Yeme Öğütülmüş Rezene Tohumu İlavesinin Bıldırcınlarda Bazı Kan ve Karaciğer Parametreleri Üzerine Etkileri


Özet Görüntüleme: 719 / PDF İndirme: 348

Yazarlar

  • Filiz KAZAK Biyokimya Anabilim Dalı, Veteriner Fakültesi, Hatay Mustafa Kemal Üniversitesi
  • Tülay ÇİMRİN Zootekni Bölümü, Ziraat Fakültesi, Hatay Mustafa Kemal Üniversitesi
  • Sema ALAŞAHAN Zootekni Anabilim Dalı, Veteriner Fakültesi, Hatay Mustafa Kemal Üniversitesi

DOI:

https://doi.org/10.46291/ISPECJASvol4iss4pp1035-1050

Anahtar Kelimeler:

Antioksidan, kolesterol, lipoprotein, malondialdehit, vitamin C

Özet

Bu çalışma, bıldırcın rasyonlarına öğütülmüş rezene tohumu ilavesinin bazı kan parametreleri ve karaciğer oksidan-antioksidan parametreleri üzerine etkilerini belirlemek amacıyla yapılmıştır. Çalışmada 32 adet (16 adet erkek+16 adet dişi) japon bıldırcını kullanıldı. Her bir grupta 8 hayvan olacak şekilde, katkı içermeyen bazal yemle beslenen kontrol erkek, kontrol dişi ve bazal yeme %1 öğütülmüş rezene tohumu ilavesi ile beslenen rezene erkek, rezene dişi olmak üzere dört grup oluşturuldu ve 28 gün beslendi. Rasyona % 1 öğütülmüş rezene tohumu ilavesinin, karaciğer MDA düzeyini ve GPx aktivitesini azalttığı ve Vit C düzeylerini ise arttırdığı (P<0.05) belirlendi. Karaciğer GSH ve Vit C düzeyleri rezene erkek grubunda kontrol erkek grubuna kıyasla yüksek bulundu (P<0.05). Rezene dişi grubu karaciğer GPx aktivitesi, kontrol dişi grubuna kıyasla düşük belirlendi (P<0.001). Yeme rezene ilavesinin, serum CHOL, LDL, HDL düzeyleri, AST ve ALT aktiviteleri üzerine bir etkisi bulunmadı (P>0.05). Çalışma, bıldırcın rasyonlarına % 1 öğütülmüş rezene tohumu ilavesinin serum total kolesterol, LDL, HDL düzeyleri, AST ve ALT aktivitelerini değiştirmeksizin, karaciğer oksidan-antioksidan dengeyi etkileyebileceğini göstermiştir. Ayrıca bıldırcınlarda serum ve karaciğer değerlerinin cinsiyete bağlı olarak farklı olabileceği de bu tarz çalışmalarda göz önüne alınmalıdır.

Referanslar

Aebi, H. 1984. Catalase in vitro assay methods. Methods Enzymol 105: 121-126.

Alam, P., Abdel-Kader, M.S, Alqarni, MH., Zaatout, HH., Ahamad, SR., Shakeel, F. 2019. Chemical composition of fennel seed extract and determination of fenchone in commercial formulations by GC–MS method. J Food Sci Technol. 56(5): 2395–2403.

Al-Amoudi, WM. 2016. Protective effects of fennel oil extract against sodium valproate-induced hepatorenal damage in albino rats. Saudi Journal of Biological Sciences. 24(4): 915-924.

Al-Sagan, A.A., Khalil, Hussein EOS., Attia, YA. 2020. Effects of fennel seed powder supplementation on growth performance, carcass characteristics, meat quality, and economic efficiency of broilers under thermoneutral and chronic heat stress conditions. Animals (Basel),10(2):206.

Badgujar, SB., Patel, VV., Bandivdekar, AH. 2014. Foeniculum vulgare Mill: a review of its botany, phytochemistry, pharmacology, contemporary application, and toxicology. Biomed Res Int. 842674.

Belenli, D., Udum, D., Cengiz, S.Ş., Polat, Ü. 2015. Influence of various volatile oils as a dietary supplement on biochemical and performance parameters in broilers. Journal of Biodiversity and Environmental Sciences, 9:47-55.

