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Siirt İli Asma Gen Kaynakları İçerisinde Öne Çıkan Bazı Yerli Üzüm Çeşitlerinin Toplam Fenolik ve Antioksidan İçerikleri

Year 2018, Volume: 47 Issue: (Özel Sayı 2) 1. Uluslararası Tarım Kongresi, 307 - 312, 26.12.2018

Abstract

Güneydoğu tarım bölgesi içerisinde yer alan Siirt ili, gelişme dönemi içerisindeki ortalama sıcaklıklar ve EST (Etkili Sıcaklık Toplamı) bakımından ülkemizin en yüksek değerlerine sahip illerinden biridir. Söz konusu ilimiz, iklim olarak hem sofralık, hem kurutmalık hem de şıralık ve şaraplık üzüm çeşitlerinin yetiştirilmesi için elverişli olmasının yanı sıra, en erkenci çeşitlerden en geç olgunlaşanlara kadar, her olgunluk kademesindeki çeşitlerin yetiştirilmesi şansına da sahiptir. Oldukça zengin bir asma gen potansiyeline sahip ülkemizde fenolik bileşikler ve antioksidanlar bakımından zengin gıdalar arasında yer alan üzümün çeşitler bakımından sahip oldukları potansiyelinin ortaya konulması oldukça önemlidir. Bu çalışmada Siirt ili asma gen kaynakları içerisinde öne çıkan Bağılti, Besirane, Emiri, Siirt-1 ve Tayfi üzüm çeşitlerinin toplam fenolik ve antioksidan içerikleri belirlenmiştir. Çalışmada spektrofotometrik yöntemler kullanılmıştır. Elde edilen bulgulara göre, çeşitlerin toplam fenolik bileşik içerikleri 3.94 mg gallik asit eşdeğeri (GAE) g⁻¹ (Emiri) ile 1.38 mg GAE g⁻¹ (Siirt-1), antioksidan içerikleri ise 292.79 µg 100 g⁻¹ (Emiri) ile 121.87 µg 100 g⁻¹ (Siirt⁻¹) arasında değişim göstermiştir.

