تعداد نشریات | 161 |
تعداد شمارهها | 6,532 |
تعداد مقالات | 70,504 |
تعداد مشاهده مقاله | 124,123,371 |
تعداد دریافت فایل اصل مقاله | 97,231,461 |
Diversity of Antibiotic-resistant of Tentative Motile Aeromonas Species Isolated From Clarias gariepinus (Burchell 1822) Cultured in Earthen Ponds | ||
Iranian Journal of Veterinary Medicine | ||
مقاله 12، دوره 18، شماره 1، فروردین 2024، صفحه 121-130 اصل مقاله (3.25 M) | ||
نوع مقاله: Original Articles | ||
شناسه دیجیتال (DOI): 10.32598/ijvm.18.1.1005326 | ||
نویسندگان | ||
Deborah Arimie Adah* 1؛ Lawal Saidu2؛ Sonnie Joshua Oniye3؛ Moshood Abiola Raji4؛ Oluwafemi Babatunde Daodu4؛ Adakole Sylvanus Adah5 | ||
1Department of Veterinary Medicine, Faculty of Veterinary Medicine, University of Ilorin, Ilorin, Nigeria. | ||
2Veterinary Teaching Hospital, Ahmadu Bello University, Zaria, Nigeria. | ||
3Department of Zoology, Ahmadu Bello University, Zaria, Nigeria. | ||
4Department of Veterinary Microbiology, Faculty of Veterinary Medicine, University of Ilorin, Ilorin, Nigeria. | ||
5Department of Veterinary Physiology and Biochemistry, Faculty of Veterinary Medicine, University of Ilorin, Ilorin, Nigeria. | ||
چکیده | ||
Background: Aeromonas species is one of the most important causes of diseases in Clarias gariepinus, a public health threat with significant economic losses. Objectives: In this research, the prevalence and variety of Aeromonas species isolated from C. gariepinus cultured in an earthen pond were investigated, as well as the antibiogram and multiple antibiotic resistance index Methods: Aeromonas species were isolated by culture and biochemical test and confirmed using a Microbact 24E kit. The antibiotic susceptibility to 10 antibiotics was determined using the Kirby-Bauer disk diffusion method. Results: Aeromonas species were isolated with a prevalence of 43.1% with 4 different phenospecies with the highest prevalence of 46(24 %) for Aeromonas hydrophila followed by 15(7.8%) for Aeromonas caviae, then 10(5.2%) for Aeromonas veronii sobria, and the least was observed for Aeromonas veronii veronii 6(3.1%). The Aeromonas species showed high resistance to amoxicillin, ampicillin, colistin sulfate, oxytetracycline, trimethoprim/sulfamethoxazole, and penicillin, with varying resistant patterns, and the multiple antibiotic resistance index values ranged between 0.20 and 0.80. Conclusion: There was a diversity of Aeromonas species associated with multiple antibiotic-resistant leading to the wide spread of antimicrobial resistance. Therefore, there is a need to control the use of antibiotics and ensure the effective use of biosecurity and preventive management measures in fish farms. | ||
کلیدواژهها | ||
Antibiogram؛ Fish farm؛ Freshwater fish؛ Multiple antibiotic resistance؛ Zoonosis | ||
عنوان مقاله [English] | ||
تنوع گونه های آیروموناس مقاوم به آنتی بیوتیک جداسازی شده از گربه ماهی پرورشی در استخرهای خاکی | ||
نویسندگان [English] | ||
دبوراه آداه1؛ لاوال سعیدو2؛ اونیه جوشوا سونیه3؛ موشود ابیولا راجی4؛ اولفمی باباتونده باودو4؛ آداکوله سیلوانوس آداه5 | ||
1گروه دامپزشکی،دانشکده دامپزشکی دانشگاه ایلورین،ایلورین،نیجریه | ||
2بیمارستان آموزشی دامپزشکی،دانشگاه احمدو بلو،زاریا ،نیجریه | ||
