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Nane Yağı ve Karanfil Yağı Uygulamasının Depolanan Patateslerde Filizlenmeye Etkisi

Yıl 2021, Sayı: 22, 357 - 363, 31.01.2021
https://doi.org/10.31590/ejosat.868812

Öz

Patates kayıplarını en aza indirmek için, yetiştirilme ve hasat dönemleri önemli olduğu kadar patatesin depolanması süreci de önem arz etmektedir. Bu çalışmada Adana’da üretilen universa çeşit patatesler kullanılmıştır. İki konsantrasyonda nane yağı ve karanfil yağı içeren çözeltiler ile klorpropham (CIPC) ilacı uygulanan ve hiçbir uygulama yapılmayan kontrol patatesler 10oC sıcaklık ve % 90 nispi nem koşullarında soğuk hava deposunda 5 ay süresince depolanmış ve 4 hafta aralıklarla askorbikasit, invert şeker, toplam şeker, nişasta, ağırlık kaybı gibi fiziksel ve kimyasal analizler yapılmıştır. Patateslerde toplam şeker miktarı 521.636-355.144, invert şeker miktarı 469.269-299.404, % kül oranı 0.8-0.51 arasında tespit edilmiştir. Kontrol yumrularda 3. ayda, nane yağlı yumrularda 5. ayda sürme başlamasına rağmen karanfil yağlı ve CIPC uygulanmış yumrularda depolama süresi boyunca filizlenme gözlemlenmemiştir. Sonuç olarak karanfil ve nane yağının universa çeşit yumrularda sürmeyi önleyici etki yaptığı CIPC’e alternatif olarak kullanılabileceği, 2/3 oranındaki doğal yağ uygulanmış yumruların şeker içeriğinin 1/2 oranlı yumrulara göre daha düşük olduğu, renk L değerlerine bakıldığında karanfil yağı nane yağına göre kalite yönünden daha iyi etki gösterdiği tespit edilmiştir.