References

  • Amerine, M.A. Cruess M.V., 1960. The technology of wine making. The Avi Publishing Comp., Inc. Westport, Connecticut, U.S.A., 709pp.
  • Aubert, C., Chalot, G., 2018. Chemical composition, bioactive compounds, and volatiles of six table grape varieties (Vitis vinifera L.). Food Chemistry 240:524-533.
  • Benzie, I.E.F., Strain, J.J., 1996. The ferric reducing ability of plasma (FRAP) as a measure of "Antioxidant Power": The frap assay. Analytical Biochemistry, 239: 70-76.
  • Bisson, J., Ribéreau-Gayon P., 1978. Influence du cépage et du milieu sur la composition phénolique de cinq raisins noirs. Ann. Technol. Agri. 27:827-835.
  • Brescia, M.A., Caldarola, V., De Giglio, A., Benedetti, D., Fanizzi F.P. and Sacco A., 2002. Characterization of the geographical origin of Italian red wines based on traditional and nuclear magnetic resonance spectrometric determinations. Analytica Chimica Acta, 458: 177-186.
  • Brighenti, E., Casagrande, K., Zelindro Cardoso, P., da Silveira Pasa, M., Nara Ciotta, M., Fontanella Brighenti, A., 2017. Total polyphenols contents in different grapevine varieties in highlands of Southern Brazil. Proceedings of the 40. World Congress of Vine and Wine (BIO Web of Conferences), 29 May-2 Jun 2017, Sofia, Bulgaria.
  • Cejudo-Bastante, M.J., Vicario, A., Guillen, D.A., Hermosin-Gutierrez, I., Perez-Coello, M.S., 2015. Phenolic characterization of minor red grape varieties grown in Castilla-La Mancha region in different vinification stages. European Food Research and Technology, 240(3):595-607.
  • Cejudo-Bastante, M.J., Barrio-Galan, R. del., Heredia, F.J., Medel-Maraboli, M., Pena-Neira, A., 2018. Location effects on the polyphenolic and polysaccharidic profiles and colour of Carignan grape variety wines from the Chilean Maule region. Food Research International, 106:729-735.
  • Costa, E., Cosme, F., Rivero-Perez, M.D., Jordao, A.M., Gonzalez-SanJose, M.L., 2015. Influence of wine region provenance on phenolic composition, antioxidant capacity and radical scavenger activity of traditional Portuguese red grape varieties. European Food Research and Technology 241(1):61-73.
  • Cheynier, V., Rigaud, J., 1986. HPLC separation and characterization of flavonols in the skins of Vitis vinifera var. Cinsault. American Journal of Enology and Viticulture, 37(4):248-252.
  • Czepak, M.P., Costa, A., Pereira, G.E., de Souza, R.T., Gonçalves, L.C., Schmildt, E.R., 2016. Physicochemical characterization of wines obtained of cultivar Isabel (hybrid of (Vitis vinifera × Vitis labrusca) from different Brazilian states. Proceedings of the 39. World Congress of Vine and Wine (BIO Web of Conferences), Bento Goncalves, Brazil, October 24-28, 2016.
  • Drewnowski, A., Gomez-Carneros, C., 2000. Bitter taste, phytonutrients, and the consumer: A review. The American Journal of Clinical Nutrition, 72(6):1424-1435.
  • Garrido, I., Uriarte, D., Hernandez, M., Llerena, J.L., Valdes, M.E., Espinosa, F., 2016. The evolution of total phenolic compounds and antioxidant activities during ripening of grapes (Vitis vinifera L., cv. Tempranillo) grown in semiarid region: effects of cluster thinning and water deficit. International Journal of Molecular Sciences, 17(1923):1-11.
  • Göktürk Baydar, N., Çetin, S., Hallaç, F., Babalık, Z., 2005. Üzümlerde Fenolik Madde İçeriklerinin Spektrofotometrik Yöntemlerle Belirlenmesi. 6. Bağcılık Sempozyumu Bildirileri 329-334, Cilt I. 19-23 Eylül 2005, Tekirdağ.
  • Guilloux, M., 1981. Évolution des composés phénoliques de la grappe pendant la maturation du raisin. Influence des facteurs naturels. Thèse de Doctorat 3e Cycle, Université Bordeaux II, 125p.
  • Malinovski, L.I., Brighenti, A.F., Borghezan, M., Guerra, M.P., Silva, A.L., Porro, D., Stefanini, M., Vieira, H.J. 2016. Viticultural performance of Italian grapevines in high altitude regions of Santa Catarina State, Brazil. Acta Horticulturae (1115):203-209.
  • Mendes de Souza Nascimento, A., Fagundes de Souza, J., Oliveira Costa, A., de Freitas Santos, S., Gomes Silva, G., Elias Pereira, G. 2016. Caracterization of phenolic composition of altitude tropical wines in the Brazilian Northeast. Proceedings of the 39. World Congress of Vine and Wine, Bento Goncalves, Brazil, October 24-28, 2016.
  • Mendes-Pinto, M.M., Ferreira, A.S., Oliveira, M.B.P., & Guedes de Pinho, P., 2004. Evaluation of some carotenoids in grapes by reversed-and normal-phase liquid chromatography: A qualitative analysis. Journal of Agricultural and Food Chemistry 52(10):3182-3188.
  • Perestrelo, R., Silva, C., Pereira, J., Câmara, J.S., 2014. Healthy effects of bioactive metabolites from Vitis vinifera L. grapes: A review. In José S. Câmara (Ed.), Grapes: Production, phenolic composition and potential biomedical effects (pp.305-338). Nova Science Technology.
  • Poroch-Seritan, M., Jarcau, M., Vornicu, I., 2016. Correlation between antioxidant activity and total polyphenols content of autochthonous wine variety-Feteasca Neagra. Lucrari Stiintifice, Universitatea de Stiinte Agricole Si Medicina Veterinara 'Ion Ionescu de la Brad', Iasi, Seria Agronomie, 59(2):393-398.
  • Sartor, S., Caliari, V., Malinovski, L.I., Toaldo, I.M., Bordignon-Luiz, M.T., 2017. Bioactive profiling of polyphenolics and oenological properties of red wines from Italian grapes (Vitis vinifera L.) cultivated in a selected subtropical region. International Journal of Food Properties, 20 (Suppl. 2): 1319-1328.
  • Shahidi, F., Ambigaipalan, P., 2015. Phenolics and polyphenolics in foods, beverages and spices: Antioxidant activity and health effects A review. Journal of Functional Foods, 18:820-897.
  • Silva, L.R., Queiroz, M., 2016. Bioactive compounds of red grapes from Dao region (Portugal): evaluation of phenolic and organic profile. Asian Pacific Journal of Tropical Biomedicine, 6(4):315-321.
  • Simon, S., Malinovski, L.I., Panceri, C.P., Brighenti, A.F., Vanderlinde, G., Bordignon-Luiz, M.T., Silva, A.L., 2017. Productive and qualitative characterization of 'Merlot' grapes (Vitis vinifera L.) in Campo Belo do Sul, Santa Catarina State, Brazil. Acta Horticulturae, (1157):337-342.
  • Singleton, VL., Esau, P., 1969. Phenolic substances in grapes and wine, and their significance. Academic Press, New York.
  • Swain, T., Hillis, W.E., 1959. The Phenolic Constituents of Prunus domestica I. The Quantitative Analysis of Phenolic Constituents. Journal of the Science of Food and Agriculture, 10:63-68.
  • Turati, F., Rossi, M., Pelucchi, C., Levi, F., La Vecchia, C., 2015. Fruit and vegetables and cancer risk: A review of southern European studies. British Journal of Nutrition, 113(S2):102-110.
  • Vieira, A.R., Abar, L., Vingeliene, S., Chan, D.S.M., Aune, D., Navarro-Rosenblatt, D., Norat, T., 2016. Fruits, vegetables and lung cancer risk: A systematic review and meta-analysis. Annals of Oncology, 27(1):81-96.
  • Xing, R.R., He, F., Xiao, H.L., Duan, C.Q., Pan, Q.H., 2015. Accumulation pattern of flavonoids in Cabernet Sauvignon grapes grown in a lowlatitude and high-altitude region. S. Afr. J. Enol. Vitic, 36(1):32-43.
  • Yang, J., Martinson, T.E., Liu, R.H., 2009. Phytochemical profiles and antioxidant activities of wine grapes. Food Chem. 116:332-339.
  • Zheng Wei, Garcia, J., Balda, P., Martinez de Toda, F., 2017. Effects of late winter pruning at different phenological stages on vine yield components and berry composition in La Rioja, north-central Spain. OENO One, 51(4):363-372.