3گروه جانورشناسی ،دانشگاه احمدو بلو،زاریا ،نیجریه | ||
4گروه میکروبیولوژی دامپزشکی،دانشکده دامپزشکی،دانشگاه ایلورین،ایلورین،نیجریه | ||
5گروه فیزیولوژی و بیوشیمی دامپزشکی،دانشکده دامپزشکی،دانشگاه ایلورین،ایلورین،نیجریه | ||
کلیدواژهها [English] | ||
آنتی یبوگرام, مزرعه ماهی, ماهی اب شیرین, مقاومت چندتایی آنتی بیوتیکی, بیماری مشترک | ||
اصل مقاله | ||
Introduction
Ethical Considerations
Abdulrahman, N. M. (2022). Effect of germinated barely and earth apple (Helianthus tuberosus) powders in some physio-biological indices of common carp (Cyprinus carpio L.). Iranian Journal of Veterinary Medicine, 16(2), 119-125. [Link] Adah, A. D., Lawal, S., Oniye, S., Adah, S. A., David, S. M., & Obisesan, O. O. (2022). Antibiotic resistance patterns of bacteria isolated from Clarias gariepinus farms in Kaduna state, Nigeria. Iranian Journal of Veterinary Science and Technology, 14(1), 29-38. [Link] Adah, A. D., Saidu, L., Oniye, S. J., Kazeem, H. M., & Adah, S. A. (2021). Prevalence and risk factors associated with aeromonas hydrophila infection in clarias gariepinus and pond Water from Fish Farms in Kaduna State, Nigeria. Jordan Journal of Biological Sciences, 14(3), 477-484. [DOI:10.54319/jjbs/140313] Adam, M., Bakare, R A., Ola-Fadunsin, S. D., Akanbi, O. B., Kigir, E. S., & Barka, S A. (2022). Pathological changes of fasciola species infection in cattle slaughtered in Ilorin Abattoir Kwara State, Nigeria. Iranian Journal of Veterinary Medicine, 16(4), 356-363. [DOI:10.22059/IJVM.2022.342551.1005270] Adeleke, B., Robertson-Andersson, D., Moodley, G., & Taylor, S. (2021). Aquaculture in Africa: A comparative review of Egypt, Nigeria, and Uganda Vis-À-Vis South Africa. Reviews in Fisheries Science & Aquaculture, 29(2), 167-197. [DOI:10.1080/23308249.2020.1795615] Ahammed, T., Borty, S., Monir, S., Begum, N., Islam, A., & Kabir, L. (2016). Isolation, identification and molecular detection of Aeromonas hydrophila from diseased stinging catfish Shing (Heteropneustes fossilis). Asian Australasian Journal of Bioscience and Biotechnology, 1(1), 125-133. [DOI:10.3329/aajbb.v1i1.61545] Ahmed, H. A., Mohamed, M. E., Rezk, M. M., Gharieb, R. M., & Abdel-Maksoud, S. A. (2018). Aeromonas hydrophila in fish and humans; Prevalence, virulotyping and antimicrobial resistance. Slovenian Veterinary Research, 55(20 Suppl), 113-124. [Link] Ashiru, A. W., Uaboi-Egbeni, P. O., Oguntowo, J. E., & Idika, C. N. (2011). Isolation and antibiotic profile of Aeromonas species from tilapia fish (Tilapia nilotica) and catfish (Clarias betrachus). Pakistan Journal of Nutrition, 10(10), 982-986. [DOI:10.3923/pjn.2011.982.986] Austin, B., & Austin, D. A. (2016). Bacterial fish pathogens: Disease of farmed and wild fish. Dordrecht: Springer. [Link] Austin, B., & Newaj-Fyzul, A. (2017). Diagnosis and control of diseases of fish and shellfish. New Jersey: John Wiley & Sons, Ltd; [DOI:10.1002/9781119152125] Borella, L., Salogni, C., Vitale, N., Scali, F., Moretti, V. M., & Pasquali, P., et al. (2020). Motile aeromonads from farmed and wild freshwater fish in northern Italy: An evaluation of antimicrobial activity and multidrug resistance during 2013 and 2016. Acta Veterinaria Scandinavica, 