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Bazı Kiraz Çeşitlerinin Fitokimyasal Özellikleri ve Bu Özellikler Arasındaki İlişkiler

Year 2021, Volume: 8 Issue: 4, 928 - 933, 24.10.2021
https://doi.org/10.30910/turkjans.870796

Abstract

Bu çalışma, bazı kiraz çeşitlerini (0900 Ziraat, Regine, Kordia, Sweetheart, Starks Gold ve Early Burlat), Eskişehir ekolojik koşullarında, fitokimyasal özellikler bakımından karakterize etmek amacı ile yürütülmüştür. Araştırma sonucunda, C vitamini, toplam fenol, antioksidan aktivite, suda çözünebilir kuru madde (SÇKM) ve pH özellikleri bakımından, kiraz çeşitleri arasında önemli varyasyonlar olduğu ve değerlerinin sırası ile 2.53 (0900 Ziraat) – 4.43 (Kordia) mg 100 mL-, 186.10 (0900 Ziraat) – 260.63 (Sweetheart) mg L-, %37.56 (0900 Ziraat) – %57.13 (Sweetheart), %13.17 (Starksgold) – %19.26 (Regina) ve 3.52 (Kordia) ile 4.00 (Early Burlat) aralıklarında değişim gösterdiği tespit edilmiştir. Korelasyon analizleri sonucunda, pH’nın düşmesi ile C vitamini, toplam fenol ve antioksidan aktivitenin arttığı ve toplam fenol ile antioksidan aktivite arasında yüksek düzeyde pozitif ilişkinin (r = 0.92***) olduğu sonucuna varılmıştır.