Total Phenolic and Antioxidant Contents of Some Common Domestic Grape Cultivars Within Grape Gene Resources of Siirt Province

Year 2018, Volume: 47 Issue: (Özel Sayı 2) 1. Uluslararası Tarım Kongresi, 307 - 312, 26.12.2018

Abstract

Siirt province located in the South Eastern Agricultural Region is one of the highest values of the country in terms of average temperatures and EHS (Effective Heat Summation) during the growing period. This province is suitable for growing of the table, raisin, must, and wine grape cultivars, in point of climatic conditions; and besides, it has the chance to grow all varieties in the broad maturity period, from the earliest to the latest. It is very important to determine the potential of grape varieties that are rich for the phenolic compounds and antioxidant in our country which has a very high grape gene potential. In this study, the total phenolic and antioxidant contents of Bağılti, Besirane, Emiri, Siirt-1 and Tayfi grape cultivars which are common grapevine genetic resources in Siirt have been determined. Spectrophotometric methods were used in the study. According to the findings, the total phenolic compound contents of the varieties ranged from 3.94 mg gallic acid equivalent (GAE) g⁻¹ (Emiri) to 1.38 mg GAE g⁻¹ (Siirt-1), while antioxidant contents varied from 292.79 μg 100 g⁻¹ (Emiri) and 121.87 μg 100 g⁻¹ (Siirt-1).