62(1), 6. [DOI:10.1186/s13028-020-0504-y] [PMID] [PMCID] Boyd, C. E., McNevin, A. A., & Davis, R. P. (2022). The contribution of fisheries and aquaculture to the global protein supply. Food Security, 14(3), 805-827. [DOI:10.1007/s12571-021-01246-9] [PMID] [PMCID] Chandrarathna, H. P. S. U., Nikapitiya, C., Dananjaya, S. H. S., Wijerathne, C. U. B., Wimalasena, S. H. M. P., & Kwun, H. J., et al. (2018). Outcome of co-infection with opportunistic and multidrug resistant Aeromonas hydrophila and A. veronii in zebrafish: Identification, characterization, pathogenicity and immune responses. Fish & Shellfish Immunology, 80, 573-581. [DOI:10.1016/j.fsi.2018.06.049] [PMID] Chen, F., Sun, J., Han, Z., Yang, X., Xian, J. A., & Lv, A., et al. (2019). Isolation, identification and characteristics of aeromonas veronii from diseased crucian carp (Carassius auratus gibelio). Frontiers in Microbiology, 10, 2742. [DOI:10.3389/fmicb.2019.02742] [PMID] [PMCID] CLSI. (2020). Performance standards for antimicrobial susceptibility testing. Wayne: Clinical and Laboratory Standards Institute. [Link] Dhanapala, P. M., Kalupahana, R. S., Kalupahana, A. W., Wijesekera, D. P. H., Kottawatta, S. A., & Jayasekera, N. K., et al. (2021). Characterization and antimicrobial resistance of environmental and clinical aeromonas species isolated from fresh water ornamental fish and associated farming environment in Sri Lanka. Microorganisms, 9(10), 2106. [DOI:10.3390/microorganisms9102106] [PMID] [PMCID] El-Gohary, F. A., Zahran, E., Abd El-Gawad, E. A., El-Gohary, A. H., M Abdelhamid, F., El-Mleeh, A., & Elmahallawy, E. K., et al. (2020). Investigation of the Prevalence, Virulence Genes, and Antibiogram of Motile Aeromonads Isolated from Nile Tilapia Fish Farms in Egypt and Assessment of their Water Quality. Animals : An Open Access Journal from MDPI, 10(8), 1432. [DOI:10.3390/ani10081432] [PMID] [PMCID] Fernández-Bravo, A., & Figueras, M. J. (2020). An update on the genus aeromonas: Taxonomy, epidemiology, and pathogenicity. Microorganisms, 8(1), 129. [DOI:10.3390/microorganisms8010129] [PMID] [PMCID] Fowoyo, P. T., & Achimugu, F. (2019). Virulence of Aeromonas hydrophila isolated from freshwater catfish. Journal of Biosciences and Medicines, 7(1), 1-12. [DOI:10.4236/jbm.2019.71001] Grilo, M. L., Isidoro, S., Chambel, L., Marques, C. S., Marques, T. A., & Sousa-Santos, C., et al. (2021). Molecular epidemiology, virulence traits and antimicrobial resistance signatures of aeromonas spp. in the critically endangered iberochondrostoma lusitanicum follow geographical and seasonal patterns. Antibiotics (Basel, Switzerland), 10(7), 759. [DOI:10.3390/antibiotics10070759] [PMID] [PMCID] Khan, L. B., Swift, S., Kamal, T., & Read, H. M. (2018). Simulation of MICROBACT strip assay using colored liquids to demonstrate identification of unknown gram-negative organisms in undergraduate laboratory. Journal of Microbiology & Biology Education, 19(2), 19.2.76. [DOI:10.1128/jmbe.v19i2.1565] [PMID] [PMCID] Kishk, D. M., Moustafa, N. Y., & Kirrella, G. A. (2020). Prevalence and virulence characteristics of Aeromonas species isolated from fish farms in Egypt. Kafrelsheikh Veterinary Medical