Kaynakça

  • Afek, U., J. Orenstein ve E., Nuriel. 2000. Using HPP (hydrogen peroxide plus) to inhibit potato sprouting during storage. American Journal of Potato Research 77:63-65.
  • Alma, M.H., Ertaş, M., Nitz, S., Kollmannsberger, H., 2007. Chemical Composition and Content of Essential Oil from The Bud of Cultivated Turkish Clove (Syzygium aromaticum L.), BioResources 2(2), 265-269.
  • Bailey, K.M., Phillips, D.J., Pitt, D., 1978, The role of buds and giberellin in dormancy and the mobilization of rezerve materials in potato tubers. Ann, Bott., 42:649-657.
  • Baydar, H., Altındal, D., Karadoğan, T., 2009. Patateste Sürgün Gelişimi Üzerine Uçucu Yağların Etkisi, Süleyman Demirel Üniversitesi, Fen Bilimleri Enstitüsü Dergisi, 13-2:137-141.
  • Benkeblia N., Alexopoulos A.A., Passam H.C., 2008. Physiological and biochemical regulation of dormancy and sprouting in potato tubers (Solanum tuberosum L.), Fruit, Vegetable and Cereal Science and Biotechnology (2), 54-68.
  • Bilişli A., Çevik İ., Şentürk A., 2002. Bazı patates çeşitlerinin derin dondurmaya elverişliliği üzerine araştırmalar, Gıda ve Yem Bilimi Teknolojisi (1). 12-18.
  • Çaylak, Ö., 2002. Patates Tarımı, Kartarım Tic. A.Ş., Ankara, 44-68.
  • Daniels-Lake, B., Olsen, N., Delgado, H.L., Zink, R., 2013. Efficacy of Potato Sprout Control Products to Minimize Sprout Production, Nappo Science and Technology Documents, (http://www.nappo.org/files/9714/3753/7437/Potato_sprout_inhibition_ ST_e.pdf), (Erişim:15.11.2016).
  • Dogras, C., Siomos, A., Psomakelis, C., 1991. Sugar and dry matter changes in potatoes overwintered in soil in Greece. Potato Research, 34 (2), 215-218.
  • Elbashir, H.A., Ahmed, A.H.R., Yousif, K.S., 2014. Efficacy of Different Aplications of Spearmint Oil on Storability and Processing Quality of Two Potato Varieties, Journal of Agri-Food and Applied Sciences, Vol. 2(5), pp. 124-133. (http://www.blue-ap.org/J/List/1/iss/volume% 202%20(2014)/issue%2005/1.pdf), (Erişim: 15.11.2016).
  • Finger, F.L., Sousa Santos, M.M., Araujo, F.F., Lima, P.C.C., Costa, L.C., França, C.F.M., Queiroz, M.C., 2018. Action of Essential Oils on Sprouting of Non-Dormant Potato Tubers, Brazilian Archives of Biology and Technology, v.61.
  • Frazier, M. J., Olsen, N., Kleinkopf, G., 2004. Organic and Alternative Methods for Potato Sprout Control in Storage, University of Idaho College of Agricultural and Life Sciences. (http://www.cals.uidaho.edu/edComm/pdf/cis/cis1120.pdf), (Erişim:15.11.2016).
  • Hagg, M., Hakkinen, U., Kumpulainen, J., Ahvenainen, R., ve Hurme, E., 1998. Effects of preparation procedures, packaging and storage on nutrient retention in peeled potatoes. J Food Sci Agric 77(4): 519-26.
  • Hartmans, K.J., Diepenhorst, P., Bakker, W., Gorris, L.G.M., 1995. The Use of Karvon in Agriculture:Sprout Suppression of Potatoes and Antifungal Activity Against Potato Tuber and Other Plant Diseases, Industrial Crops and Products, 4, 3- 13.
  • İlisulu, K., 1986. Nisasta ve Seker Bitkileri ve Islahı. Ankara Üniversitesi Ziraat Fakültesi Yayınları, 960, Ders Kitabı: 279, Ankara.
  • Kara, K., 2000. Bazı patates çeşitlerinin depolama sonrası kalite ve fizyolojik özelliklerinin incelenmesi. Tarla Bitkileri Merkez Araştırma Enstitüsü Dergisi (9): 1-2.
  • Karanisa, T., Akoumianakis, K., Alexopoulos, A., Karapanos, I., 2015. Effect of Proharvest Application of Carvone on Potato Tubers Grown From True Potato Seed (TPS), Procedia Environmental Sciences 29: 166-167.
  • Karbuz, F., Öztürk, İ., Savaş, D.O., 2009. Türkiye’de Üretilen Tarım Ürünleri ve Ekonomideki Yeri. İstanbul Ticaret Odası, 1-144, (http://www.ito.org.tr/Dokuman/Sektor/1-99.pdf), (Erişim: 10.11.2016).
  • Kaundal, B., Sharma, V., Raigond, P., Singh, B., Kaushik, SK., 2015. Ascorbic acid losses during storage of potato tubers. Potato J. 42 (1): 76-79.
  • Keijbets, M.J.H. ve Ebbenhorst-Seller, G., 1990. Loss of vitamin C (L- ascorbic acid) during long-term cold storage of Dutch table potatoes. Potato Res 33(1): 125-30.
  • Kerstholt, R.P.V., Ree, C.M., Moll, H.C., 1997. Environmental Life Cycle of Potato Sprout İnhibitors. Industrial Cops and Products 6, 187-194.
  • Kleinkopf, G., N. Oberg, N. Olsen., 2003. Sprout Inhibition in Storage: Current Status, New Chemistries and Natural Compounds. American Journal of Potato Research 80:317-327.
  • Matsuuro-Endo, C., Kobayashi, A., Noda, T., Takigawa, S., Yamauchi, H., Mori, M., 2004. Changes in sugar content and activity of vacuolar acid invertase during low-temperature storage of potato tubers from six Japanese cultivars. J. Plant Res., 117, 131-137.
  • Olsen, N., Frazier, M.J., Kleinkopf, G., Potato Sprout Suppression from Clove Oil, Uidaho University, (https://www.uidaho.edu/~/media/UIdaho-Responsive/Files/cals/Programs/Potatoes/Storage/potato-sprout-suppression-from-clove-oil.ashx), (Erişim: 02.12.2016).
  • Owolabi, M. S., Lajide, L., Oladimeji, M. O., Setzer, W.N., 2010. The Effect of Essential Oil Formulations for Potato Suprout Suppression, Natural Product Communication Vol. 5(4).
  • Paul, V., Ezekiel, R., Pandey, R., 2016. Sprout suppression on potato: need to look beyond CIPC for more effective and safer alternatives, J. Food Sci. Technol. 53(1): 1-18.
  • Rezaee, M., Almassi, M., Majdabahi, F.A., Minaei, S., Khodadahi, M., 2011. Potato sprout inhibition and tuber quality after post harvest treatment with gamma irradiation on different dates. J. Agr. Sci. Tech., 13, 829-842.
  • Richardson, D.L., Davies, H.V., Ross, H.S., Mackay, G.R., 1990. Invertase activity and its relation to hexose accumulation in potato tubers. J. Exp. Bo., 41 (222), 95-99.
  • Sharma, A., 2012. Essential Oil as Organic and Alternative Methods for Potato (Solanumtuberosum L.) Sprout Control in Storage, International Journal of Engineering and Mathematical Sciences, June 2012, Vol. 1, 34-39.
  • Song, X., Bandara, M., Tanino, K.K., 2008. Potato Dormancy Regulation: Use of Essential Oils for Sprout Suppression in Potato Storage, Fruit, Vegetable and Cereal Science and Biotechnology , Global Science Books, 1:110-117.
  • Şanlı, A., Karadoğan, T., Tonguç, M., Baydar, H., 2010. Effects of caraway (carum carvi l.) seed on sprouting of potato (solanum tuberosum l.) tubers under different temperature conditions, Turkish Journal Of Field Crops, 15 (1): 54-58.
  • Şanlı, A., Karadoğan, T., 2013. Kimyasal ve doğal sürgün gelişimi engelleyicileri ile depo sıcaklığının patates (Solanum tuberosum L.)’de cips kalitesi üzerine etkilerinin belirlenmesi, YYÜ Tar Bil Derg., 23(2): 172-184.
  • Wichrowska, D., Rogozinska, I., Pawelzik, E., 2008. Concentrations of Some Organic Acids in Potato Tubers Depending on Weed Control Method, Cultivar and Storage Conditions, Polish Journal Of Environmental Studies. Vol. 18, No.3, 487-491.
  • Yavuz, D., 2011. Patates Tarımında Farklı Sulama Yöntemlerinin Su Kullanımı, Verim ve Enerji Tüketimi Yönünden Karşılaştırılması. Doktora tezi, Selçuk Üniversitesi, Fen Bil. Enst. P, 119. Konya.
  • Zrenner, R., Schuler, K., Sonnewald, U., 1996. Soluble acid invertase determines the hexose-to-sucrose ratio in cold stored potato tubers. Planta, 198, 246-252.