References

  • Amerine, M.A. Cruess M.V., 1960. The technology of wine making. The Avi Publishing Comp., Inc. Westport, Connecticut, U.S.A., 709pp.
  • Aubert, C., Chalot, G., 2018. Chemical composition, bioactive compounds, and volatiles of six table grape varieties (Vitis vinifera L.). Food Chemistry 240:524-533.
  • Benzie, I.E.F., Strain, J.J., 1996. The ferric reducing ability of plasma (FRAP) as a measure of "Antioxidant Power": The frap assay. Analytical Biochemistry, 239: 70-76.
  • Bisson, J., Ribéreau-Gayon P., 1978. Influence du cépage et du milieu sur la composition phénolique de cinq raisins noirs. Ann. Technol. Agri. 27:827-835.
  • Brescia, M.A., Caldarola, V., De Giglio, A., Benedetti, D., Fanizzi F.P. and Sacco A., 2002. Characterization of the geographical origin of Italian red wines based on traditional and nuclear magnetic resonance spectrometric determinations. Analytica Chimica Acta, 458: 177-186.
  • Brighenti, E., Casagrande, K., Zelindro Cardoso, P., da Silveira Pasa, M., Nara Ciotta, M., Fontanella Brighenti, A., 2017. Total polyphenols contents in different grapevine varieties in highlands of Southern Brazil. Proceedings of the 40. World Congress of Vine and Wine (BIO Web of Conferences), 29 May-2 Jun 2017, Sofia, Bulgaria.
  • Cejudo-Bastante, M.J., Vicario, A., Guillen, D.A., Hermosin-Gutierrez, I., Perez-Coello, M.S., 2015. Phenolic characterization of minor red grape varieties grown in Castilla-La Mancha region in different vinification stages. European Food Research and Technology, 240(3):595-607.
  • Cejudo-Bastante, M.J., Barrio-Galan, R. del., Heredia, F.J., Medel-Maraboli, M., Pena-Neira, A., 2018. Location effects on the polyphenolic and polysaccharidic profiles and colour of Carignan grape variety wines from the Chilean Maule region. Food Research International, 106:729-735.
  • Costa, E., Cosme, F., Rivero-Perez, M.D., Jordao, A.M., Gonzalez-SanJose, M.L., 2015. Influence of wine region provenance on phenolic composition, antioxidant capacity and radical scavenger activity of traditional Portuguese red grape varieties. European Food Research and Technology 241(1):61-73.
  • Cheynier, V., Rigaud, J., 1986. HPLC separation and characterization of flavonols in the skins of Vitis vinifera var. Cinsault. American Journal of Enology and Viticulture, 37(4):248-252.
  • Czepak, M.P., Costa, A., Pereira, G.E., de Souza, R.T., Gonçalves, L.C., Schmildt, E.R., 2016. Physicochemical characterization of wines obtained of cultivar Isabel (hybrid of (Vitis vinifera × Vitis labrusca) from different Brazilian states. Proceedings of the 39. World Congress of Vine and Wine (BIO Web of Conferences), Bento Goncalves, Brazil, October 24-28, 2016.
  • Drewnowski, A., Gomez-Carneros, C., 2000. Bitter taste, phytonutrients, and the consumer: A review. The American Journal of Clinical Nutrition, 72(6):1424-1435.
  • Garrido, I., Uriarte, D., Hernandez, M., Llerena, J.L., Valdes, M.E., Espinosa, F., 2016. The evolution of total phenolic compounds and antioxidant activities during ripening of grapes (Vitis vinifera L., cv. Tempranillo) grown in semiarid region: effects of cluster thinning and water deficit. International Journal of Molecular Sciences, 17(1923):1-11.
  • Göktürk Baydar, N., Çetin, S., Hallaç, F., Babalık, Z., 2005. Üzümlerde Fenolik Madde İçeriklerinin Spektrofotometrik Yöntemlerle Belirlenmesi. 6. Bağcılık Sempozyumu Bildirileri 329-334, Cilt I. 19-23 Eylül 2005, Tekirdağ.
  • Guilloux, M., 1981. Évolution des composés phénoliques de la grappe pendant la maturation du raisin. Influence des facteurs naturels. Thèse de Doctorat 3e Cycle, Université Bordeaux II, 125p.
