• Title/Summary/Keyword: swine phages

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A comparison of lytic activity of swine and chicken phages with Staphylococcus hyicus of swine, chicken and cattle origin (돼지, 닭 및 소유래 Staphylococcus hyicus에 대한 swine phage와 chicken phage의 용균능 비교)

  • Park, Cheong-Kyu;Jang, Han-Nae;Kwon, Young-Sam
    • Korean Journal of Veterinary Research
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    • v.43 no.1
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    • pp.87-94
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    • 2003
  • The lytic activity of the set of swine and chicken phages which were derived from lysogenic Staphylococcus hyicus strains of swine and chicken origin was compared by means of S. hyicus isolated from swine, chicken and cattle. Of the 80 strains each from swine and chicken, 71 (88.8%) of strains from swine and all the strains of chicken origin were found to be lysogenic. Swine phages showed wider range of lytic activity to the examined strains than that of chicken phages. Using chicken phages at $100{\times}routine$ test dilution (RTD), 25.0%, 85.6% and 50.0% of swine, chicken and bovine strains were lysed, respectively. However, when the set of swine phages was used at $100{\times}RTD$, higher frequency of the typable strains was found in strains of swine and chicken origin (73.8% and 90.2%). Phage F12 and L16 from chicken set were found to be highly active with chicken and bovine strains. On the contrary, all the swine strains were completely resistant to lysis by the two phages at $100{\times}RTD$. Thirteen (12.5%) of 104 S. aureus strains, 1 (1.8%) of 55 S. simudance strains, 31 (58.5%) of 53 S. chromo genes strains, and none of 31 strains of other coagulase-negative Staphylococcus species isolated from bovine mastitis were typable with the set of swine phages.

Phage types of Salmonella enteritidis isolated from animal and human in Korea (한국의 동물과 사람에서 분리한 Salmonella enteritidis의 phage types)

  • Woo, Yong-ku;Park, Mi-sun;Woo, Seung-ryong;Kim, Bong-hwan;Kim, Jae-hak
    • Korean Journal of Veterinary Research
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    • v.40 no.3
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    • pp.515-524
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    • 2000
  • The present study was conducted to investigate the phage types(PT) of Salmonella enteritidis(SE) isolated from animals and human patients in Korea during the period 1993-1999. SE were isolated from chickens including the layer and broiler, duck, rat, swine and human patients in nationwide scale. A total of 231 non-human and 14 human SE strains were phage typed and 80.4%(197/245) of SE isolates tested could discriminate as a ten SEPTs including the RDNC by the 10 standard phages, which were brought from the Central Public Health Laboratory in England. In analysing of phage types both animal and human SE isolates, SEPT 4(55.4%) was the most prevalent in domestic animals including the layer(39.3%) and broiler(64.5%), duck(55.5%), and swine(75.0%) since 1993. About 57% of the S enteritidis from human was SEPT 4. Along with SEPT 4, SEPT 1, SEPT 6a, SEPT 7 and SEPT 7a var, SEPT 9b, SEPT 15, SEPT 21b and SEPT 22 were also found from animal and human SE isolates. SEPT 4(40.0%) was isolated from frozen chicken meats imported from China along with SEPT 7 and 7a var strains in this study. In conclusion, SEPT 4 was the most predominant SEPT in our country regardless of animal or human hosts including the Che-Ju island and almost exclusively found in domestic poultry(layer and broiler). During the review period, SEPT 4 has already been spreading continually among the animal hosts since 1993.

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Draft genome sequence of Lactobacillus salivarius KLW001 isolated from a weaning piglet (이유자돈으로부터 분리한 Lactobacillus salivarius KLW001의 유전체 분석)

  • Jin, Gwi-Deuk;Lee, Jun-Yeong;Kim, Eun Bae
    • Korean Journal of Microbiology
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    • v.53 no.2
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    • pp.134-136
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    • 2017
  • Lactobacillus salivarius KLW001, a species of lactic acid bacteria (LAB), was isolated from a weaning piglet in a swine farm, South Korea, to develop an antimicrobial probiotic strain for piglets. Herein, we report the draft genome sequence of the strain. The genome contains 2,326,706 bp with a G+C content of 33.0% in 166 contigs (${\geq}500bp$). From the genome, we found out 4 genes related to antibiotic resistance, 36 genes for phages, 3 genes for bile hydrolysis, and 27 CRISPR spacers.

Inhibition of Clostridium perfringens using Bacteriophages and Bacteriocin Producing Strains

  • Heo, Sunhak;Kim, Min Gon;Kwon, Mirae;Lee, Hee Soo;Kim, Geun-Bae
    • Food Science of Animal Resources
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    • v.38 no.1
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    • pp.88-98
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    • 2018
  • In this study, we isolated and characterized a bacteriocin-producing strain and two bacteriophages (P4, A3), showing antimicrobial effects against Clostridium perfringens, from chicken and swine feces by the spot-on-the lawn antagonism method. The selected strain was identified as Streptococcus hyointestinalis by 16S rRNA gene sequencing. The bacteriocin from the isolated strain exhibited strong inhibitory activity against four strains of C. perfringens and all the tested strains of Listeria monocytogenes, and the bacteriocin were highly heat- and pH-stable even at pH 2, pH 10 and $121^{\circ}C$ for 15 min. We also evaluated the combined effects of the isolated bacteriocin and phages. Combining the phage treatments and bacteriocin resulted in a synergetic effect compared with the phage or the bacteriocin alone. In addition, during the probiotic test, the bacteriocin-producing S. hyointestinalis B19 strain reduced the population of C. perfringens significantly. Treatment with S. hyointestinalis B19 and a cocktail of lytic bacteriophages eradicated the C. perfringens KCTC $3269^T$, completely. Consequently, the isolated bacteriocin and bacteriophages represent candidates for effective biocontrol of C. perfringens, and bacteriocin-producing S. hyointestinalis B19 is a potential probiotic candidate for use in domestic animals.

Virulent Bacteriophage for Growth Inhibition of Cronobacter sakazakii and Salmonella enterica Typhimurium (용균성 박테리오파지에 의한 Cronobacter sakazakii와 Salmonella enterica Typhimurium의 생육저해)

  • Lee, Young-Duck;Park, Jong-Hyun
    • Korean Journal of Food Science and Technology
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    • v.43 no.2
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    • pp.176-181
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    • 2011
  • Cronobacter sakazakii and Salmonella enterica Typhimurium are hazardous pathogens, especially for ready-toeat foods. For control of pathogens, the virulent bacteriophages were isolated, identified, and applied to infant formula milk and vegetable juice. The phages were isolated from swine feces and identified by morphology and molecular characteristics. ES2 phage for C. sakazakii and ST2 phage for S enterica Typhimurium were identified as Myoviridae and Siphoviridae, respectively. Their burst sizes were $52{\pm}5PFU/cell$ for ES2 phage and $21{\pm}3PFU/cell$ for ST2 phage after latent period of 30-40 minutes. ST2 phage showed higher heat stability at $60^{\circ}C$ than ES2 phage. ES2 phage held the growth of C. sakazakii untill 6 hr afterwhich the number decreased when applied to the infant formula milk and vegetable juice. ST2 phage also showed growth inhibition so that the number of S. enterica Typhimurium decreased. Therefore, virulent bacteriophages might be an agent for the growth inhibition of C. sakazakii and S. enterica Typhimurium in such the ready-to-eat foods.