Author:
Okafor Ugochukwu Chukwuma,Okpechi Christian Ifeanyi,Umeoduagu Nnamdi Dike
Abstract
The susceptibility of microorganisms isolated from poultry feeds and poultry water samples to selected antibiotics was assessed. Standard methods were used to analyze selected poultry feeds and poultry water samples. The antibiotic susceptibility patterns of the bacterial isolates were determined against the following antibacterial agents: erythromycin (10 µg), ciprofloxacin (10 µg), ampiclox (20 µg), rifampicin (20 µg), amoxil (20 µg), septrin (30 µg), ampicillin (30 µg), ceporex (10 µg), levofloxacin (20 µg), gentamicin (10 µg), streptomycin (30 µg), norfloxacin (10 µg), chloramphenicol (30 µg), ofloxacin (10 µg), nalidixic acid (30 µg), reflecine (10 µg), and augmentin (30 µg).The highest viable counts of bacteria isolated from poultry feed and water samples were 2.7x106 cfu/g and 1.69x103 cfu/ml, respectively. The highest fungal counts in the poultry feed and water samples were 1.60x105 cfu/g and 2x105 cfu/ml, respectively. Bacterial isolates from poultry feed and water samples included Escherichia coli, Klebsiella pneumoniae, Salmonella species, and Staphylococcus aureus. Fungal isolates included Aspergillus species, Penicillium species, Mucor species, and Candida species.Staphylococcus aureus exhibited the highest susceptibility to most of the antibiotics, while Klebsiella pneumoniae showed the highest resistance, as it was resistant to five out of the ten antibiotics tested in this study. The research has demonstrated that poultry feed and poultry water showed varying levels of contamination, which may pose serious health risks to poultry. Amoxil, levofloxacin, ciprofloxacin, reflecine, and ofloxacin are recommended for use as antibiotics to treat diseases that may be caused by some of these pathogens.
Publisher
Tecno Scientifica Publishing
Reference20 articles.
1. Okafor, U.C.; Ugwuegbulem, P.M. (2022). Antimicrobial Susceptibility Evaluation Of Microorganisms Isolated From Poultry Water In Awka Metropolis. Journal of Biochemistry International, 9, 1–9. https://doi.org/10.56557/jobi/2022/v9i47581
2. Awogbemi, J.; Adeyeye, M.; Akinkunmi, E.O. (2018). A survey of Antimicrobial Agents Usage in Poultry Farms and Antibiotic Resistance in Escherichia coli and Staphylococci Isolates from the Poultry in Ile-lfe Nigeria. Journal of Infectious Disease and Epidemiology, 4, 047. http://doi.org/10.23937/2474-3658/1510047.
3. Global Animal Slaughter Statistics and Charts. (accessed on 1 July 2023) Available online: https://faunalytics.org/global-animal-slaughter-statistics-charts-2022-update/.
4. Gillespie, J.R. and Flanders, F.B. (2010). Modern Livestock and Poultry Production, 9th ed.; Cengage Learning: Singapore.
5. El Sabry, M.I., Romeih, Z.U., Stino, F.K.R.;Khosht, A.R.; Aggrey, S.F. (2023). Water scarcity can be a critical limitation for the poultry industry. Tropical Animal Health and Production, 55, 215. https://doi.org/10.1007/s11250-023-03599-z
Cited by
1 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献