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가축 분변중의 항생제 내성균주의 분포에 관한 연구A Study on the Distribution of Antibiotic Resistant Bacteria in Domesticated Animal Feces

Other Titles
A Study on the Distribution of Antibiotic Resistant Bacteria in Domesticated Animal Feces
Authors
권혁구김종규이장훈
Issue Date
2012
Publisher
한국환경보건학회
Keywords
livestock; antibiotic resistant bacteria; E. coli; feces; compost
Citation
한국환경보건학회지, v.38, no.02, pp.142 - 150
Journal Title
한국환경보건학회지
Volume
38
Number
02
Start Page
142
End Page
150
URI
https://scholarworks.bwise.kr/gachon/handle/2020.sw.gachon/16848
DOI
10.5668/JEHS.2012.38.2.142
ISSN
1738-4087
Abstract
Objectives: To estimate the multi-antibiotic resistant bacterial contaminant load discharged from livestock farms, we randomly selected livestock farms specializing in cattle, swine, and fowl and collected bacterial strains from domesticated animal feces and compost samples. Problems with resistance to antibiotics are becoming worldwide issues, and as the consumption of antibiotics appears to be excessive in Korea as well, the emergence of antibiotic resistant bacteria shows the possibility to cause potentially serious social problems. Methods: To monitor multi-antibiotic resistant bacterial constituents, aerobic bacteria and Escherichia coli were isolated from domesticated animal feces and compost. Antibiotic resistance testing was performed by the disc diffusion method using 13 different antibiotics. Results: Examining the degree of sensitivity to antibiotics of the aerobic bacteria originating from domesticated animal feces, fowl feces showed the highest distribution rate (35.5%), followed by swine feces compost (23.1%), swine feces (18.2%), cattle feces (14.9%), and cattle feces compost (8.2%). Antibiotic resistance tests of aerobic bacteria and E. coli originating from domestic animals feces resulted in 83.6% and 73.5% of each strain showing resistance to more than one antibiotic, respectively. Conclusions: These results suggest that increasing multi-antibiotic resistant bacteria in the environment has a close relation to the reckless use of antibiotics in livestock.
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