Effect of Peppermint Oil and Clove Oil Application on Sprouting in Stored Potatoes

Yıl 2021, Sayı: 22, 357 - 363, 31.01.2021
https://doi.org/10.31590/ejosat.868812

Öz

In order to minimize potato losses, growing and harvesting periods are as important as the storage process of the potato. With this research, universa variety potatoes produced in Adana were used, potatoes were sprayed of two different concentrations of peppermint oil and clove oil and CIPC and control potatoes with no application were storaged over 5 months in cold storage room at temperature 10oC and relative humidity 90%. And 4 weeks intervals physical and chemical analyzes as ascorbic acid, invert sugar, total sugar, starch, loss of mass etc. were carried out to determine their contents. the total sugar amount between 521.636-355.144, invert sugar amount between 469.269-299.404, and % ash between 0.8-0.51 were detected. Although sprout started in the 3rd month in the control tubers and in the 5th month in the tubers with mint oil, it was not observed during the storage period in the clove oil and CIPC treated tubers. As a result, clove and mint oil can be used as an alternative to CIPC, it prevents spreading in universa type tubers, the sugar content of the tubers treated with 2/3 natural oil is lower than the tubers treated with 1/2 natural oil, also the color L values are considered, it was conducted that clove oil had a better effect than peppermint oil on the quality.

