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Determination of Antimicrobial Activity and MIC Value of Tannic Acid Against Four Different Fish Pathogens

Yıl 2024, Cilt: 9 Sayı: 4, 582 - 589
https://doi.org/10.35229/jaes.1573899

Öz

In this study, the antimicrobial susceptibility of Silvafeed TSP (tannic acid) obtained from chestnut tree using natural extraction method and used as a feed sweetener in aquaculture against some fish pathogens was investigated. Antimicrobial susceptibility of different concentrations of tannic acid was determined against fish pathogens that cause significant economic losses by bacteria such as Aeromonas hydrophila, Pseudomonas fluorescens, Yersinia ruckeri and Vibrio anguillarum. According to the antimicrobial test results, it was determined that all isolates to tested antibiotics were resistant to ampicillin, however, all isolates were susceptible to other antibiotics except for P. fluorescence isolate. It was determined that the P. fluorescence isolate was resistant to other antibiotics except gentamicin and doxycycline. According to the antimicrobial susceptibility test results of tannic acid against E. coli and four different fish pathogens, P. fluorescens and V. anguillarum were found to be sensitive above 125 µg/ml concentrations. In the same study, E. coli, A. hydrophila, and Y. ruckeri were found to be sensitive above 250 µg/ml concentrations. It was determined that P. fluorescens and V. anguillarum were resistant to tannic acid concentrations below 62.5 µg/ml. Moreover, E. coli, A. hydrophila, and Y. ruckeri were resistant to tannic acid concentrations below 125 µg/ml.

Destekleyen Kurum

yok

Teşekkür

Tannic asit Profeed Food and Chemical Substances Industry and Trade Ltd. Şti. ücretsiz olarak sağlanmıştır. İlgili kuruma teşekkür ederiz.