Journal (Fort Sam Houston, Tex.), 18(2), 5-8. [DOI:10.21608/kvmj.2020.115274] Lin, Y., Yang, J., Wu, Z., Zhang, Q., Wang, S., & Hao, J., et al. (2022). Establishment of epidemiological resistance cut-off values of aquatic aeromonas to eight antimicrobial agents. Microorganisms, 10(4), 776. [DOI:10.3390/microorganisms10040776] [PMID] [PMCID] Manyi-Loh, C., Mamphweli, S., Meyer, E., & Okoh, A. (2018). Antibiotic use in agriculture and its consequential resistance in environmental sources: Potential public health implications. Molecules (Basel, Switzerland), 23(4), 795. [DOI:10.3390/molecules23040795] [PMID] [PMCID] Mirsadeghi, H., Alishahi, A. R., Shabanpour, B., Safari, R., & Daneshvar, M. (2022). Effects of salting and refrigerator storage on rainbow trout (Oncorhynchus mykiss) roe quality: Chemical and microbial changes. Iranian Journal of Veterinary Medicine, 17(1), 87-98. [DOI:10.32598/IJVM.17.1.1005059] Monir, M. S., Bagum, N., Kabir, S. L., Borty, S. C., & Doulah, M. A. U. (2017). Isolation, molecular identification and characterization of Aeromonas hydrophila from infected air-breathing catfish Magur (Clarias batrachus) cultured in Mymensingh, Bangladesh. Asian-Australasian Journal of Food Safety and Security, 1(1), 17-24. [Link] Mulyani, Y., Aryantha, N. P., Suhandono, S., & Pancoro, A. (2018). Intestinal bacteria common carp (Carpinus carpio L) as a biological control agent for Aeromonas. Journal of Pure & Applied Microbiology, 12(2), 601-610. [DOI:10.22207/JPAM.12.2.18] Mzula, A., Wambura, P. N., Mdegela, R. H., & Shirima, G. M. (2021). Present status of aquaculture and the challenge of bacterial diseases in freshwater farmed fish in Tanzania; A call for sustainable strategies. Aquaculture and Fisheries, 6(3), 247-253. [DOI:10.1016/j.aaf.2020.05.003] National Bureau of Statistics (NBS) in 2016. (2017). Annual abstract of statistics. Abuja: National Bureau of Statistics. [Link] Nhinh, D. T., Le, D. V., Van, K. V., Huong Giang, N. T., Dang, L. T., & Hoai, T. D. (2021). Prevalence, virulence gene distribution and alarming the multidrug resistance of aeromonas hydrophila associated with disease outbreaks in freshwater aquaculture. Antibiotics (Basel, Switzerland), 10(5), 532. [DOI:10.3390/antibiotics10050532] [PMID] [PMCID] Okeke, E. S., Chukwudozie, K. I., Nyaruaba, R., Ita, R. E., Oladipo, A., & Ejeromedoghene, O., et al. (2022). Antibiotic resistance in aquaculture and aquatic organisms: A review of current nanotechnology applications for sustainable management. Environmental Science and Pollution Research International, 29(46), 69241-69274. [DOI:10.1007/s11356-022-22319-y] [PMID] [PMCID] Okocha, R. C., Olatoye, I. O., & Adedeji, O. B. (2018). Food safety impacts of antimicrobial use and their residues in aquaculture. Public Health Reviews, 39, 21. [DOI:10.1186/s40985-018-0099-2] [PMID] [PMCID] Opiyo, M. A., Marijani, E., Muendo, P., Odede, R., Leschen, W., & Charo-Karisa, H. (2018). A review of aquaculture production and health management practices of farmed fish in Kenya. International Journal of Veterinary Science and Medicine, 6(2), 141-148. [DOI:10.1016/j.ijvsm.2018.07.001] [PMID] [PMCID] Pepi, M., & Focardi, S. (2021). Antibiotic-resistant