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Transmission identification of Escherichia coli aerosol in chicken houses to their environments using ERIC-PCR 被引量:5
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作者 DUAN HuiYong CHAI TongJie +3 位作者 CAI YuMei ZHONG ZhaoBing YAO MeiLing ZHANG XingXiao 《Science China(Life Sciences)》 SCIE CAS 2008年第2期164-173,共10页
In order to study E. coli aerosol spreading from chicken houses to their surrounding air, air samples, including indoor and outdoor air (upwind 10 and 50 m as well as downwind 10, 50, 100, 200 and 400 m away) of 5 chi... In order to study E. coli aerosol spreading from chicken houses to their surrounding air, air samples, including indoor and outdoor air (upwind 10 and 50 m as well as downwind 10, 50, 100, 200 and 400 m away) of 5 chicken houses were collected using six-stage Andersen microbial samplers and Reuter-Centrifugal samplers (RCS). E. coli concentrations (CFU/m3 air) collected from different sampling sites were calculated. E. coli strains from chicken feces samples were also isolated. Furthermore, the enterobacterial repetitive intergenic consensus (ERIC)-PCR method was applied to amplify the isolated E. coli strain DNA samples. Through the genetic similarity analyses of the E. coli obtained from different sampling sites, the spreading of bioaerosol from animal houses to the ambient air was characterized. The results showed that the isolated E. coli concentrations in indoor air (9―63 CFU/m3) in 5 chicken houses were higher than those in upwind and downwind air, but there were no significant differences between the indoor and downwind sites 10 m away from all the 5 houses (P>0.05). The phylogenetic tree indicated that a part of the E. coli (34.1%) isolated from indoor air had 100% similarity with those isolated from feces, and that most of E. coli isolated (54.5%) from downwind at 10, 50, 100 or even 200 m had 100% similarity with those isolated from indoor air or feces too. But those isolated from upwind air had a lower similarity (73%―92%) with corresponding strains isolated from indoor air or feces. Our results suggested that some strains isolated from downwind air and indoor air originated in the chicken feces, but most of isolates obtained from upwind air samples did not come from the chicken feces or indoor air. Effective hygienic measures should be taken in animal farms to prevent or minimize downwind spreading of microorganism aerosol. 展开更多
关键词 chicken house spread of E.coli aerosol ERIC-PCR similarity identification epidemiological significance
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Ozone Disinfection Test in Chicken House
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作者 Lv Yanqiu Huang Dongfeng +9 位作者 Yang Xingang Yao Xuejun Ba Liangxing Xue Yong Wang Meili Xing Guodong Zhao Yongfu Li Chunmei Meng Weiya Wang Yimeng 《Animal Husbandry and Feed Science》 CAS 2018年第2期97-98,共2页
[Objective] The paper was to verify the disinfeelion effect of ozone on livesioek and poultry houses. [Method] The empty chicken house was disinfected by ozone with the help of ozone disinfector. [Result] As the ozone... [Objective] The paper was to verify the disinfeelion effect of ozone on livesioek and poultry houses. [Method] The empty chicken house was disinfected by ozone with the help of ozone disinfector. [Result] As the ozone disinfeelor was worked for 60 min, the average sterilizing rate of air was 85.33%; Ihe average sterilizing rale on the surface of chicken coop was 86.77%; and the average sterilizing rate of wall was 89.13%. The disinfection effect was obvious. [Conclusion] The results will providc references for promotion and application of ozone disinfector in breeding in- dustry. 展开更多
关键词 Space in chicken house OZONE DISINFECTION Sterilizing rate
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