Kaynakça

  • Afek, U., J. Orenstein ve E., Nuriel. 2000. Using HPP (hydrogen peroxide plus) to inhibit potato sprouting during storage. American Journal of Potato Research 77:63-65.
  • Alma, M.H., Ertaş, M., Nitz, S., Kollmannsberger, H., 2007. Chemical Composition and Content of Essential Oil from The Bud of Cultivated Turkish Clove (Syzygium aromaticum L.), BioResources 2(2), 265-269.
  • Bailey, K.M., Phillips, D.J., Pitt, D., 1978, The role of buds and giberellin in dormancy and the mobilization of rezerve materials in potato tubers. Ann, Bott., 42:649-657.
  • Baydar, H., Altındal, D., Karadoğan, T., 2009. Patateste Sürgün Gelişimi Üzerine Uçucu Yağların Etkisi, Süleyman Demirel Üniversitesi, Fen Bilimleri Enstitüsü Dergisi, 13-2:137-141.
  • Benkeblia N., Alexopoulos A.A., Passam H.C., 2008. Physiological and biochemical regulation of dormancy and sprouting in potato tubers (Solanum tuberosum L.), Fruit, Vegetable and Cereal Science and Biotechnology (2), 54-68.
  • Bilişli A., Çevik İ., Şentürk A., 2002. Bazı patates çeşitlerinin derin dondurmaya elverişliliği üzerine araştırmalar, Gıda ve Yem Bilimi Teknolojisi (1). 12-18.
  • Çaylak, Ö., 2002. Patates Tarımı, Kartarım Tic. A.Ş., Ankara, 44-68.
  • Daniels-Lake, B., Olsen, N., Delgado, H.L., Zink, R., 2013. Efficacy of Potato Sprout Control Products to Minimize Sprout Production, Nappo Science and Technology Documents, (http://www.nappo.org/files/9714/3753/7437/Potato_sprout_inhibition_ ST_e.pdf), (Erişim:15.11.2016).
  • Dogras, C., Siomos, A., Psomakelis, C., 1991. Sugar and dry matter changes in potatoes overwintered in soil in Greece. Potato Research, 34 (2), 215-218.
  • Elbashir, H.A., Ahmed, A.H.R., Yousif, K.S., 2014. Efficacy of Different Aplications of Spearmint Oil on Storability and Processing Quality of Two Potato Varieties, Journal of Agri-Food and Applied Sciences, Vol. 2(5), pp. 124-133. (http://www.blue-ap.org/J/List/1/iss/volume% 202%20(2014)/issue%2005/1.pdf), (Erişim: 15.11.2016).
  • Finger, F.L., Sousa Santos, M.M., Araujo, F.F., Lima, P.C.C., Costa, L.C., França, C.F.M., Queiroz, M.C., 2018. Action of Essential Oils on Sprouting of Non-Dormant Potato Tubers, Brazilian Archives of Biology and Technology, v.61.
  • Frazier, M. J., Olsen, N., Kleinkopf, G., 2004. Organic and Alternative Methods for Potato Sprout Control in Storage, University of Idaho College of Agricultural and Life Sciences. (http://www.cals.uidaho.edu/edComm/pdf/cis/cis1120.pdf), (Erişim:15.11.2016).
  • Hagg, M., Hakkinen, U., Kumpulainen, J., Ahvenainen, R., ve Hurme, E., 1998. Effects of preparation procedures, packaging and storage on nutrient retention in peeled potatoes. J Food Sci Agric 77(4): 519-26.
  • Hartmans, K.J., Diepenhorst, P., Bakker, W., Gorris, L.G.M., 1995. The Use of Karvon in Agriculture:Sprout Suppression of Potatoes and Antifungal Activity Against Potato Tuber and Other Plant Diseases, Industrial Crops and Products, 4, 3- 13.
  • İlisulu, K., 1986. Nisasta ve Seker Bitkileri ve Islahı. Ankara Üniversitesi Ziraat Fakültesi Yayınları, 960, Ders Kitabı: 279, Ankara.
  • Kara, K., 2000. Bazı patates çeşitlerinin depolama sonrası kalite ve fizyolojik özelliklerinin incelenmesi. Tarla Bitkileri Merkez Araştırma Enstitüsü Dergisi (9): 1-2.
  • Karanisa, T., Akoumianakis, K., Alexopoulos, A., Karapanos, I., 2015. Effect of Proharvest Application of Carvone on Potato Tubers Grown From True Potato Seed (TPS), Procedia Environmental Sciences 29: 166-167.
  • Karbuz, F., Öztürk, İ., Savaş, D.O., 2009. Türkiye’de Üretilen Tarım Ürünleri ve Ekonomideki Yeri. İstanbul Ticaret Odası, 1-144, (http://www.ito.org.tr/Dokuman/Sektor/1-99.pdf), (Erişim: 10.11.2016).
  • Kaundal, B., Sharma, V., Raigond, P., Singh, B., Kaushik, SK., 2015. Ascorbic acid losses during storage of potato tubers. Potato J. 42 (1): 76-79.
