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Comparative analysis of biochemical and fatty acid composition and mineral matter contents of cultured rainbow trouts (Oncorhynchus mykiss) in different stations

Yıl 2022, Cilt: 11 Sayı: 2, 123 - 134, 11.11.2022

Öz

In the study, the biochemical and fatty acid composition and mineral content of rainbow trout reared at different stations were compared. For this purpose, in terms of nutritional composition, rainbow trouts obtained from the A station had the highest protein and fat ratio. The lowest protein ratio was determined in the D station, and the lowest oil ratio was determined in the C station. Although the fatty acid contents of the feeds used by the enterprises were different between them, they were almost close to each other. Meristic, stearic, palmitic, oleic, linoleic, linolenic, arachidonic, EPA and DHA were determined to be dominant in the fillet fatty acid compositions of the cultured rainbow trouts at all the stations. Although the n-3/n-6 ratio, IA, FLQ and h/H indexes in fish muscles were at desired nutritional quality values, the IT index was at undesirable nutritional quality values. It was determined that the mineral substance amounts of the feeds obtained from different stations were Ca>P>K>Na>Fe>Mg>Zn>Mn>Se. The mineral substance amounts of rainbow trout obtained from different stations were determined as K>P>Mg>Na>Ca>Zn>Zn>Fe>Se. The amount of mineral substances in the fish samples taken from all the stations was determined to be quite high. As a result, it was determined that the trout obtained from all stations had suitable nutritional criteria. All fish can be considered good sources of nutrients, fatty acids and minerals.