References

  • Acero, N., Gradillas, A., Beltran, M., Garcia, A. Ve Mingarro, D.M. 2019. Comparison of Phenolic Compounds Profile and Antioxidant Properties of Different Sweet Cherry (Prunus avium L.) Varieties. Food chemistry, 2019, 279: 260-271.
  • Akkurt, E., Mertoğlu, K., & Evrenosoğlu, Y. 2020. Vista Bella Elma Çeşidinde Farklı Tozlayıcı Çeşitlerin Meyve Tutumu ve Bazı Meyve Kalite Özellikleri Üzerine Etkisi. ANADOLU Ege Tarımsal Araştırma Enstitüsü Dergisi, 30(2), 284-294.
  • Cevallos-Casals, B.A., Byrne, D., Okie, W.R. ve Cisneros-Zevallos, L. 2006. Selecting New Peach and Plum Genotypes Rich in Phenolic Compounds and Enhanced Functional Properties. Food chemistry, 2006, 96(2): 273-280.
  • Çavuşoğlu, Ş., Tekin, O., Bahar, A., Ercişli, S., Özrenk, K., & Durmaz, N. 2018. Effects of Post-Harvest UV-C and Hot Water Treatments on Quality Attributes of ‘0900 Ziraat’Cherries throughout the Cold Storage in Modified Atmosphere Packages. Türk Tarım ve Doğa Bilimleri Dergisi, 5(4), 634-642.
  • Demir, G. ve Aktaş, N. 2018. A Research on Functional Food Knowledge, Preference and Consumption of University Students. Üniversite Öğrencilerinin Fonksiyonel Besin Bilgi, Tercih ve Tüketimleri Üzerine Bir Araştırma. Journal of Human Sciences, 2018, 15(4): 2387-2397.
  • Eroğul, D. (2016). İzmir İlinde yetiştirilen bazı önemli kiraz çeşitlerinin fiziksel ve kimyasal özelliklerinin belirlenmesi. Yüzüncü Yıl Üniversitesi Tarım Bilimleri Dergisi, 26(4), 579-585.
  • Eskimez, İ., Polat, M., & Mertoğlu, K. (2020). M9 Anacı Üzerine Aşılı Arapkızı, Jonagold ve Fuji Kiku Elma (Malus domestica Borkh.) Çeşitlerinin Isparta Ekolojik Koşullarında Fenolojik ve Fiziko-Kimyasal Özellikleri. Uluslararası Tarım ve Yaban Hayatı Bilimleri Dergisi, 6(2), 152-159.
  • Florkowski, W. J., & Lysiak, G. (2015). Quality attribute-price relationship: modernization of the sweet cherry sector in Poland. Problems of World Agriculture/Problemy Rolnictwa Światowego, 15(1827-2016-147713), 41-55.
  • Giampieri, F., Forbes-Hernveez, T.Y., Gasparrini, M., Alvarez-Suarez, J.M., Afrin, S., Bompadre, S., ... ve Battino, M. 2015. Strawberry as a Health Promoter: An Evidence Based Review. Food & Function, 2015, 6(5): 1386-1398.
  • Gonçalves, A. C., Campos, G., Alves, G., Garcia-Viguera, C., Moreno, D. A., & Silva, L. R. (2020). Physical and phytochemical composition of 23 Portuguese sweet cherries as conditioned by variety (or genotype). Food Chemistry, 335, 127637.
  • Göksel, Z., & Aksoy, U. (2014). Sofralık bazı kiraz çeşitlerinin fizikokimyasal özellikleri. Türk Tarım ve Doğa Bilimleri Dergisi, 1(Özel Sayı-2), 1856-1862.
  • Gundogdu, M., & Bilge, U. (2012). Determination of organics, phenolics, sugars and vitamin C contents of some cherry cultivars (Prunus avium). International Journal of Agriculture and Biology, 14(4).
  • Gundogdu, M., Canan, I. ve Okatan, V. 2018. Bioactive Contents and Some Horticultural Characteristics of Local Apple Genotypes from Turkey. JAPS: Journal of Animal & Plant Sciences, 2018, 28(3): 865-874.
  • Hayaloglu, A. A., & Demir, N. (2015). Physicochemical characteristics, antioxidant activity, organic acid and sugar contents of 12 sweet cherry (Prunus avium L.) cultivars grown in Turkey. Journal of Food Science, 80(3), C564-C570.
  • Karaat, F. E., Gündüz, K., Saraçoğlu, O., & Yıldırım, H. (2019). Pomological and phytochemical evaluation of different cherry species: mahaleb (Prunus mahaleb L.), wild sweet cherry (Prunus avium L.) and wild sour cherry (Prunus cerasus L.), sweet and sour cherry cultivars. Acta Scientiarum Polonorum. Hortorum Cultus, 18(4).
  • Karaçalı, I. (2012). Bahçe Ürünlerinin Muhafazası ve Pazarlanması. Hasat Öncesi Dönemde Gelişmeyi Etkileyen Faktörler. Ege Üniv. Yay. No: 494. Bornova, İzmir.
  • Mertoglu, K., Eskimez, I., Polat, M., Okatan, V, Korkmaz, N., Gulbandılar, A., Bulduk, I. (2021). Determination of Anti-Microbial and Phyto-Chemical Characteristics of Some Blackberry Cultivars. Fresenius Enviromental Bulletin, 30(02A), 1789-1795.
  • Mertoğlu, K., Gülbandılar, A., & Bulduk, İ. (2020). Growing conditions effect on fruit phytochemical composition and anti-microbial activity of plum (cv. Black Diamond). International Journal of Agriculture Forestry and Life Sciences, 4(1), 56-61.