Kaynakça

  • Alavinia, S.J., Mirzargar, S.S., Rahmati-Holasoo, H. & Mousavi, H.E. (2018). The in vitro and in vivo effect of tannic acid on Ichthyophthirius multifiliis in zebrafish (Danio rerio) to treat ichthyophthiriasis. Journal Fish Disease, 41, 1793-1802. DOI: 10.1111/jfd.12886
  • Altinok, I., Balta, F., Capkin, E. & Kayis, S. (2007). Disease of rainbow trout caused by Pseudomonas luteola. Aquaculture, 273(4), 393-397. DOI: 10.1016/j.aquaculture.2007.10.025
  • Aydın, S.A. & Üstün, F. (2007). Tanenler 1. Kimyasal yapıları, farmakolojik etkileri, analiz yöntemleri. İstanbul Üniversitesi Veteriner Fakültesi Dergisi, 33(1), 21-31.
  • Balta, F. & Çağırgan, H. (2019). Oxytetracycline residues in cultured gilthead sea bream (Sparus aurata L. 1758) tissues. African Journal of Biotechnology, 9(42), 7192-7196.
  • Balta, F. & Çağırgan, H. 2(007). Levrek’lerde (Dicentrarchus labrax L., 1758) sağaltım sonrası oksitetrasiklinin kas ve derideki rezidüsünün belirlenmesi. E.U. Journal of Fisheries & Aquatic Sciences, 24(1), 173-178.
  • Balta, F. & Dengiz Balta, Z. (2016). Vibrio Infection and Treatment on the Juvenile Rainbow Trout (Oncorhynchus mykiss) Transferred Seawater. J. Anatolian Env. and Anim. Sciences, 1(1), 14-20. DOI: 10.35229/jaes.272222
  • Balta, F. & Dengiz Balta, Z. (2017). Serotyping, genetic characterization and antimicrobial susceptibility determination of Vibrio anguillarum strains isolated from farmed rainbow trout (Oncorhynchus mykiss) in the eastern Black Sea. Ankara Üniv. Vet. Fak. Derg., 64, 321-328. DOI: 10.1501/Vetfak_0000002816
  • Balta, F. & Dengiz Balta, Z. (2019). Preparation of O- antigen from Yersinia ruckeri serotype O1 and use in the slide agglutination test. J. Anatolian Env. and Anim. Sciences, 4(3), 480-483. DOI: 10.35229/jaes.645416
  • Balta, F. & Dengiz Balta, Z. (2019). The isolation of Lactococcus garvieae from eyes of diseased rainbow trout (Oncorhynchus mykiss) with exopthalmia. J. Anatolian Env. and Anim. Sciences, 4(1), 27-33. DOI: 10.35229/jaes.527258
  • Balta, F. & Tekin, N. (2021). Determination of antibacterial effect of tannic acid against some bacterial pathogens isolated from fish. J. Anatolian Env. and Anim. Sciences, 6(4), 532- 539. DOI: 10.35229/jaes.1004833
  • Balta, F. & Yılmaz, H. (2019). Infection of Vibrio parahaemolyticus in culture sea bass (Dicentrarchus labrax). J. Anatolian Env. and Anim. Sciences, 4(2), 104-110. DOI: 10.35229/jaes.544439
  • Balta, F. (1999). Residue determination of cultered sea bass (Dicentrarchus labrax L., 1758) after oxytetracycline treatment. Ph.D. Thesis, Ege University, Graduate School of Natural and Applied Sciences, İzmir, Turkey, 93p, (published in Turkish).
  • Balta, F. (2016). Phenotypic, serotypic and genetic characterization and antimicrobial susceptibility determination of Vibrio anguillarum, isolatedf cultured sea bass (Dicentrarchus labrax L., 1758) in the southeast Black Sea, Turkey. Fresenius Environmenal Bulletin, 25(10), 4393-4400.
  • Balta, F. (2020). Determination of the antimicrobial susceptibilities of aeromonas spp. isolated from rainbow trout farms on the Fırtına River. J. Anatolian Env. and Anim. Sciences, 5(3), 397- 407. DOI: 10.35229/jaes.785447
  • Balta, F., Dengiz Balta, Z., Ozgumus, O.B. & Çağırgan, H. (2016). The antimicrobial resistance and investigation of Yersinia ruckeri from rainbow trout (Oncorhynchus mykiss) farms in the Eastern Black Sea Region. J. Anatolian Env. and Anim. Sciences, 1(3), 72-76. DOI: 10.35229/jaes.280741
  • Balta, F., Sandalli, C., Kayis, S. & Ozgumus, O.B. (2010). Molecular analysis of antimicrobial resistance in Yersinia ruckeri strains isolated from rainbow trout (Oncorhynchus mykiss) grown in commercial fish farms in Turkey. Bulletin of the European Association of Fish Pathologists, 30(6), 211-219.
  • Brooker, J.D., O´Donovan, L.A., Skene, I., Clarke, K., Blackall, L. & Muslera, P. (1994).Streptococcus caprinus sp. nov., a tannin-resistant ruminal bacterium from feral goats. Letters in Applied Microbiology, 18, 313-318. DOI: 10.1111/j.1472- 765X.1994.tb00877.x
  • Cağirgan, H. & Tanrikul, T.T. (1998). Testing the effectiveness of a Yersinia vaccine in infected and chemically treated juvenile rainbow trout (Oncorhynchus mykiss). Journal of Applied Ichthyology, 14, 239-243.
  • Cipriano-Salazara, M., Rojas Hernándeza, S., Olivares Péreza, J., Jiménez Guillénb, R., Cruz Lagunasc, B., Camacho Díaza, L.M. & Ugbogud, A.E. (2018). Antibacterial activities of tannic acid against isolated ruminal bacteria from sheep. Microbial Pathogenesis, 117, 255-258. DOI: 10.1016/j.micpath.2018.01.045
  • CLSI. (2006). Method for antimicrobial disk susceptibility testing of bacteria isolated from aquatic animals; approved guideline VET03-A. Clinical and Laboratory Standards Institute, Wayne, Pennsylvania.
  • CLSI. (2013). Performance Standards for Antimicrobial Susceptibility Testing; Twenty-Third Informational Supplement. CLSI document M100-S23. Volume 33, No.1, Wayne, PA. 362p.
  • CLSI. (2014). Performance standards for antimicrobial susceptibility testing. Twenty-Fourth Informational Supplement. Clinical Laboratory Standards Institute, Wayne, USA, M100-S24, Volume 34, No. 1, 230p.