bacteria in aquaculture and climate change: A challenge for health in the Mediterranean Area. International Journal of Environmental Research and Public Health, 18(11), 5723. [DOI:10.3390/ijerph18115723] [PMID] [PMCID] Perretta, A., Antúnez, K., & Zunino, P. (2018). Phenotypic, molecular and pathological characterization of motile aeromonads isolated from diseased fishes cultured in Uruguay. Journal of Fish Diseases, 41(10), 1559-1569. [DOI:10.1111/jfd.12864] [PMID] Rahman, M. Z., Hossain, A., Rahman, M. M., Nasren, S., Mamun, M. M. A., & Khalil, S. M. I., et al. (2021). Molecular identification of Aeromonas hydrophila isolate with sensitivity and resistance to antibiotics for its different strains. Advances in Animal and Veterinary Sciences, 9(12), 2062-2068. [DOI:10.17582/journal.aavs/2021/9.12.2062.2068] Raj, N. S., Swaminathan, T. R., Dharmaratnam, A., Raja, S. A., Ramraj, D., & Lal, K. K. (2019). Aeromonas veronii caused bilateral exophthalmia and mass mortality in cultured Nile tilapia, Oreochromis niloticus (L.) in India. Aquaculture, 512, 734278. [DOI:10.1016/j.aquaculture.2019.734278] Saleh, A., Elkenany, R., & Younis, G. (2021). Virulent and multiple antimicrobial resistance aeromonas hydrophila isolated from diseased Nile Tilapia Fish (Oreochromis niloticus) in Egypt with sequencing of some virulence-associated genes. Biocontrol Science, 26(3), 167-176. [DOI:10.4265/bio.26.167] [PMID] Salem, M., Zahran, E., Saad, R., & Zaki, V. (2020). Prevalence, molecular characterization, virulotyping, and antibiotic resistance of motile Aeromonads isolated from Nile tilapia farms at northern Egypt. Mansoura Veterinary. Medicine Journal, 21(1), 56-67. [DOI:10.21608/mvmj.2020.21.108] Sarder, H., Khan, T., Saha, M. L., Punom, N. J., Mandal, S. C., & Rahman, M. S. (2016). Prevalence and antibiotic susceptibility of Aeromonas hydrophila isolated from freshwater fishes. Journal of Fisheries, 4(3), 411-419. [DOI:10.17017/j.fish.57] Scarano, C., Piras, F., Virdis, S., Ziino, G., Nuvoloni, R., & Dalmasso, A., et al. (2018). Antibiotic resistance of Aeromonas ssp. strains isolated from Sparus aurata reared in Italian mariculture farms. International Journal of Food Microbiology, 284, 91-97. [DOI:10.1016/j.ijfoodmicro.2018.07.033] [PMID] Stratev, D., & Odeyemi, O. A. (2016). Antimicrobial resistance of Aeromonas hydrophila isolated from different food sources: A mini-review. Journal of Infection and Public Health, 9(5), 535-544. [DOI:10.1016/j.jiph.2015.10.006] [PMID] Woo, S. J., Kim, M. S., Jeong, M. G., Do, M. Y., Hwang, S. D., & Kim, W. J. (2022). Establishment of epidemiological cut-off values and the distribution of resistance genes in aeromonas hydrophila and aeromonas veronii isolated from aquatic animals. Antibiotics (Basel, Switzerland), 11(3), 343. [DOI:10.3390/antibiotics11030343] [PMID] [PMCID] Zdanowicz, M., Mudryk, Z. J., & Perliński, P. (2020). Abundance and antibiotic resistance of Aeromonas isolated from the water of three carp ponds. Veterinary Research Communications, 44(1), 9-18. [DOI:10.1007/s11259-020-09768-x] [PMID] [PMCID] | ||
مراجع | ||
| ||
آمار تعداد مشاهده مقاله: 388 تعداد دریافت فایل اصل مقاله: 321 |