  • Mertoğlu, K., ve Evrenosoğlu, Y. (2019). Bazı Elma ve Armut Çeşitlerinde Fitokimyasal Özelliklerin Belirlenmesi. Ziraat Fakültesi Dergisi, 14(1), 11-20.
  • Meteoroloji 3. Bölge Müdürlüğü – Eskişehir., 2015. Eskişehir merkez meteorolojik verileri (Erişim tarihi: Nisan, 2020). Okatan, V. 2020. Antioxidant properties and phenolic profile of the most widely appreciated cultivated berry species: A comparative study. Folia Hort., 32(1): 79-85.
  • Ouaabou, R., Ennahli, S., Nabil, B., Hssaini, L., Hanine, H., Hernández, F., ... & Mahrouz, M. (2020). Multivariate Cherry Quality Assessment Using Morphological, Biochemical and Volatile Compound Traits. International Journal of Fruit Science, 1-20.
  • Polat, M., K. Mertoglu, I. Eskimez and V. Okatan. 2020a. Effects of the fruiting period and growing seasons on market quality in goji berry (Lycium barbarum L.). Folia Hort., 32(2): 1-11.
  • Polat, M., Mertoğlu, K., & Eskimez, İ. 2020b. Elmada Bazı Özelliklerin Birlikte Ele Alınabilme Potansiyelleri: Pinova Örneği. Ziraat Mühendisliği, (370), 115-125.
  • Polat, M., Okatan, V., Güçlü, S.F. ve Çolak, A.M. 2018. Determination of Some Chemical Characteristics and Total Antioxidant Capacity in Apple Varieties Grown in Posof/Ardahan Region. International Journal of Agriculture, Environment and Food Sciences, 2018, 2(4): 131-134.
  • Prvulovic, D., Popović, M., Malenčić, Đ., Ljubojevıć, M., & Ognjanov, V. (2011). Phenolic compounds in sweet cherry (Prunus Avium L.) petioles and their antioxidant properties. Research Journal of Agricultural Science, 43(2), 198-202.
  • Ramirez-Ambrosi, M., Lopez-Marquez, D.M., Abad-García, B., Dapena, E., Berrueta, L.A., ve Gallo, B. 2015. Comparative Study of Phenolic Profile of Fruit and Juice Samples of A Progeny of ‘Meana’בFlorina’ from An Asturian Cider Apple Breeding Program. European Food Research and Technology, 2015, 241(6): 769-784.
  • Romano, G. S., Cittadini, E. D., Pugh, B., & Schouten, R. (2006). Sweet cherry quality in the horticultural production chain. Stewart Postharvest Review, 6(2), 1-8.
  • Sahoo, T., Verma, M.K., Singh, S.K., Thakre, M., Sharma, R.R. ve Jaiswal, S. 2017. Heterosis and Heterobeltiosis for Morpho-Physical, Phenolics, Flavonoids and Antioxidants in Grape (Vitis vinifera) Hybrids. Indian Journal of Agricultural Sciences, 2017, 87(6): 759-764.
  • Saracoglu, O., Ozturk, B., Yildiz, K., & Kucuker, E. (2017). Pre-harvest methyl jasmonate treatments delayed ripening and improved quality of sweet cherry fruits. Scientia Horticulturae, 226, 19-23.
  • Schempp, H., Christof, S., Mayr, U. ve Treutter, D. 2016. Phenolic Compounds in Juices of Apple Cultivars and Their Relation to Antioxidant Activity. Journal of Applied Botany and Food Quality, 2016, 89: 11-20.
  • Selcuk, N ve Erkan, M. 2016. Impact of Passive Modified Atmosphere Packaging on Physicochemical Properties, Bioactive Compounds, and Quality Attributes of Sweet Pomegranates, Turkish Journal of Agriculture and Forestry, 2016, 40(4): 475-488.
  • Sirbu, S., Oprica, L., Poroch, V., Iurea, E., Corneanu, M., & Grigore, M. N. (2018). Physical Parameters, Total Phenolics, Flavonoids and Vitamin C Content of Nine Sweet Cherry Cultivars. REVISTA DE CHIMIE, 69(1), 125-129.
  • Skrzynski, J., Leja, M., Gonkiewicz, A., & Banach, P. (2016). Cultivar effect on the sweet cherry antioxidant and some chemical attributes. Folia Horticulturae, 28(1), 95-102.
  • Tang, Y. ve Tsao, R. 2017. Phytochemicals in Quinoa and Amaranth Grains and Their Antioxidant, Anti‐İnflammatory, and Potential Health Beneficial Effects: A Review. Molecular Nutrition & Food Research, 61(7): 1600767.
  • Tiwari, U. and Cummins, E. (2013) Factors Influencing Levels of Phytochemicals in Selected Fruit and Vegetables During Pre-and Post-Harvest Food Processing Operations. Food Research International. 50(2), 497-506.
  • Vieira, F.G.K., Borges, G.D.S.C., Copetti, C., Amboni, R.D.D.M.C., Denardi, F. ve Fett, R. 2009. Physico-Chemical and Antioxidant Properties of Six Apple Cultivars (Malus domestica Borkh) Grown in Southern Brazil. Scientia Horticulturae, 2009, 122(3): 421-425.
  • Yazici, K. ve Şahin, A. 2016. Characterization of Pomegranate (Punica granatum L.) Hybrids and Their Potential Use in Further Breeding. Turkish Journal of Agriculture ve Forestry, 2016, 40(6): 813-824. Zar, JH. 2013. Biostatistical Analysis: Pearson New International Edition. Pearson Higher Ed.