Kaynakça

  • Álvarez, A., Fontanillas, R., Hernández-Contreras, A., Hernández, M.D. 2020. Partial replacement of fish oil with vegetal oils in commercial diets: The effect on the quality of gilthead seabream (Sparus aurata). Animal Feed Science and Technology. 265, 114504
  • AOAC, 1995. Official methods of analysis (16th ed.). Washington, DC: Association of Official Analytical Chemists.
  • Bekhit, A.E.D.A., Morton, J.D., Dawson, C.O., Zhao, J.H., Lee, H.Y. 2009. Impact of maturity on the physicochemical and biochemical properties of chinook salmon roe. Food Chemistry. 117(2), 318- 325.
  • Bessonart, M., Izquierdo, M.S., Salhi, M., Hernandez, C.M., Gonzales, M.M., Palacios, H.F., 1999. Effect of dietary arachidonic acid levels on growth and survival of gilthead sea bream (Sparus aurata L.) larvae. Aquaculture. 179, 265-275. Doi:10.1016/S0044-8486(99)00164-7
  • Celik, M., Gökçe, M.A., Başusta, N., Küçükgülmez, A., Taşbozan, O., Tabakoğlu, Ş.S. 2008. Nutritional quality of ranbow trout (Oncorhynchus mykiss) caught from the Atatürk Dam Lake in Turkey. J Muscle Foods. 19. 50–61
  • Chen, D.W., Zhang, M. 2007. Non–volatile taste active compounds in the meat of Chinese mitten crab (Eriocheir sinensis), Food Chemistry. 104, 1200–1205.
  • Cieślik, I., Migdał, W., Topolska, K., Gambuś, F., Szczurowska, K., Cieślik, E. 2017. Changes in macro- and microelements in freshwater fish during food processing. Journal of Elementology. 22(2), 453-462. Doi: 10.5601/jelem.2016.21.1.1128
  • Halver, J., Hardy, W.R. 2002. Fish Nutrition.3th Edition, Academic Press, 417-23, USA.
  • Dagtekin, B.B.G., Misir, G.B., Kutlu, S., Basturk, O. 2017. Comparison of biochemical, fatty acids and lipid quality indexes of Prussian carp (Carassius gibelio) caught from Lake Çıldır on different seasons. Mediterranean Fisheries and Aquaculture Research. 1(1), 2-14.
  • Erkan, N., Özden, Ö. 2007. Proximate composition and mineral cotent in aqua cultured sea bass (Dicentrarchus labrax), sea bream (Sparus aurata) analyzed by ICP-MS. Food Chem. 102, 721–725.
  • Ersoy, B., Özeren, A. 2009. The effect of cooking methods on mineral and vitamin contents of African catfish. Food Chem. 115, 419–422.
  • Fernandes, C.E., De Silva Vasconcelos, M.A., De Almeida Ribeiro, M., Sarubbo, L.A., Andrade, S.A.C., De Molo Filho, A.B. 2014. Nutritional and lipid profiles in marine fish species from Brasil. Food Chem. 160, 67–71.
  • Ghaeni, M., Ghahfarokhi, K.N., Zaheri, L. 2013. Fatty acis profile, atherogenic (IA) mand Thrombogenic (IT) health lipid indices in Leiognathusbindus and Upeneussulphureus. J. Mar. Sci. Res. Dev. 3, 4.
  • Ghosh, A.K., Joshi, S.R. 2008. Disorders of calcium, phosphorus and magnesium metabolism. J. Assoc. Phys. India. 56, 613– 21.
  • Gills, H.S., Weatherley, A.H., 1984. Protein, lipid and caloric content of bluntnose minnow, Pimephales notatus Rafinesque, during growth at different temperatures. Journal of Fish Biology. 25(4), 491-500.
  • Gökoğlu, N., Yerlikaya, P., Cengiz, E. 2004. Effects of cooking methods on the proximate composition and mineral contents of rainbow trout (Oncorhynchus mykiss). Food Chem. 84, 19–22.
  • Grigorakis, K. 2007. Compositional and organoleptic quality of farmed and wild gilthead sea bream (Sparus aurata) and sea bass (Dicentrarchus labrax) and factors affecting it: a review. Aquaculture. 272, 55–75.
  • Haliloğlu, H.İ. 2001. Farklı işletmelerde yetiştirilen gökkuşağı alabalığı (Oncorhynchus mykiss)’nın kas ve adipoz dokuları ile karaciğer ve gonadlarındaki yağ asidi profillerinin belirlenmesi. Doktora Tezi, Atatürk Üniversitesi, Fen Bilimleri Enstitüsü, Su Ürünleri Anabilim Dalı, Erzurum.
  • Kocatepe, D., Erdem, M.E., Keskin, I., Köstekli, K., Kaya, Y. 2019. Differences on lipid quality index and amino acid profiles of European Anchovy caught from different area in Turkey. Ukrainian Journal of Food Science, 7(1), 6-15. Doi: 10.24263/2310-1008-2019-7-1-3
  • Krstić, M.P., Mitrović, R.R., Marković, R.V., Ivanović, J.S., Ćirković, M.A., Djordjević, V.Ž., Baltić, M.Ž., 2017. Fatty acid composition in the fillets of rainbow trout grown in different conditions. Eu. J. Lipid Sci. Technol. 119, 1-7. DOI: 10.1002/ejlt.201600082
  • NRC. 2011. National Research Council (US). Committee on the nutrient requirements of fish and shrimp. Washington, DC: National Academies Press.
  • Özden, Ö., Erkan, N. 2008. Comparison of biochemical composition of three aqua cultured fishes (Dicentrarchus labrax, Sparus aurata, Dentex dentex). Int J Food Sci Nutr. 59, 545–557. Doi:10.1080/09637480701400729
  • Özyurt, G., Polat, A., Loker, G.B. 2009. Vitamin and mineral content of pike perch (Sander lucioperca), common carp (Cyprinus carpio), and European catfish (Silurus glanis). Turk J Vet Anim Sci. 33(4), 351–356
  • Santos, J., Burkow, I.C., Jobling, M., 1993. Patterns of growth and lipid deposition in cod (Gadus morhua L.) fed natural prey and fish based feeds. Aquaculture. 110, 173-189.
  • Senso, L., Suarrez, M.D., Ruiz-Cara, T., Garcira-Gallego, M. 2007. On the possible effects of harvesting season and chilled storage on the fatty acid profile of the fillet of farmed gilthead sea bream (Sparus aurata). Food Chemistry. 101, 298-307. Doi: 10.1016/j.foodchem.2006.01.036.
  • Siemianowska, E., Barszcz, A.A., Skibniewska, K.A., Markowska, A., Polak-Juszczak, L., Zakrzewski, J., Woźniak, M., Szarek, J., Dzwolak, W. 2016. Mineral content of muscle tissue of rainbow trout (Oncorhynchus mykiss Walbaum). J Elem. 1(3), 833-845. Doi:10.5601/jelem.2015.20.4.1004
  • Tacon, A.G.J., Metian, M. 2013. Fish matters: importance of aquatic foods in human nutrition and global food supply. Rev Fish Sci. 21, 22–38. Doi:10.1080/10641262.2012.753405
  • Turan, H., Kaya, Y., Sönmez, G. 2006. Balık etinin besin değeri ve insan sağlığındaki yeri. E.U. J Fish Aquat Sci. 23(1/3), 505–508.
  • URL 2. 2016. http://www.heart.org/HEARTORG/HealthyLivin g/HealthyEating/ Healthy Diet Goals/Fish-and- Omega-3-Fatty Acids_UCM_303248_Article.jsp#.Wjtw499l- M8, (19.12.2017). In: Dagtekin, B.B.G., Misir, G.B., Kutlu, S., Basturk, O. 2017. Mediterranean Fisheries and Aquaculture Research 1(1), 2-14.
  • Yılmaz, Ö., 1995. Elazığ Hazar Gölü’nde yaşayan Capoeta capoeta umbla (Heckel, 1843)’nın total yağ asidi miktarı ve yağ asitleri cinslerinin mevsimlere göre değişimi. Doktora Tezi, Fırat Üniversitesi, Fen Bilimleri Enstitüsü, Biyoloji Anabilim Dalı, Elazığ.
  • Yu, J., Li, S., Chang, J., Niu, H., Hu, Z., Han, Y. 2018. Effect of variation in the dietary ratio of linseed oil to fish oil on growth, body composition, tissues fatty acid composition, flesh nutritional value and immune indices in Manchurian trout, Brachymystax lenok. Aquaculture Nutrition, 1–11. Doi: 10.1111/anu.12863.
  • Woloszyn, J., Haraf, G., Okruszek, A., Wereńska, M., Goluch, Z., Teleszko, M. 2020. Fatty acid profiles and health lipid indices in the breast muscles of local Polish goose varieties. Poultry Science, 99, 1216–1224. Doi:10.1016/j.psj.2019.10.026