  • CLSI. (2015). Methods for Dilution Antimicrobial Susceptibility Tests for Bacteria. That Grow Aerobically; Approved Standard-Tenth Edition. Clinical Laboratory Standards Institute, Wayne, USA, M07-A10, Volume 35, No. 2, 51p.
  • Dincturk, E. & Tanrikul, T.T. (2021). Yersinia ruckeri and Pseudomonas fluorescens co-infection inrainbow trout (Oncorhynchus mykiss Walbaum, 1792). Aquaculture Research, 52(10), 4858-4866. DOI: 10.1111/are.15320
  • Duman, M., Altun, S., Cengiz, M., Saticioglu, I.B., Buyukekiz, A.G. & Sahinturk, P. (2017). Genotyping and antimicrobial resistance genes of Yersinia ruckeri isolates from rainbow trout farms. Diseases of Aquatic Organisms, 125, 31- 44. DOI: 10.3354/dao03132
  • EL-Hefny, M., Ashmawy, N.A., Salem, M.Z.M. & Salem, A.Z.M. (2017). Antibacterial activities of the phytochemicals-characterized extracts of Callistemon viminalis, Eucalyptus camaldulensis and Conyza dioscoridis against the growth of some phytopathogenic bacteria. Microbial Pathogenesis, 113, 348-356. DOI: 10.1016/j.micpath.2017.11.004
  • Goel, G., Puniya, A.K. & Singh, K. (2005). Tannic acid resistance in ruminal streptococcal isolates. Journal of Basic Microbiology, 45, 243-245. DOI: 10.1002/jobm.200410517
  • Harikrishnan, R., Balasundaram, C. & Heo, M.S. (2012). Effect of Inonotus obliquus enriched diet on hematology, immune response, and disease protection in kelp grouper, Epinephelus bruneus against Vibrio harveyi. Aquaculture, 344-349, 48- 53. DOI: 10.1016/j.aquaculture.2012.03.010
  • Kacar Z.Z. & Balta, F. (2017). Multi Locus Sequence Analysis (MLSA)-Based identification of Pseudomonas spp. isolated from rainbow trout (Onchorhynchus mykiss) in the Eastern Black Sea Region of Turkey using. Fresenius Environmental Bulletin, 26(12), 7506-7512.
  • Kaczmarek, B. (2020). Tannic acid with antiviral and antibacterial activity as a promising component of biomaterials-a minireview. Materials, 13, 3224, DOI: 10.3390/ma13143224
  • Onalan, Ş. & Çevik M. (2020). Investigation of the effects of some phytochemicals on Yersinia ruckeri and antimicrobial resistance. Brazilian Journal of Biology, 80(4), 934-942. DOI: 10.1590/1519- 6984.234969
  • Onuk, E.E., Çaycı, Y.T., Çoban, A.Y., Çiftci, A., Balta, F., Didinen, B.I., Pekmezci, G.Z., Altun, S., Ünlü, M.S, & Deveci, A. (2015). Türkiye’de su kaynaklı Aeromonas izolatlarında saptanan ilk QnrS gen Pozitifliği. Mikrobiyoloji Bülteni, 49(1), 114-123.
  • Onuk, E.E., Çaycı, Y.T., Çoban, A.Y., Çiftci, A., Balta, F., Didinen, B.I. &, Altun, S. (2017). Balık ve yetiştirme suyu kökenli Aeromonas izolatlarının antimikrobial duyarlılıklarının saptanması. Ankara Üniv. Vet. Fak. Derg., 64(1), 69-73.
  • Pavaraj, M., Balasubramanian, V., Baskaran, S. & Ramasamy, P. (2011). Development of immunity by extract of medicinal plant Ocimum sanctum on common carp Cyprinus carpio (L.). Research Journal of Immunology, 4(1), 12-18. DOI: 10.3923/rji.2011.12.18
  • Pérez-Fonseca, A., Alcala-Canto, Y., Salem, A.Z.M. & Alberti-Navarro, A.B. (2016). Anticoccidial efficacy of naringenin and a grapefruit peel extract in growing lambs naturally-infected with Eimeria spp. Veterinary Parasitology, 232, 58-65. DOI: 10.1016/j.vetpar.2016.11.009
  • Schiavone, A., Gua, K., Tassone, S., Gasco, Hernandez, E., Denti, R. & Zoccarato, I. (2008). Effects of a natural extract of chestnut wood on digestibility, performance traits, and nitrogen balance of broiler chicks. Poultry Science, 87(3), 521-527. DOI: 10.3382/ps.2007-00113
  • Sell, D.R., Reed W.M., Chrisman, C.L. & Rogler J.C. (1985). Mucin excretion and morphology of the intestinal tract as influenced by sorgunm tannins. Nutrition Raports İnternational, 31, 13691374.
  • Takaoka, O., Ji, S.C., Ishimaru, K., Lee, S.W., Jeong, G.S., Ito, J., Biswas, A. & Takii, K. (2011). Effect of rotifer enrichment with herbal extracts on growth and resistance of red sea bream, Pagrus majör (Temminck & Schlegel) larvae against Vibrio anguillarum. Aquaculture Research, 42, 1824-1829. DOI: 10.1111/j.1365- 2109.2010.02783.x
  • Tanrikul, T.T. & Dincturk, E. (2017). Antibacterial susceptibility of hydrolysable tannins (Silvafeed TSP) against bacterial fish pathogens. Aquaculture Europe 2017, 17-20 October 2017; Dubrovnik, Croatia.
  • Yılmaz, Y. & Romeo, T.T. (2004). Major flavomolds in grapeseeds and skins: antioxidant capacity of catechin, epicatechin, and gallic acid. Journal of Agricultural and Food Chemistry, 52(2), 255- 260. DOI: 10.1021/jf030117h
  • Zoccarato, I., Gasco, L., Schiavone, A., Guo, K., Barge, P., Rotolo, L., Savarino, G. & Masoero, G. (2008). Effect of extract of chestnut wood inclusion (ENC) in normal and low protein amino acid supplemented diets on heavy broiler rabbits. In Proceedings of the 9th world rabbit congress (pp. 873-877), 10-13 June 2008; Verona, Italy.
  • Zoccarato, I., Schiavone, A., Tassone, S., Gasco, L. & Malfatto, V. (2006). Study on the utilisation of a natural silvafeed in the nutrition of heavy chickens. XII European Poultry Conference, Verona (Italy).