Beutler E. 1971. Red cell metabolism manual of biochemical methods. London: Academic Press, 68-70.

Beutler E. 1975. Red cell metabolism. In: A Manual of Biochemical Methods. New York: Grune Strottan, 67-69.

Bugdaycı, K.E., Oğuz, F.K., Oğuz, MN., Kuter, E. 2018. Effects of fennel seed supplementation of ration on performance, egg quality, serum cholesterol, and total phenol content of egg yolk of laying quails. R. Bras. Zootec. 47:e20170160.

Cengiz, ŞŞ. 2018. Effects of rosemary and fennel essential oil mix on performance and meat lipid oxidation in quails. Van Vet J, 29(1):39-46.

Choi, E.M, Hwang, JK. 2004. Antiinflammatory, analgesic and antioxidant activities of the fruit of Foeniculum vulgare. Fitoterapia, 75:557-565.

El-Deek, AA., Attia, YA., Hannfy, MM. 2002. Effect of anise (Pimpinella anisum), ginger (Zingiber officinale roscoe) and fennel (Foeniculum vulgare) and their mixture on performance of broilers. Arch. Geflugelk, 67(2):92-96.

Ellman, G. 1959. Tissue sulphydryl groups. Arch Biochem Biophys, 82: 70-77.

Faudale, M., Viladomat, F., Bastida, J., Poli, F., Codina, C. 2008. Antioxidant activity and phenolic composition of wild, edible, and medicinal fennel from different Mediterranean countries. J Agric Food Chem. 56(6):1912-20.

Gharaghani, H., Shariatmadari, F., Torshizi, M.A. 2015. Effect of fennel (Foeniculum vulgare Mill.) used as a feed additive on the egg quality of laying hens under heat stress. Rev. Bras. Ciênc. Avícola. 17:199-207.

Gulfraz, M., Mehmood, S., Minhas, N., Jabeen, N., Kausar, R., Jabeen, K., Arshad, G. 2008. Composition and antimicrobial properties of essential oil of Foeniculum vulgare. African Journal Biotech, 7(24):4364-4368.

Haag, W. 1985. Zur methodik und praktischen Bedeutung der Vitamin C - Best immung be im Rind in Vergangenheit und Gegenwart. Inaugural Dissertation. Justus Liebig Universitaet, Giessen.

Kaya, A., Kaya, H., Macit, M., Çelebi, Ş., Esenbuğa, N., Yörük, MA., Karaoğlu, M. 2013. Effects of dietary inclution of plant mixture and copper into layer diets on egg yield and quality, yolk cholesterol and fatty acid composition. Kafkas Univ Vet Fak Derg. 19: 673-679.

Kaya, İ., İncekara, N., Nemli, Y. 2004. Ege Bölgesi’nde sebze olarak tüketilen yabani kuşkonmaz, sirken, yabani hindiba, rezene, gelincik, çoban değneği ve ebegümecinin bazı kimyasal analizleri. Yüzüncü Yıl Üniversitesi, Ziraat Fakültesi, Tarım Bilimleri Dergisi, 14(1):1-6.

Koppula, S., Kumar, H. 2013. Foeniculum vulgare Mill (Umbelliferae) attenuates stress and improves memory in Wister rats. Trop. J. Pharm. Res.12:553–558.

Kunzemann, J., Herrmann, K. 1977. Isolation and identification of flavon(ol)-O-glycosides in caraway (Carum carvi L.), fennel (Foeniculum vulgare Mill.), anise (Pimpinella anisum L.), and coriander (Coriandrum sativum L.), and of flavon-C-glycosides in anise. I. Phenolics of spices. Z Lebensm Unters Forsch.164(3):194-200.

Lowry, OH., Rosebrough, NJ., Farr, AL., Randall. RJ. 1951. Protein measurement with pholin phenol reagent. J Biol Chem. 193: 265-275.

Mahmud, HA. 2014. Response of growing Japanese quail to different levels of fennel seeds meal. Egyptian Poultry Science Journal. 34:795-807.