  • Keijbets, M.J.H. ve Ebbenhorst-Seller, G., 1990. Loss of vitamin C (L- ascorbic acid) during long-term cold storage of Dutch table potatoes. Potato Res 33(1): 125-30.
  • Kerstholt, R.P.V., Ree, C.M., Moll, H.C., 1997. Environmental Life Cycle of Potato Sprout İnhibitors. Industrial Cops and Products 6, 187-194.
  • Kleinkopf, G., N. Oberg, N. Olsen., 2003. Sprout Inhibition in Storage: Current Status, New Chemistries and Natural Compounds. American Journal of Potato Research 80:317-327.
  • Matsuuro-Endo, C., Kobayashi, A., Noda, T., Takigawa, S., Yamauchi, H., Mori, M., 2004. Changes in sugar content and activity of vacuolar acid invertase during low-temperature storage of potato tubers from six Japanese cultivars. J. Plant Res., 117, 131-137.
  • Olsen, N., Frazier, M.J., Kleinkopf, G., Potato Sprout Suppression from Clove Oil, Uidaho University, (https://www.uidaho.edu/~/media/UIdaho-Responsive/Files/cals/Programs/Potatoes/Storage/potato-sprout-suppression-from-clove-oil.ashx), (Erişim: 02.12.2016).
  • Owolabi, M. S., Lajide, L., Oladimeji, M. O., Setzer, W.N., 2010. The Effect of Essential Oil Formulations for Potato Suprout Suppression, Natural Product Communication Vol. 5(4).
  • Paul, V., Ezekiel, R., Pandey, R., 2016. Sprout suppression on potato: need to look beyond CIPC for more effective and safer alternatives, J. Food Sci. Technol. 53(1): 1-18.
  • Rezaee, M., Almassi, M., Majdabahi, F.A., Minaei, S., Khodadahi, M., 2011. Potato sprout inhibition and tuber quality after post harvest treatment with gamma irradiation on different dates. J. Agr. Sci. Tech., 13, 829-842.
  • Richardson, D.L., Davies, H.V., Ross, H.S., Mackay, G.R., 1990. Invertase activity and its relation to hexose accumulation in potato tubers. J. Exp. Bo., 41 (222), 95-99.
  • Sharma, A., 2012. Essential Oil as Organic and Alternative Methods for Potato (Solanumtuberosum L.) Sprout Control in Storage, International Journal of Engineering and Mathematical Sciences, June 2012, Vol. 1, 34-39.
  • Song, X., Bandara, M., Tanino, K.K., 2008. Potato Dormancy Regulation: Use of Essential Oils for Sprout Suppression in Potato Storage, Fruit, Vegetable and Cereal Science and Biotechnology , Global Science Books, 1:110-117.
  • Şanlı, A., Karadoğan, T., Tonguç, M., Baydar, H., 2010. Effects of caraway (carum carvi l.) seed on sprouting of potato (solanum tuberosum l.) tubers under different temperature conditions, Turkish Journal Of Field Crops, 15 (1): 54-58.
  • Şanlı, A., Karadoğan, T., 2013. Kimyasal ve doğal sürgün gelişimi engelleyicileri ile depo sıcaklığının patates (Solanum tuberosum L.)’de cips kalitesi üzerine etkilerinin belirlenmesi, YYÜ Tar Bil Derg., 23(2): 172-184.
  • Wichrowska, D., Rogozinska, I., Pawelzik, E., 2008. Concentrations of Some Organic Acids in Potato Tubers Depending on Weed Control Method, Cultivar and Storage Conditions, Polish Journal Of Environmental Studies. Vol. 18, No.3, 487-491.
  • Yavuz, D., 2011. Patates Tarımında Farklı Sulama Yöntemlerinin Su Kullanımı, Verim ve Enerji Tüketimi Yönünden Karşılaştırılması. Doktora tezi, Selçuk Üniversitesi, Fen Bil. Enst. P, 119. Konya.
  • Zrenner, R., Schuler, K., Sonnewald, U., 1996. Soluble acid invertase determines the hexose-to-sucrose ratio in cold stored potato tubers. Planta, 198, 246-252.
Toplam 35 adet kaynakça vardır.

Ayrıntılar

Birincil Dil Türkçe
Konular Mühendislik
Bölüm Makaleler
Yazarlar

Elif Oktay 0000-0002-6336-0199

Nevzat Artık 0000-0001-5583-6719

Yayımlanma Tarihi 31 Ocak 2021
Yayımlandığı Sayı Yıl 2021 Sayı: 22

Kaynak Göster

APA Oktay, E., & Artık, N. (2021). Nane Yağı ve Karanfil Yağı Uygulamasının Depolanan Patateslerde Filizlenmeye Etkisi. Avrupa Bilim Ve Teknoloji Dergisi(22), 357-363. https://doi.org/10.31590/ejosat.868812