Tannik Asidin Dört Farklı Balık Patojenine Karşı Antimikrobiyal Aktivitesinin ve MİK Değerinin Belirlenmesi

Yıl 2024, Cilt: 9 Sayı: 4, 582 - 589
https://doi.org/10.35229/jaes.1573899

Öz

Bu çalışmada, kestane ağacından doğal ekstraksiyon yöntemi ile elde edilen ve su ürünleri yetiştiriciliğinde yem tatlandırıcı olarak kullanılan Silvafeed TSP'nin (tannik asit) bazı balık patojenlerine karşı antimikrobiyal duyarlılığı araştırılmıştır. Aeromonas hydrophila, Pseudomonas fluorescens, Yersinia ruckeri ve Vibrio anguillarum gibi bakteriler tarafından önemli ekonomik kayıplara neden olan balık patojenlerine karşı farklı konsantrasyonlarda tannik asidin antimikrobiyal duyarlılığı belirlendi. Antimikrobiyal test sonuçlarına göre, test edilen antibiyotiklere karşı izolatların tamamının ampisiline dirençli olduğu, ancak P. fluoresans izolatı hariç diğer antibiyotiklere duyarlı olduğu belirlendi. P. fluorescence izolatının gentamisin ve doksisiklin hariç diğer antibiyotiklere dirençli olduğu belirlendi. Tannik asidin E. coli ve dört farklı balık patojeni olan P. fluorescens ve V. anguillarum'a karşı antimikrobiyal duyarlılık test sonuçlarına göre, 125 µg/ml konsantrasyonun üstünde duyarlı olduğu bulundu. Aynı çalışmada E. coli, A. hydrophila ve Y. ruckeri'nin 250 µg/ml konsantrasyonun üzerinde duyarlı olduğu bulunmuştur. P. fluorescens ve V. anguillarum'un 62,5 µg/ml'nin altındaki tannik asit konsantrasyonlarına dirençli olduğu belirlendi. Ayrıca, E. coli, A. hydrophila ve Y. ruckeri'nin 125 µg/ml'nin altındaki tannik asit konsantrasyonlarına dirençli olduğu belirlendi.