Comparative Analysis of Proximate and Fatty Acid Composition and Mineral Matter Contents of Cultured Rainbow Trouts (Oncorhynchus Mykiss) in Different Farms

Yıl 2022, Cilt: 11 Sayı: 2, 123 - 134, 11.11.2022

Öz

Çalışmada, farklı istasyonlarda yetiştirilen gökkuşağı alabalığının biyokimyasal ve yağ asidi bileşimi ve mineral içeriği karşılaştırılmıştır. Bu amaçla besin kompozisyonu açısından A istasyonundan elde edilen gökkuşağı alabalıkları en yüksek protein ve yağ oranına sahiptir. En düşük protein oranı D istasyonunda, en düşük yağ oranı ise C istasyonunda belirlendi. İşletmelerin kullandıkları yemlerin yağ asidi içerikleri kendi aralarında farklılık gösterse de neredeyse birbirine yakındı. Tüm istasyonlarda kültürü yapılan gökkuşağı alabalıklarının fileto yağ asidi kompozisyonlarında meristik, stearik, palmitik, oleik, linoleik, linolenik, araşidonik, EPA ve DHA'nın baskın olduğu belirlendi. Balık kaslarında n-3/n-6 oranı, IA, FLQ ve h/H indeksleri istenilen besinsel kalite değerlerinde olmasına rağmen IT indeksi istenmeyen besinsel kalite değerlerindeydi. Farklı istasyonlardan alınan yemlerin mineral madde miktarlarının Ca>P>K>Na>Fe>Mg>Zn>Mn>Se olduğu belirlendi. Farklı istasyonlardan elde edilen gökkuşağı alabalığının mineral madde miktarları K>P>Mg>Na>Ca>Zn>Zn>Fe>Se olarak belirlenmiştir. Tüm istasyonlardan alınan balık örneklerinde mineral madde miktarlarının oldukça yüksek olduğu belirlendi. Sonuç olarak tüm istasyonlardan elde edilen alabalıkların uygun beslenme kriterlerine sahip olduğu belirlenmiştir. Tüm balıklar iyi besin, yağ asitleri ve mineral kaynakları olarak kabul edilebilir.