Some Phytochemical Characteristics of Cherry Cultivars and Relations Between These Characteristics

Year 2021, Volume: 8 Issue: 4, 928 - 933, 24.10.2021
https://doi.org/10.30910/turkjans.870796

Abstract

This study was carried out to characterize some cherry cultivars (‘0900 Ziraat’, ‘Regina’, ‘Kordia’, ‘Sweetheart’, ‘Starks Gold’ and ‘Early Burlat’) in terms of phytochemical characteristics in Eskisehir ecological conditions. As a result of the research, vitamin C, total phenol, antioxidant activity, soluble solid content (SSC) and pH were showed high variation among cherry cultivars and values were determined in the range of 2.53 (0900 Ziraat) – 4.43 (Kordia) mg 100 mL-, 186.10 (0900 Ziraat) – 260.63 (Sweetheart) mg L-, %37.56 (0900 Ziraat) – %57.13 (Sweetheart), %13.17 (Starksgold) – %19.26 (Regina) and 3.52 (Kordia) - 4.00, respectively. According to correlation analysis, it was concluded that vitamin C, total phenol and antioxidant activity increased with decreasing pH and there was a high positive correlation (r = 0.92***) between total phenol and antioxidant activity.

References

  • Acero, N., Gradillas, A., Beltran, M., Garcia, A. Ve Mingarro, D.M. 2019. Comparison of Phenolic Compounds Profile and Antioxidant Properties of Different Sweet Cherry (Prunus avium L.) Varieties. Food chemistry, 2019, 279: 260-271.
  • Akkurt, E., Mertoğlu, K., & Evrenosoğlu, Y. 2020. Vista Bella Elma Çeşidinde Farklı Tozlayıcı Çeşitlerin Meyve Tutumu ve Bazı Meyve Kalite Özellikleri Üzerine Etkisi. ANADOLU Ege Tarımsal Araştırma Enstitüsü Dergisi, 30(2), 284-294.
  • Cevallos-Casals, B.A., Byrne, D., Okie, W.R. ve Cisneros-Zevallos, L. 2006. Selecting New Peach and Plum Genotypes Rich in Phenolic Compounds and Enhanced Functional Properties. Food chemistry, 2006, 96(2): 273-280.
  • Çavuşoğlu, Ş., Tekin, O., Bahar, A., Ercişli, S., Özrenk, K., & Durmaz, N. 2018. Effects of Post-Harvest UV-C and Hot Water Treatments on Quality Attributes of ‘0900 Ziraat’Cherries throughout the Cold Storage in Modified Atmosphere Packages. Türk Tarım ve Doğa Bilimleri Dergisi, 5(4), 634-642.
  • Demir, G. ve Aktaş, N. 2018. A Research on Functional Food Knowledge, Preference and Consumption of University Students. Üniversite Öğrencilerinin Fonksiyonel Besin Bilgi, Tercih ve Tüketimleri Üzerine Bir Araştırma. Journal of Human Sciences, 2018, 15(4): 2387-2397.
  • Eroğul, D. (2016). İzmir İlinde yetiştirilen bazı önemli kiraz çeşitlerinin fiziksel ve kimyasal özelliklerinin belirlenmesi. Yüzüncü Yıl Üniversitesi Tarım Bilimleri Dergisi, 26(4), 579-585.
  • Eskimez, İ., Polat, M., & Mertoğlu, K. (2020). M9 Anacı Üzerine Aşılı Arapkızı, Jonagold ve Fuji Kiku Elma (Malus domestica Borkh.) Çeşitlerinin Isparta Ekolojik Koşullarında Fenolojik ve Fiziko-Kimyasal Özellikleri. Uluslararası Tarım ve Yaban Hayatı Bilimleri Dergisi, 6(2), 152-159.
  • Florkowski, W. J., & Lysiak, G. (2015). Quality attribute-price relationship: modernization of the sweet cherry sector in Poland. Problems of World Agriculture/Problemy Rolnictwa Światowego, 15(1827-2016-147713), 41-55.
  • Giampieri, F., Forbes-Hernveez, T.Y., Gasparrini, M., Alvarez-Suarez, J.M., Afrin, S., Bompadre, S., ... ve Battino, M. 2015. Strawberry as a Health Promoter: An Evidence Based Review. Food & Function, 2015, 6(5): 1386-1398.