  • Malinovski, L.I., Brighenti, A.F., Borghezan, M., Guerra, M.P., Silva, A.L., Porro, D., Stefanini, M., Vieira, H.J. 2016. Viticultural performance of Italian grapevines in high altitude regions of Santa Catarina State, Brazil. Acta Horticulturae (1115):203-209.
  • Mendes de Souza Nascimento, A., Fagundes de Souza, J., Oliveira Costa, A., de Freitas Santos, S., Gomes Silva, G., Elias Pereira, G. 2016. Caracterization of phenolic composition of altitude tropical wines in the Brazilian Northeast. Proceedings of the 39. World Congress of Vine and Wine, Bento Goncalves, Brazil, October 24-28, 2016.
  • Mendes-Pinto, M.M., Ferreira, A.S., Oliveira, M.B.P., & Guedes de Pinho, P., 2004. Evaluation of some carotenoids in grapes by reversed-and normal-phase liquid chromatography: A qualitative analysis. Journal of Agricultural and Food Chemistry 52(10):3182-3188.
  • Perestrelo, R., Silva, C., Pereira, J., Câmara, J.S., 2014. Healthy effects of bioactive metabolites from Vitis vinifera L. grapes: A review. In José S. Câmara (Ed.), Grapes: Production, phenolic composition and potential biomedical effects (pp.305-338). Nova Science Technology.
  • Poroch-Seritan, M., Jarcau, M., Vornicu, I., 2016. Correlation between antioxidant activity and total polyphenols content of autochthonous wine variety-Feteasca Neagra. Lucrari Stiintifice, Universitatea de Stiinte Agricole Si Medicina Veterinara 'Ion Ionescu de la Brad', Iasi, Seria Agronomie, 59(2):393-398.
  • Sartor, S., Caliari, V., Malinovski, L.I., Toaldo, I.M., Bordignon-Luiz, M.T., 2017. Bioactive profiling of polyphenolics and oenological properties of red wines from Italian grapes (Vitis vinifera L.) cultivated in a selected subtropical region. International Journal of Food Properties, 20 (Suppl. 2): 1319-1328.
  • Shahidi, F., Ambigaipalan, P., 2015. Phenolics and polyphenolics in foods, beverages and spices: Antioxidant activity and health effects A review. Journal of Functional Foods, 18:820-897.
  • Silva, L.R., Queiroz, M., 2016. Bioactive compounds of red grapes from Dao region (Portugal): evaluation of phenolic and organic profile. Asian Pacific Journal of Tropical Biomedicine, 6(4):315-321.
  • Simon, S., Malinovski, L.I., Panceri, C.P., Brighenti, A.F., Vanderlinde, G., Bordignon-Luiz, M.T., Silva, A.L., 2017. Productive and qualitative characterization of 'Merlot' grapes (Vitis vinifera L.) in Campo Belo do Sul, Santa Catarina State, Brazil. Acta Horticulturae, (1157):337-342.
  • Singleton, VL., Esau, P., 1969. Phenolic substances in grapes and wine, and their significance. Academic Press, New York.
  • Swain, T., Hillis, W.E., 1959. The Phenolic Constituents of Prunus domestica I. The Quantitative Analysis of Phenolic Constituents. Journal of the Science of Food and Agriculture, 10:63-68.
  • Turati, F., Rossi, M., Pelucchi, C., Levi, F., La Vecchia, C., 2015. Fruit and vegetables and cancer risk: A review of southern European studies. British Journal of Nutrition, 113(S2):102-110.
  • Vieira, A.R., Abar, L., Vingeliene, S., Chan, D.S.M., Aune, D., Navarro-Rosenblatt, D., Norat, T., 2016. Fruits, vegetables and lung cancer risk: A systematic review and meta-analysis. Annals of Oncology, 27(1):81-96.
  • Xing, R.R., He, F., Xiao, H.L., Duan, C.Q., Pan, Q.H., 2015. Accumulation pattern of flavonoids in Cabernet Sauvignon grapes grown in a lowlatitude and high-altitude region. S. Afr. J. Enol. Vitic, 36(1):32-43.
  • Yang, J., Martinson, T.E., Liu, R.H., 2009. Phytochemical profiles and antioxidant activities of wine grapes. Food Chem. 116:332-339.
  • Zheng Wei, Garcia, J., Balda, P., Martinez de Toda, F., 2017. Effects of late winter pruning at different phenological stages on vine yield components and berry composition in La Rioja, north-central Spain. OENO One, 51(4):363-372.
There are 31 citations in total.