Kaynakça

  • Álvarez, A., Fontanillas, R., Hernández-Contreras, A., Hernández, M.D. 2020. Partial replacement of fish oil with vegetal oils in commercial diets: The effect on the quality of gilthead seabream (Sparus aurata). Animal Feed Science and Technology. 265, 114504
  • AOAC, 1995. Official methods of analysis (16th ed.). Washington, DC: Association of Official Analytical Chemists.
  • Bekhit, A.E.D.A., Morton, J.D., Dawson, C.O., Zhao, J.H., Lee, H.Y. 2009. Impact of maturity on the physicochemical and biochemical properties of chinook salmon roe. Food Chemistry. 117(2), 318- 325.
  • Bessonart, M., Izquierdo, M.S., Salhi, M., Hernandez, C.M., Gonzales, M.M., Palacios, H.F., 1999. Effect of dietary arachidonic acid levels on growth and survival of gilthead sea bream (Sparus aurata L.) larvae. Aquaculture. 179, 265-275. Doi:10.1016/S0044-8486(99)00164-7
  • Celik, M., Gökçe, M.A., Başusta, N., Küçükgülmez, A., Taşbozan, O., Tabakoğlu, Ş.S. 2008. Nutritional quality of ranbow trout (Oncorhynchus mykiss) caught from the Atatürk Dam Lake in Turkey. J Muscle Foods. 19. 50–61
  • Chen, D.W., Zhang, M. 2007. Non–volatile taste active compounds in the meat of Chinese mitten crab (Eriocheir sinensis), Food Chemistry. 104, 1200–1205.
  • Cieślik, I., Migdał, W., Topolska, K., Gambuś, F., Szczurowska, K., Cieślik, E. 2017. Changes in macro- and microelements in freshwater fish during food processing. Journal of Elementology. 22(2), 453-462. Doi: 10.5601/jelem.2016.21.1.1128
  • Halver, J., Hardy, W.R. 2002. Fish Nutrition.3th Edition, Academic Press, 417-23, USA.
  • Dagtekin, B.B.G., Misir, G.B., Kutlu, S., Basturk, O. 2017. Comparison of biochemical, fatty acids and lipid quality indexes of Prussian carp (Carassius gibelio) caught from Lake Çıldır on different seasons. Mediterranean Fisheries and Aquaculture Research. 1(1), 2-14.
  • Erkan, N., Özden, Ö. 2007. Proximate composition and mineral cotent in aqua cultured sea bass (Dicentrarchus labrax), sea bream (Sparus aurata) analyzed by ICP-MS. Food Chem. 102, 721–725.
  • Ersoy, B., Özeren, A. 2009. The effect of cooking methods on mineral and vitamin contents of African catfish. Food Chem. 115, 419–422.
  • Fernandes, C.E., De Silva Vasconcelos, M.A., De Almeida Ribeiro, M., Sarubbo, L.A., Andrade, S.A.C., De Molo Filho, A.B. 2014. Nutritional and lipid profiles in marine fish species from Brasil. Food Chem. 160, 67–71.
  • Ghaeni, M., Ghahfarokhi, K.N., Zaheri, L. 2013. Fatty acis profile, atherogenic (IA) mand Thrombogenic (IT) health lipid indices in Leiognathusbindus and Upeneussulphureus. J. Mar. Sci. Res. Dev. 3, 4.
  • Ghosh, A.K., Joshi, S.R. 2008. Disorders of calcium, phosphorus and magnesium metabolism. J. Assoc. Phys. India. 56, 613– 21.
  • Gills, H.S., Weatherley, A.H., 1984. Protein, lipid and caloric content of bluntnose minnow, Pimephales notatus Rafinesque, during growth at different temperatures. Journal of Fish Biology. 25(4), 491-500.
  • Gökoğlu, N., Yerlikaya, P., Cengiz, E. 2004. Effects of cooking methods on the proximate composition and mineral contents of rainbow trout (Oncorhynchus mykiss). Food Chem. 84, 19–22.
  • Grigorakis, K. 2007. Compositional and organoleptic quality of farmed and wild gilthead sea bream (Sparus aurata) and sea bass (Dicentrarchus labrax) and factors affecting it: a review. Aquaculture. 272, 55–75.
  • Haliloğlu, H.İ. 2001. Farklı işletmelerde yetiştirilen gökkuşağı alabalığı (Oncorhynchus mykiss)’nın kas ve adipoz dokuları ile karaciğer ve gonadlarındaki yağ asidi profillerinin belirlenmesi. Doktora Tezi, Atatürk Üniversitesi, Fen Bilimleri Enstitüsü, Su Ürünleri Anabilim Dalı, Erzurum.