  • Gonçalves, A. C., Campos, G., Alves, G., Garcia-Viguera, C., Moreno, D. A., & Silva, L. R. (2020). Physical and phytochemical composition of 23 Portuguese sweet cherries as conditioned by variety (or genotype). Food Chemistry, 335, 127637.
  • Göksel, Z., & Aksoy, U. (2014). Sofralık bazı kiraz çeşitlerinin fizikokimyasal özellikleri. Türk Tarım ve Doğa Bilimleri Dergisi, 1(Özel Sayı-2), 1856-1862.
  • Gundogdu, M., & Bilge, U. (2012). Determination of organics, phenolics, sugars and vitamin C contents of some cherry cultivars (Prunus avium). International Journal of Agriculture and Biology, 14(4).
  • Gundogdu, M., Canan, I. ve Okatan, V. 2018. Bioactive Contents and Some Horticultural Characteristics of Local Apple Genotypes from Turkey. JAPS: Journal of Animal & Plant Sciences, 2018, 28(3): 865-874.
  • Hayaloglu, A. A., & Demir, N. (2015). Physicochemical characteristics, antioxidant activity, organic acid and sugar contents of 12 sweet cherry (Prunus avium L.) cultivars grown in Turkey. Journal of Food Science, 80(3), C564-C570.
  • Karaat, F. E., Gündüz, K., Saraçoğlu, O., & Yıldırım, H. (2019). Pomological and phytochemical evaluation of different cherry species: mahaleb (Prunus mahaleb L.), wild sweet cherry (Prunus avium L.) and wild sour cherry (Prunus cerasus L.), sweet and sour cherry cultivars. Acta Scientiarum Polonorum. Hortorum Cultus, 18(4).
  • Karaçalı, I. (2012). Bahçe Ürünlerinin Muhafazası ve Pazarlanması. Hasat Öncesi Dönemde Gelişmeyi Etkileyen Faktörler. Ege Üniv. Yay. No: 494. Bornova, İzmir.
  • Mertoglu, K., Eskimez, I., Polat, M., Okatan, V, Korkmaz, N., Gulbandılar, A., Bulduk, I. (2021). Determination of Anti-Microbial and Phyto-Chemical Characteristics of Some Blackberry Cultivars. Fresenius Enviromental Bulletin, 30(02A), 1789-1795.
  • Mertoğlu, K., Gülbandılar, A., & Bulduk, İ. (2020). Growing conditions effect on fruit phytochemical composition and anti-microbial activity of plum (cv. Black Diamond). International Journal of Agriculture Forestry and Life Sciences, 4(1), 56-61.
  • Mertoğlu, K., ve Evrenosoğlu, Y. (2019). Bazı Elma ve Armut Çeşitlerinde Fitokimyasal Özelliklerin Belirlenmesi. Ziraat Fakültesi Dergisi, 14(1), 11-20.
  • Meteoroloji 3. Bölge Müdürlüğü – Eskişehir., 2015. Eskişehir merkez meteorolojik verileri (Erişim tarihi: Nisan, 2020). Okatan, V. 2020. Antioxidant properties and phenolic profile of the most widely appreciated cultivated berry species: A comparative study. Folia Hort., 32(1): 79-85.
  • Ouaabou, R., Ennahli, S., Nabil, B., Hssaini, L., Hanine, H., Hernández, F., ... & Mahrouz, M. (2020). Multivariate Cherry Quality Assessment Using Morphological, Biochemical and Volatile Compound Traits. International Journal of Fruit Science, 1-20.
  • Polat, M., K. Mertoglu, I. Eskimez and V. Okatan. 2020a. Effects of the fruiting period and growing seasons on market quality in goji berry (Lycium barbarum L.). Folia Hort., 32(2): 1-11.
  • Polat, M., Mertoğlu, K., & Eskimez, İ. 2020b. Elmada Bazı Özelliklerin Birlikte Ele Alınabilme Potansiyelleri: Pinova Örneği. Ziraat Mühendisliği, (370), 115-125.
  • Polat, M., Okatan, V., Güçlü, S.F. ve Çolak, A.M. 2018. Determination of Some Chemical Characteristics and Total Antioxidant Capacity in Apple Varieties Grown in Posof/Ardahan Region. International Journal of Agriculture, Environment and Food Sciences, 2018, 2(4): 131-134.
  • Prvulovic, D., Popović, M., Malenčić, Đ., Ljubojevıć, M., & Ognjanov, V. (2011). Phenolic compounds in sweet cherry (Prunus Avium L.) petioles and their antioxidant properties. Research Journal of Agricultural Science, 43(2), 198-202.