Details

Primary Language Turkish
Subjects Agricultural Engineering (Other)
Journal Section Makaleler
Authors

Nurhan Keskin

Şeyda Çavuşoğlu

Nalan Türkoğlu

Koray Özrenk

Birhan Kunter

Publication Date December 26, 2018
Submission Date July 2, 2018
Acceptance Date December 3, 2018
Published in Issue Year 2018 Volume: 47 Issue: (Özel Sayı 2) 1. Uluslararası Tarım Kongresi

Cite

APA Keskin, N., Çavuşoğlu, Ş., Türkoğlu, N., … Özrenk, K. (2018). Siirt İli Asma Gen Kaynakları İçerisinde Öne Çıkan Bazı Yerli Üzüm Çeşitlerinin Toplam Fenolik ve Antioksidan İçerikleri. Bahçe, 47((Özel Sayı 2) 1. Uluslararası Tarım Kongresi), 307-312.
AMA Keskin N, Çavuşoğlu Ş, Türkoğlu N, Özrenk K, Kunter B. Siirt İli Asma Gen Kaynakları İçerisinde Öne Çıkan Bazı Yerli Üzüm Çeşitlerinin Toplam Fenolik ve Antioksidan İçerikleri. Bahçe. December 2018;47((Özel Sayı 2) 1. Uluslararası Tarım Kongresi):307-312.
Chicago Keskin, Nurhan, Şeyda Çavuşoğlu, Nalan Türkoğlu, Koray Özrenk, and Birhan Kunter. “Siirt İli Asma Gen Kaynakları İçerisinde Öne Çıkan Bazı Yerli Üzüm Çeşitlerinin Toplam Fenolik Ve Antioksidan İçerikleri”. Bahçe 47, no. (Özel Sayı 2) 1. Uluslararası Tarım Kongresi (December 2018): 307-12.
EndNote Keskin N, Çavuşoğlu Ş, Türkoğlu N, Özrenk K, Kunter B (December 1, 2018) Siirt İli Asma Gen Kaynakları İçerisinde Öne Çıkan Bazı Yerli Üzüm Çeşitlerinin Toplam Fenolik ve Antioksidan İçerikleri. Bahçe 47 (Özel Sayı 2) 1. Uluslararası Tarım Kongresi 307–312.
IEEE N. Keskin, Ş. Çavuşoğlu, N. Türkoğlu, K. Özrenk, and B. Kunter, “Siirt İli Asma Gen Kaynakları İçerisinde Öne Çıkan Bazı Yerli Üzüm Çeşitlerinin Toplam Fenolik ve Antioksidan İçerikleri”, Bahçe, vol. 47, no. (Özel Sayı 2) 1. Uluslararası Tarım Kongresi, pp. 307–312, 2018.
ISNAD Keskin, Nurhan et al. “Siirt İli Asma Gen Kaynakları İçerisinde Öne Çıkan Bazı Yerli Üzüm Çeşitlerinin Toplam Fenolik Ve Antioksidan İçerikleri”. Bahçe 47/(Özel Sayı 2) 1. Uluslararası Tarım Kongresi (December2018), 307-312.
JAMA Keskin N, Çavuşoğlu Ş, Türkoğlu N, Özrenk K, Kunter B. Siirt İli Asma Gen Kaynakları İçerisinde Öne Çıkan Bazı Yerli Üzüm Çeşitlerinin Toplam Fenolik ve Antioksidan İçerikleri. Bahçe. 2018;47:307–312.
MLA Keskin, Nurhan et al. “Siirt İli Asma Gen Kaynakları İçerisinde Öne Çıkan Bazı Yerli Üzüm Çeşitlerinin Toplam Fenolik Ve Antioksidan İçerikleri”. Bahçe, vol. 47, no. (Özel Sayı 2) 1. Uluslararası Tarım Kongresi, 2018, pp. 307-12.
Vancouver Keskin N, Çavuşoğlu Ş, Türkoğlu N, Özrenk K, Kunter B. Siirt İli Asma Gen Kaynakları İçerisinde Öne Çıkan Bazı Yerli Üzüm Çeşitlerinin Toplam Fenolik ve Antioksidan İçerikleri. Bahçe. 2018;47((Özel Sayı 2) 1. Uluslararası Tarım Kongresi):307-12.

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