Investigation of The Microbiological Quality of Sea Breeding (Sparus aurata) and Sea Bass (Dicentrarchus labrax) Fishes in Afyonkarahisar Province
Year 2019,
Volume: 12 Issue: 2, 150 - 157, 30.06.2019
Şebnem Pamuk
,
Yağmur Nil Demirel
,
Zeki Gürler
Abstract
The aim of this study
is to determine the microbiological quality levels of fish (Sparus
aurata and Dicentrarchus labrax)
sold in fishermen in Afyonkarahisar.
In this study, 82 fish samples randomly selected and purchased from 14
different retail points were microbiologically analyzed. According to
this; the microorganism
ranges isolated from 43 Sparus aurata
and 39 Dicentrarchus labrax were;
5.0-7.88/4.90-7.34 log10 mL-1 TVBC; 3.30-7.17/ 3.90-7.54 log10 mL-1
psychrophilic microorganism; 1.30-5.89/ 1.30-4.53 log10 mL-1
staphylococcus / micrococcus, only in Sparus aurata 2.30-4.14 log10 mL-1S. aureus; 1.30-6.49/1.30-6.11 log10 m-1 lactic acid
bacteria (LAB); 1.30-6.55/ 1.30-7.14 log10 mL-1 enterobacteria,
1.30-6.62/1.30-6.60 log10 mL-1 total coliform and
1.30-4.30/1.30-4.47 log10 mL-1 levels E. coli and 1.2% of the samples (from Sparus aurata) Salmonella spp., were identified respectively.
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Afyonkarahisar İli’nde Satışa Sunulan Çupra (Sparus aurata) ve Levrek (Dicentrarchus labrax) Balıklarının Mikrobiyolojik Kalitelerinin Araştırılması
Year 2019,
Volume: 12 Issue: 2, 150 - 157, 30.06.2019
Şebnem Pamuk
,
Yağmur Nil Demirel
,
Zeki Gürler
Abstract
Bu çalışmanın amacı,
Afyonkarahisar’da balıkçılarda satışa sunulan balıkların (çupra ve levrek)
mikrobiyolojik kalite düzeylerinin belirlenmesidir. Çalışmada, 14 farklı balıkçıdan rastgele seçilen 82 adet
(43 çupra, 39 levrek) balık satın alınarak, mikrobiyolojik analizleri
yapılmıştır. Buna göre; çupra ve levrek
balıklarından izole edilen mikroorganizma aralıkları sırasıyla; 5.0-7.88/4.90-7.34 log10 mL-1 AMGC; 3.30-7.17/3.90-7.54 log10 mL-1
psikrofil mikroorganizma; 1.30-5.89/1.30-4.53 log10 mL-1
stafilokok/mikrokok; sadece çupra
balığında 2.30-4.14 log10 mL-1S. aureus ; 1.30-6.49/1.30-6.11 log10 mL-1
laktik asit bakterisi (LAB); 1.30-6.55/1.30-7.14
log10 mL-1 enterobakteri,
1.30-6.62/1.30-6.60 log10 mL-1 total koliform ve 1.30-4.30/1.30-4.47 log10
mL-1 düzeylerinde
E. coli izole edilmiştir. Örneklerin %1.2’sinden (çupra balığı) Salmonella
spp. identifiye edilmiştir.
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- Alak G, Hisar SA, Hisar O, Kaban G, Kaya M. Microbiological and chemical properties of bonito fish (Sarda sarda) fillets packaged with chitosan film, modified atmosphere and vacuum. Kafkas Universitesi Veteriner Fakültesi Dergisi. 2010; 16: 73-80.
- Alparslan Y, Metin C, Hasanhocaoğlu Yapıcı H, Baygar T. Köyceğiz lagününde avlanan kefal türlerinin duyusal, kimyasal ve mikrobiyolojik kalitesinin belirlenmesi. Journal of Aquaculture Engineering and Fisheries Research. 2017; 3(4): 160-170.
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- Anon. Türk Gıda Kodeksi Mikrobiyolojik Kriterler Yönetmeliği, http://www.resmigazete.gov.tr/eskiler/2011/12/20111229m3-6.htm. 2011; Ankara.
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- Ayulo AMR, Machado RA, Scussel VM. Enterotoxigenic Escherichia coli and Staphylococcus aureus in fish and seafood from the southern region of Brazil. International Journal of Food Microbiology. 1994; 24(1-2): 171-178.
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- Boulares M, Mejri L, Hassouna M. Study of the microbial ecology of wild and aquacultured Tunisian fresh fish. Journal of Food Protection. 2011; 74(10): 1762-1768.