Kaynakça

  • Alavinia, S.J., Mirzargar, S.S., Rahmati-Holasoo, H. & Mousavi, H.E. (2018). The in vitro and in vivo effect of tannic acid on Ichthyophthirius multifiliis in zebrafish (Danio rerio) to treat ichthyophthiriasis. Journal Fish Disease, 41, 1793-1802. DOI: 10.1111/jfd.12886
  • Altinok, I., Balta, F., Capkin, E. & Kayis, S. (2007). Disease of rainbow trout caused by Pseudomonas luteola. Aquaculture, 273(4), 393-397. DOI: 10.1016/j.aquaculture.2007.10.025
  • Aydın, S.A. & Üstün, F. (2007). Tanenler 1. Kimyasal yapıları, farmakolojik etkileri, analiz yöntemleri. İstanbul Üniversitesi Veteriner Fakültesi Dergisi, 33(1), 21-31.
  • Balta, F. & Çağırgan, H. (2019). Oxytetracycline residues in cultured gilthead sea bream (Sparus aurata L. 1758) tissues. African Journal of Biotechnology, 9(42), 7192-7196.
  • Balta, F. & Çağırgan, H. 2(007). Levrek’lerde (Dicentrarchus labrax L., 1758) sağaltım sonrası oksitetrasiklinin kas ve derideki rezidüsünün belirlenmesi. E.U. Journal of Fisheries & Aquatic Sciences, 24(1), 173-178.
  • Balta, F. & Dengiz Balta, Z. (2016). Vibrio Infection and Treatment on the Juvenile Rainbow Trout (Oncorhynchus mykiss) Transferred Seawater. J. Anatolian Env. and Anim. Sciences, 1(1), 14-20. DOI: 10.35229/jaes.272222
  • Balta, F. & Dengiz Balta, Z. (2017). Serotyping, genetic characterization and antimicrobial susceptibility determination of Vibrio anguillarum strains isolated from farmed rainbow trout (Oncorhynchus mykiss) in the eastern Black Sea. Ankara Üniv. Vet. Fak. Derg., 64, 321-328. DOI: 10.1501/Vetfak_0000002816
  • Balta, F. & Dengiz Balta, Z. (2019). Preparation of O- antigen from Yersinia ruckeri serotype O1 and use in the slide agglutination test. J. Anatolian Env. and Anim. Sciences, 4(3), 480-483. DOI: 10.35229/jaes.645416
  • Balta, F. & Dengiz Balta, Z. (2019). The isolation of Lactococcus garvieae from eyes of diseased rainbow trout (Oncorhynchus mykiss) with exopthalmia. J. Anatolian Env. and Anim. Sciences, 4(1), 27-33. DOI: 10.35229/jaes.527258
  • Balta, F. & Tekin, N. (2021). Determination of antibacterial effect of tannic acid against some bacterial pathogens isolated from fish. J. Anatolian Env. and Anim. Sciences, 6(4), 532- 539. DOI: 10.35229/jaes.1004833
  • Balta, F. & Yılmaz, H. (2019). Infection of Vibrio parahaemolyticus in culture sea bass (Dicentrarchus labrax). J. Anatolian Env. and Anim. Sciences, 4(2), 104-110. DOI: 10.35229/jaes.544439
  • Balta, F. (1999). Residue determination of cultered sea bass (Dicentrarchus labrax L., 1758) after oxytetracycline treatment. Ph.D. Thesis, Ege University, Graduate School of Natural and Applied Sciences, İzmir, Turkey, 93p, (published in Turkish).
  • Balta, F. (2016). Phenotypic, serotypic and genetic characterization and antimicrobial susceptibility determination of Vibrio anguillarum, isolatedf cultured sea bass (Dicentrarchus labrax L., 1758) in the southeast Black Sea, Turkey. Fresenius Environmenal Bulletin, 25(10), 4393-4400.
  • Balta, F. (2020). Determination of the antimicrobial susceptibilities of aeromonas spp. isolated from rainbow trout farms on the Fırtına River. J. Anatolian Env. and Anim. Sciences, 5(3), 397- 407. DOI: 10.35229/jaes.785447
  • Balta, F., Dengiz Balta, Z., Ozgumus, O.B. & Çağırgan, H. (2016). The antimicrobial resistance and investigation of Yersinia ruckeri from rainbow trout (Oncorhynchus mykiss) farms in the Eastern Black Sea Region. J. Anatolian Env. and Anim. Sciences, 1(3), 72-76. DOI: 10.35229/jaes.280741