  • Kocatepe, D., Erdem, M.E., Keskin, I., Köstekli, K., Kaya, Y. 2019. Differences on lipid quality index and amino acid profiles of European Anchovy caught from different area in Turkey. Ukrainian Journal of Food Science, 7(1), 6-15. Doi: 10.24263/2310-1008-2019-7-1-3
  • Krstić, M.P., Mitrović, R.R., Marković, R.V., Ivanović, J.S., Ćirković, M.A., Djordjević, V.Ž., Baltić, M.Ž., 2017. Fatty acid composition in the fillets of rainbow trout grown in different conditions. Eu. J. Lipid Sci. Technol. 119, 1-7. DOI: 10.1002/ejlt.201600082
  • NRC. 2011. National Research Council (US). Committee on the nutrient requirements of fish and shrimp. Washington, DC: National Academies Press.
  • Özden, Ö., Erkan, N. 2008. Comparison of biochemical composition of three aqua cultured fishes (Dicentrarchus labrax, Sparus aurata, Dentex dentex). Int J Food Sci Nutr. 59, 545–557. Doi:10.1080/09637480701400729
  • Özyurt, G., Polat, A., Loker, G.B. 2009. Vitamin and mineral content of pike perch (Sander lucioperca), common carp (Cyprinus carpio), and European catfish (Silurus glanis). Turk J Vet Anim Sci. 33(4), 351–356
  • Santos, J., Burkow, I.C., Jobling, M., 1993. Patterns of growth and lipid deposition in cod (Gadus morhua L.) fed natural prey and fish based feeds. Aquaculture. 110, 173-189.
  • Senso, L., Suarrez, M.D., Ruiz-Cara, T., Garcira-Gallego, M. 2007. On the possible effects of harvesting season and chilled storage on the fatty acid profile of the fillet of farmed gilthead sea bream (Sparus aurata). Food Chemistry. 101, 298-307. Doi: 10.1016/j.foodchem.2006.01.036.
  • Siemianowska, E., Barszcz, A.A., Skibniewska, K.A., Markowska, A., Polak-Juszczak, L., Zakrzewski, J., Woźniak, M., Szarek, J., Dzwolak, W. 2016. Mineral content of muscle tissue of rainbow trout (Oncorhynchus mykiss Walbaum). J Elem. 1(3), 833-845. Doi:10.5601/jelem.2015.20.4.1004
  • Tacon, A.G.J., Metian, M. 2013. Fish matters: importance of aquatic foods in human nutrition and global food supply. Rev Fish Sci. 21, 22–38. Doi:10.1080/10641262.2012.753405
  • Turan, H., Kaya, Y., Sönmez, G. 2006. Balık etinin besin değeri ve insan sağlığındaki yeri. E.U. J Fish Aquat Sci. 23(1/3), 505–508.
  • URL 2. 2016. http://www.heart.org/HEARTORG/HealthyLivin g/HealthyEating/ Healthy Diet Goals/Fish-and- Omega-3-Fatty Acids_UCM_303248_Article.jsp#.Wjtw499l- M8, (19.12.2017). In: Dagtekin, B.B.G., Misir, G.B., Kutlu, S., Basturk, O. 2017. Mediterranean Fisheries and Aquaculture Research 1(1), 2-14.
  • Yılmaz, Ö., 1995. Elazığ Hazar Gölü’nde yaşayan Capoeta capoeta umbla (Heckel, 1843)’nın total yağ asidi miktarı ve yağ asitleri cinslerinin mevsimlere göre değişimi. Doktora Tezi, Fırat Üniversitesi, Fen Bilimleri Enstitüsü, Biyoloji Anabilim Dalı, Elazığ.
  • Yu, J., Li, S., Chang, J., Niu, H., Hu, Z., Han, Y. 2018. Effect of variation in the dietary ratio of linseed oil to fish oil on growth, body composition, tissues fatty acid composition, flesh nutritional value and immune indices in Manchurian trout, Brachymystax lenok. Aquaculture Nutrition, 1–11. Doi: 10.1111/anu.12863.
  • Woloszyn, J., Haraf, G., Okruszek, A., Wereńska, M., Goluch, Z., Teleszko, M. 2020. Fatty acid profiles and health lipid indices in the breast muscles of local Polish goose varieties. Poultry Science, 99, 1216–1224. Doi:10.1016/j.psj.2019.10.026
Toplam 32 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Bölüm Araştırma Makaleleri
Yazarlar