- Boulares M, Mankai M, Aoudhi C, Moussa Olfa B, Hassouna M. Characterisation and identification of spoilage psychotrophic Gram-negative bacteria originating from Tunisian fresh fish. Annual of Microbiology. 2013; 63: 733-744.
- Budiati T, Rusul G, Wan-Abdulla WN, Ahmad R, Mat Arip Y. Microbiological Quality of Catfish (Clarias Gariepinus) and Tilapia (Tilapia Mossambica) Obtained from Wet Markets and Ponds in Malaysia. Aquaculture Research and Development. 2015; 6: 1.
- Buras N, Duek L, Niv S, Hepher B, Sandbank E. Microbiological aspects of fish grown in treated wastewater. Water Research. 1987; 21(1): 1-10.
- Cardinal M, Gunnlaugsdottir H, Bjoernevik M, Ouisse A, Vallet JL. Sensory characteristics of cold-smoked Atlantic salmon (Salmo salar) from European market and relationships with chemical, physical and microbiological measurements. Food Research International. 2004; 37: 181-193.
- Chytiri S, Chouliara I, Savvaidis IN, Kontominas MG. Microbiological, chemical and sensory assessment of iced whole and filleted aquacultured rainbow trout. Food Microbiology. 2004; 21: 157-165.
- Cousin MA, Jay JM, Vasavada PC. Psychrotrophic microorganisms, In: Downes FP., Ito K. (Eds.), Compendium of methods fort he microbiological examination of foods, 4th ed. American Public Health Association, Washington, D.C. 2001; 159-166.
- De Boer E. Update on media for isolation of enterobacteriaceae from foods. International Journal of Food Microbiology. 1998; 45(1): 43-53.
- Del Rio-Rodriguez, Inglis V, Millar SD. Survival of Escherichia coli in the intestine of fish. Aquaculture Research. ]997; 28: 257-264.
- Diercke M, Kirchner M, Claussen K, Mayr E. Transmission of shiga toxin-producing Escherichia coli O104:H4 at a family party possibly due to contamination by a food handler, Germany 2011. Epidemiology and Infection. 2014; 142(1): 99-106.
- Diop MB, Destain J, Tine E, Thonart P. Les produits de la mer au sénégal et le potentiel des bactéries lactiques et des bactériocines pour la conservation. Biotechnology Agronomy Society and Environment. 2010; 14: 341-350.
- EC. Establishing a community system to prevent, deter and eliminate illegal, unreported and unregulated fishing, amending regulations (EEC) No 2847/93, (EC) No 1936/2001 and (EC) No 601/2004 and repealing regulations (EC) No 1093/94 and (EC) No 1447/1999. 2008; http://eur-lex.europa.eu/LexUriServ /Lex UriServ.do?uri=OJ :L: 2008:286:0001:0032.
- EC. Summary record of the meeting of working group 3 (markets and trade policy) of the advisory committee on fisheries and aquaculture. 2010; http://ec.europa.eu/fisheries/dialog/acfa120608_en.pdf
- El-Shafai SA, Gijzen HJ, Nasr FA, El-Gohary FA. Microbial quality of tilapia reared in fecal-contaminated ponds. Environmental Research. 2004; 95(2): 231-238.
- Fagan RP, McLaughlin JB, Castrodale LJ, Gessner BD, Jenkerson SA,2 Funk EA, Hennessy TW, Middaugh JP, Butler JC. Endemic Foodborne Botulism among Alaska Native Persons-Alaska, 1947–2007. Clinical Infectious Diseases. 2011; 52(5): 585–592.
- FAO. Food and Drug Administration. Report of the global conference an Aquaculture 2010. Farming the waters for people and food. FAO Fisheries and Aquaculture. 2012; 84, Rome.
- Fattal B, Dotan A, Tchorsh Y. Rates of experimental microbiological contamination of fish exposed to polluted water. Water Research. 1992; 26(12): 1621-1627.
- Flowers RS, D'aoust JY, Andrews WH, Bailcy JS. Salmonella. In, Compendium of the Methods for the Microbiological Examination of Foods. 1992; 685.
- Franzetti L, Scarpellini M, Mora D, Galli A. Carnobacterium spp. in seafood packaged in modified atmosphere. Annual of Microbiology. 2003; 53: 189-198.
- Galvez A, Abriouel H, Ben Omar N, Lucas R. Microbial antagonists to food-borne pathogens and biocontrol. Current Opinion Biotechnology. 2010; 21: 142-148.
- Gerokomou V, Voidarou C, Vatopoulos A, Velonakis E, Rozos G, Alexopoulos A, Plessas S, Stavropoulou E, Bezirtzoglou E, Demertzis PG, Akrida-Demertzi K. Physical, chemical and microbiological quality of ice used to cool drinks and foods in Greece and its public health implications. Anaerobe. 2011; 17(6): 351-353.
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