  • Balta, F., Sandalli, C., Kayis, S. & Ozgumus, O.B. (2010). Molecular analysis of antimicrobial resistance in Yersinia ruckeri strains isolated from rainbow trout (Oncorhynchus mykiss) grown in commercial fish farms in Turkey. Bulletin of the European Association of Fish Pathologists, 30(6), 211-219.
  • Brooker, J.D., O´Donovan, L.A., Skene, I., Clarke, K., Blackall, L. & Muslera, P. (1994).Streptococcus caprinus sp. nov., a tannin-resistant ruminal bacterium from feral goats. Letters in Applied Microbiology, 18, 313-318. DOI: 10.1111/j.1472- 765X.1994.tb00877.x
  • Cağirgan, H. & Tanrikul, T.T. (1998). Testing the effectiveness of a Yersinia vaccine in infected and chemically treated juvenile rainbow trout (Oncorhynchus mykiss). Journal of Applied Ichthyology, 14, 239-243.
  • Cipriano-Salazara, M., Rojas Hernándeza, S., Olivares Péreza, J., Jiménez Guillénb, R., Cruz Lagunasc, B., Camacho Díaza, L.M. & Ugbogud, A.E. (2018). Antibacterial activities of tannic acid against isolated ruminal bacteria from sheep. Microbial Pathogenesis, 117, 255-258. DOI: 10.1016/j.micpath.2018.01.045
  • CLSI. (2006). Method for antimicrobial disk susceptibility testing of bacteria isolated from aquatic animals; approved guideline VET03-A. Clinical and Laboratory Standards Institute, Wayne, Pennsylvania.
  • CLSI. (2013). Performance Standards for Antimicrobial Susceptibility Testing; Twenty-Third Informational Supplement. CLSI document M100-S23. Volume 33, No.1, Wayne, PA. 362p.
  • CLSI. (2014). Performance standards for antimicrobial susceptibility testing. Twenty-Fourth Informational Supplement. Clinical Laboratory Standards Institute, Wayne, USA, M100-S24, Volume 34, No. 1, 230p.
  • CLSI. (2015). Methods for Dilution Antimicrobial Susceptibility Tests for Bacteria. That Grow Aerobically; Approved Standard-Tenth Edition. Clinical Laboratory Standards Institute, Wayne, USA, M07-A10, Volume 35, No. 2, 51p.
  • Dincturk, E. & Tanrikul, T.T. (2021). Yersinia ruckeri and Pseudomonas fluorescens co-infection inrainbow trout (Oncorhynchus mykiss Walbaum, 1792). Aquaculture Research, 52(10), 4858-4866. DOI: 10.1111/are.15320
  • Duman, M., Altun, S., Cengiz, M., Saticioglu, I.B., Buyukekiz, A.G. & Sahinturk, P. (2017). Genotyping and antimicrobial resistance genes of Yersinia ruckeri isolates from rainbow trout farms. Diseases of Aquatic Organisms, 125, 31- 44. DOI: 10.3354/dao03132
  • EL-Hefny, M., Ashmawy, N.A., Salem, M.Z.M. & Salem, A.Z.M. (2017). Antibacterial activities of the phytochemicals-characterized extracts of Callistemon viminalis, Eucalyptus camaldulensis and Conyza dioscoridis against the growth of some phytopathogenic bacteria. Microbial Pathogenesis, 113, 348-356. DOI: 10.1016/j.micpath.2017.11.004
  • Goel, G., Puniya, A.K. & Singh, K. (2005). Tannic acid resistance in ruminal streptococcal isolates. Journal of Basic Microbiology, 45, 243-245. DOI: 10.1002/jobm.200410517
  • Harikrishnan, R., Balasundaram, C. & Heo, M.S. (2012). Effect of Inonotus obliquus enriched diet on hematology, immune response, and disease protection in kelp grouper, Epinephelus bruneus against Vibrio harveyi. Aquaculture, 344-349, 48- 53. DOI: 10.1016/j.aquaculture.2012.03.010
  • Kacar Z.Z. & Balta, F. (2017). Multi Locus Sequence Analysis (MLSA)-Based identification of Pseudomonas spp. isolated from rainbow trout (Onchorhynchus mykiss) in the Eastern Black Sea Region of Turkey using. Fresenius Environmental Bulletin, 26(12), 7506-7512.
  • Kaczmarek, B. (2020). Tannic acid with antiviral and antibacterial activity as a promising component of biomaterials-a minireview. Materials, 13, 3224, DOI: 10.3390/ma13143224
  • Onalan, Ş. & Çevik M. (2020). Investigation of the effects of some phytochemicals on Yersinia ruckeri and antimicrobial resistance. Brazilian Journal of Biology, 80(4), 934-942. DOI: 10.1590/1519- 6984.234969