Nichita, G., Sarandan, H., Padeanu, O., Cocean, V. 1984. Extracted seeds of fennel in animal feeding. Nutrition Abstracts and Reviews ser B. 54:46-52.

Ohkawa, H., Ohishi, N., Yagi, K. 1979. Assay for lipit peroxides in animal tissues by thiobarbituric acid reaction. Anal Biochem. 95: 351-358.

Oktay, M., Gülçin, I. 2003. Küfrevioglu I. Determination of in vitro antioxidant activity of fennel (Foeniculum vulgare) seed extracts. LWT-Food Science and Technology. 36:263-271.

Ozbek, H., Uğraş, S., Dülger, H., Bayram, I., Tuncer, I., Oztürk, G., Oztürk A. 2003. Hepatoprotective effect of Foeniculum vulgare essential oil. Fitoterapia. 74(3):317-9.

Paglia, D.E., Valentine, WN. 1967. Studies on the quantitative and qualitative characterization of erythrocyte glutathione peroxidase. J Lab Clin Med. (1):158-69.

Parejo, I., Jauregui, O., Sánchez-Rabaneda, F., Viladomat, F., Bastida, J., Codina, C. 2004. Separation and Characterization of Phenolic Compounds in Fennel (Foeniculum vulgare) Using Liquid Chromatography−Negative Electrospray Ionization Tandem Mass Spectrometry. J. Agric. Food Chem. 52(12):3679-3687.

Rather, M.A., Dar, BA., Sofi, SN., Bhat, BA., Qurishi, MA. 2016. Foeniculum vulgare mill: A comprehensive review of its traditional use, phytochemistry, pharmacology, and safety. Arab. J. Chem.9:1574–1583.

Roby, M.H.H., Sarhan, M.A., Selim, KA., Khalel, KI. 2013. Antioxidant and antimicrobial activities of essential oil and extracts of fennel (Foeniculum vulgare L.) and chamomile (Matricaria chamomilla L.). Industrial Crops and Products, 44:437-445.

Sakr, S.A., Shalaby, S.Y., Beder, R.H. 2017. Ameliorative effect of fennel oil on cyclophosphamide ınduced hepatotoxicity in albino Rats. BJPR. 17(2):1-12.

Scalbert, A., Manach, C., Morand, C., Rémésy, C., Jiménez, L. 2005. Dietary polyphenols and the prevention of diseases. Crit Rev Food Sci Nutr. 45(4):287-306.

Shahat, A.A., Ibrahim, A.Y., Hendawy, S.F., Omer, E.A., Hammouda, FM., Abdel Rahman, F.H., Saleh, M.A. 2011. Chemical composition, antimicrobial and antioxidant activities of essential oils from organically cultivated fennel cultivars. Molecules, 16:1366-1377.

Sheweita, S.A., El-Hosseiny, L.S, Nashashibi, M.A. 2016. Protective effects of essential oils as natural antioxidants against hepatotoxicity induced by cyclophosphamide in mice. PLoS ONE. 11(11):e0165667.

Wood, J.D., Enser, M. 1997. Factors influencing fatty acids in meat and the role of antioxidants in improving meat quality. British Journal of Nutrition. 78(1):549-560.

Xue, G., Liu, Q., Han, Y., Wei, H., Dong, T. 2006. Determination of thirteen metal elements in the plant Foeniculum vulgare Mill. by flame atomic absorption spectrophotometry. Guang Pu Xue Yu Guang Pu Fen Xi. 26(10):1935-8.

Zoubiri, S., Baaliouamer, A., Seba, N., Chamouni, N. 2014. Chemical composition and larvicidal activity of Algerian Foeniculum vulgare seed essential oil. Arab J Chem. 7:480-485.

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Yayınlanmış

2020-12-04

Nasıl Atıf Yapılır

Filiz KAZAK, Tülay ÇİMRİN, & Sema ALAŞAHAN. (2020). Yeme Öğütülmüş Rezene Tohumu İlavesinin Bıldırcınlarda Bazı Kan ve Karaciğer Parametreleri Üzerine Etkileri. ISPEC Tarım Bilimleri Dergisi, 4(4), 1037–1052. https://doi.org/10.46291/ISPECJASvol4iss4pp1035-1050

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