEEE Atlı E,SOLMAZ I,SARI N,Kelebek H "Determination of Some Agronomic and Fruit Quality Characteristics of Some Watermelon Accessions from Turkish Watermelon Germplasm." Türk Tarım - Gıda Bilim ve Teknoloji dergisi, 9, ss.1322 - 1328, 2021. 10.24925/turjaf.v9i8.1322-1328.2672
ISNAD Atlı, Ercüment vd. "Determination of Some Agronomic and Fruit Quality Characteristics of Some Watermelon Accessions from Turkish Watermelon Germplasm". Türk Tarım - Gıda Bilim ve Teknoloji dergisi 9/8 (2021), 1322-1328. https://doi.org/10.24925/turjaf.v9i8.1322-1328.2672