  • Onuk, E.E., Çaycı, Y.T., Çoban, A.Y., Çiftci, A., Balta, F., Didinen, B.I., Pekmezci, G.Z., Altun, S., Ünlü, M.S, & Deveci, A. (2015). Türkiye’de su kaynaklı Aeromonas izolatlarında saptanan ilk QnrS gen Pozitifliği. Mikrobiyoloji Bülteni, 49(1), 114-123.
  • Onuk, E.E., Çaycı, Y.T., Çoban, A.Y., Çiftci, A., Balta, F., Didinen, B.I. &, Altun, S. (2017). Balık ve yetiştirme suyu kökenli Aeromonas izolatlarının antimikrobial duyarlılıklarının saptanması. Ankara Üniv. Vet. Fak. Derg., 64(1), 69-73.
  • Pavaraj, M., Balasubramanian, V., Baskaran, S. & Ramasamy, P. (2011). Development of immunity by extract of medicinal plant Ocimum sanctum on common carp Cyprinus carpio (L.). Research Journal of Immunology, 4(1), 12-18. DOI: 10.3923/rji.2011.12.18
  • Pérez-Fonseca, A., Alcala-Canto, Y., Salem, A.Z.M. & Alberti-Navarro, A.B. (2016). Anticoccidial efficacy of naringenin and a grapefruit peel extract in growing lambs naturally-infected with Eimeria spp. Veterinary Parasitology, 232, 58-65. DOI: 10.1016/j.vetpar.2016.11.009
  • Schiavone, A., Gua, K., Tassone, S., Gasco, Hernandez, E., Denti, R. & Zoccarato, I. (2008). Effects of a natural extract of chestnut wood on digestibility, performance traits, and nitrogen balance of broiler chicks. Poultry Science, 87(3), 521-527. DOI: 10.3382/ps.2007-00113
  • Sell, D.R., Reed W.M., Chrisman, C.L. & Rogler J.C. (1985). Mucin excretion and morphology of the intestinal tract as influenced by sorgunm tannins. Nutrition Raports İnternational, 31, 13691374.
  • Takaoka, O., Ji, S.C., Ishimaru, K., Lee, S.W., Jeong, G.S., Ito, J., Biswas, A. & Takii, K. (2011). Effect of rotifer enrichment with herbal extracts on growth and resistance of red sea bream, Pagrus majör (Temminck & Schlegel) larvae against Vibrio anguillarum. Aquaculture Research, 42, 1824-1829. DOI: 10.1111/j.1365- 2109.2010.02783.x
  • Tanrikul, T.T. & Dincturk, E. (2017). Antibacterial susceptibility of hydrolysable tannins (Silvafeed TSP) against bacterial fish pathogens. Aquaculture Europe 2017, 17-20 October 2017; Dubrovnik, Croatia.
  • Yılmaz, Y. & Romeo, T.T. (2004). Major flavomolds in grapeseeds and skins: antioxidant capacity of catechin, epicatechin, and gallic acid. Journal of Agricultural and Food Chemistry, 52(2), 255- 260. DOI: 10.1021/jf030117h
  • Zoccarato, I., Gasco, L., Schiavone, A., Guo, K., Barge, P., Rotolo, L., Savarino, G. & Masoero, G. (2008). Effect of extract of chestnut wood inclusion (ENC) in normal and low protein amino acid supplemented diets on heavy broiler rabbits. In Proceedings of the 9th world rabbit congress (pp. 873-877), 10-13 June 2008; Verona, Italy.
  • Zoccarato, I., Schiavone, A., Tassone, S., Gasco, L. & Malfatto, V. (2006). Study on the utilisation of a natural silvafeed in the nutrition of heavy chickens. XII European Poultry Conference, Verona (Italy).
Toplam 42 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Balık Zararlıları ve Hastalıkları
Bölüm Makaleler
Yazarlar

Zeynep Dengiz Balta 0000-0002-7795-828X

Fikri Balta 0000-0002-1823-5823

Erken Görünüm Tarihi 17 Aralık 2024
Yayımlanma Tarihi
Gönderilme Tarihi 25 Ekim 2024
Kabul Tarihi 22 Kasım 2024
Yayımlandığı Sayı Yıl 2024 Cilt: 9 Sayı: 4

Kaynak Göster

APA Dengiz Balta, Z., & Balta, F. (2024). Determination of Antimicrobial Activity and MIC Value of Tannic Acid Against Four Different Fish Pathogens. Journal of Anatolian Environmental and Animal Sciences, 9(4), 582-589. https://doi.org/10.35229/jaes.1573899


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