  • Ramirez-Ambrosi, M., Lopez-Marquez, D.M., Abad-García, B., Dapena, E., Berrueta, L.A., ve Gallo, B. 2015. Comparative Study of Phenolic Profile of Fruit and Juice Samples of A Progeny of ‘Meana’בFlorina’ from An Asturian Cider Apple Breeding Program. European Food Research and Technology, 2015, 241(6): 769-784.
  • Romano, G. S., Cittadini, E. D., Pugh, B., & Schouten, R. (2006). Sweet cherry quality in the horticultural production chain. Stewart Postharvest Review, 6(2), 1-8.
  • Sahoo, T., Verma, M.K., Singh, S.K., Thakre, M., Sharma, R.R. ve Jaiswal, S. 2017. Heterosis and Heterobeltiosis for Morpho-Physical, Phenolics, Flavonoids and Antioxidants in Grape (Vitis vinifera) Hybrids. Indian Journal of Agricultural Sciences, 2017, 87(6): 759-764.
  • Saracoglu, O., Ozturk, B., Yildiz, K., & Kucuker, E. (2017). Pre-harvest methyl jasmonate treatments delayed ripening and improved quality of sweet cherry fruits. Scientia Horticulturae, 226, 19-23.
  • Schempp, H., Christof, S., Mayr, U. ve Treutter, D. 2016. Phenolic Compounds in Juices of Apple Cultivars and Their Relation to Antioxidant Activity. Journal of Applied Botany and Food Quality, 2016, 89: 11-20.
  • Selcuk, N ve Erkan, M. 2016. Impact of Passive Modified Atmosphere Packaging on Physicochemical Properties, Bioactive Compounds, and Quality Attributes of Sweet Pomegranates, Turkish Journal of Agriculture and Forestry, 2016, 40(4): 475-488.
  • Sirbu, S., Oprica, L., Poroch, V., Iurea, E., Corneanu, M., & Grigore, M. N. (2018). Physical Parameters, Total Phenolics, Flavonoids and Vitamin C Content of Nine Sweet Cherry Cultivars. REVISTA DE CHIMIE, 69(1), 125-129.
  • Skrzynski, J., Leja, M., Gonkiewicz, A., & Banach, P. (2016). Cultivar effect on the sweet cherry antioxidant and some chemical attributes. Folia Horticulturae, 28(1), 95-102.
  • Tang, Y. ve Tsao, R. 2017. Phytochemicals in Quinoa and Amaranth Grains and Their Antioxidant, Anti‐İnflammatory, and Potential Health Beneficial Effects: A Review. Molecular Nutrition & Food Research, 61(7): 1600767.
  • Tiwari, U. and Cummins, E. (2013) Factors Influencing Levels of Phytochemicals in Selected Fruit and Vegetables During Pre-and Post-Harvest Food Processing Operations. Food Research International. 50(2), 497-506.
  • Vieira, F.G.K., Borges, G.D.S.C., Copetti, C., Amboni, R.D.D.M.C., Denardi, F. ve Fett, R. 2009. Physico-Chemical and Antioxidant Properties of Six Apple Cultivars (Malus domestica Borkh) Grown in Southern Brazil. Scientia Horticulturae, 2009, 122(3): 421-425.
  • Yazici, K. ve Şahin, A. 2016. Characterization of Pomegranate (Punica granatum L.) Hybrids and Their Potential Use in Further Breeding. Turkish Journal of Agriculture ve Forestry, 2016, 40(6): 813-824. Zar, JH. 2013. Biostatistical Analysis: Pearson New International Edition. Pearson Higher Ed.
There are 37 citations in total.

Details

Primary Language English
Journal Section Research Articles
Authors

Kerem Mertoğlu 0000-0002-0490-9073

Publication Date October 24, 2021
Submission Date January 29, 2021
Published in Issue Year 2021 Volume: 8 Issue: 4

Cite

APA Mertoğlu, K. (2021). Some Phytochemical Characteristics of Cherry Cultivars and Relations Between These Characteristics. Türk Tarım Ve Doğa Bilimleri Dergisi, 8(4), 928-933. https://doi.org/10.30910/turkjans.870796