Seval Dernekbaşı 0000-0001-5735-2486

Emin Karataş 0000-0002-7483-6543

İsmihan Karayücel

Erken Görünüm Tarihi 31 Ekim 2022
Yayımlanma Tarihi 11 Kasım 2022
Yayımlandığı Sayı Yıl 2022 Cilt: 11 Sayı: 2

Kaynak Göster

APA Dernekbaşı, S., Karataş, E., & Karayücel, İ. (2022). Comparative analysis of biochemical and fatty acid composition and mineral matter contents of cultured rainbow trouts (Oncorhynchus mykiss) in different stations. Gaziosmanpaşa Bilimsel Araştırma Dergisi, 11(2), 123-134.
AMA Dernekbaşı S, Karataş E, Karayücel İ. Comparative analysis of biochemical and fatty acid composition and mineral matter contents of cultured rainbow trouts (Oncorhynchus mykiss) in different stations. GBAD. Kasım 2022;11(2):123-134.
Chicago Dernekbaşı, Seval, Emin Karataş, ve İsmihan Karayücel. “Comparative Analysis of Biochemical and Fatty Acid Composition and Mineral Matter Contents of Cultured Rainbow Trouts (Oncorhynchus Mykiss) in Different Stations”. Gaziosmanpaşa Bilimsel Araştırma Dergisi 11, sy. 2 (Kasım 2022): 123-34.
EndNote Dernekbaşı S, Karataş E, Karayücel İ (01 Kasım 2022) Comparative analysis of biochemical and fatty acid composition and mineral matter contents of cultured rainbow trouts (Oncorhynchus mykiss) in different stations. Gaziosmanpaşa Bilimsel Araştırma Dergisi 11 2 123–134.
IEEE S. Dernekbaşı, E. Karataş, ve İ. Karayücel, “Comparative analysis of biochemical and fatty acid composition and mineral matter contents of cultured rainbow trouts (Oncorhynchus mykiss) in different stations”, GBAD, c. 11, sy. 2, ss. 123–134, 2022.
ISNAD Dernekbaşı, Seval vd. “Comparative Analysis of Biochemical and Fatty Acid Composition and Mineral Matter Contents of Cultured Rainbow Trouts (Oncorhynchus Mykiss) in Different Stations”. Gaziosmanpaşa Bilimsel Araştırma Dergisi 11/2 (Kasım 2022), 123-134.
JAMA Dernekbaşı S, Karataş E, Karayücel İ. Comparative analysis of biochemical and fatty acid composition and mineral matter contents of cultured rainbow trouts (Oncorhynchus mykiss) in different stations. GBAD. 2022;11:123–134.
MLA Dernekbaşı, Seval vd. “Comparative Analysis of Biochemical and Fatty Acid Composition and Mineral Matter Contents of Cultured Rainbow Trouts (Oncorhynchus Mykiss) in Different Stations”. Gaziosmanpaşa Bilimsel Araştırma Dergisi, c. 11, sy. 2, 2022, ss. 123-34.
Vancouver Dernekbaşı S, Karataş E, Karayücel İ. Comparative analysis of biochemical and fatty acid composition and mineral matter contents of cultured rainbow trouts (Oncorhynchus mykiss) in different stations. GBAD. 2022;11(2):123-34.