• Title/Summary/Keyword: coliphage

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Removal of Virus in Home Drinking Water Treatment Systems (가정용 정수시스템의 바이러스 제거)

  • 김영진;오남순;정문호
    • Journal of Environmental Health Sciences
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    • v.26 no.4
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    • pp.45-48
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    • 2000
  • Reverse osmosis filtration(RO) system and ultrafiltration(UF) system are principally use for domestic home drinking water treatment systems. The object of this study is to make a comparison between two systems in terms of theirs abilities to remove RNA coilphage QB as an indicator of pathogenic enteroviruses. The virus removal ratio of RO system was 99.999%, which was higher than EPA virus treatment guideline(99.99%). In the course of filtration, removal ratios of sediment filter, pre-carbon filter, reverse osmosis membrane and post-carbon filter were 75.000%, 93.208%, 99.997% and 99.999%, repectively. In case of UF system, virus removal ratio was 99.708%. Removal ratios of sediment filter, pre-carbon filter, post-carbon filter and ultrafiltration membration membrane were 71.038%, 91.530%, 98.283% and 99.708%, respecively, in UF steps. Therefore, RO system is more effective than UF system in virus removal.

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Isolation and Characterization of the Smallest Bacteriophage P4 Derivatives Packaged into P4-Size Head in Bacteriophage P2-P4 System

  • Kim, Kyoung-Jin;Song, Jae-Ho
    • Journal of Microbiology
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    • v.44 no.5
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    • pp.530-536
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    • 2006
  • Bacteriophage P4, a satellite phage of coliphage P2, is a very useful experimental tool for the study of viral capsid assembly and cos-cleavage. For an in vitro cos-cleavage reaction study of the P2-P4 system, new shortened and selectable markers containing P4 derivative plasm ids were designed as a substrate molecules. They were constructed by swapping the non-essential segment of P4 DNA for either the kanamycin resistance (kmr) gene or the ampicillin resistance (apr) gene. The size of the genomes of the resulting markers were 82% (P4 ash8 delRI:: kmr) and 79% (P4 ash8 delRI:: apr) of the wild type P4 genome. To determine the lower limit of genome size that could be packaged into the small P4-size bead, these shortened P4 plasmids were converted to phage particles with infection of the helper phage P2. The conversion of plasmid P4 derivatives to bacteriophage particles was verified by the heat stability test and the burst size determination experiment. CsCl buoyant equilibrium density gradient experiments confirmed not only the genome size of the viable phage form of shortened P4 derivatives, but also their packaging into the small P4-size head. P4 ash8 delRI:: apr turned out to be the smallest P4 genome that can be packaged into P4-sized head.

Irrigation with Microbial-Contaminated Water and Risk of Crop Contamination (미생물 오염 용수 관개에 의한 작물의 오염 위험성)

  • Choi, C. Yeon-Sik;Song, In-Hong;Kwun, Soon-Kuk
    • Journal of The Korean Society of Agricultural Engineers
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    • v.49 no.2
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    • pp.87-97
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    • 2007
  • The aim of this study was to compare crop contamination between two irrigation methods using microbial-contaminated water. The effect of relative humidity on microbial survival of the three indicator microorganisms was also investigated. Escherichia coli ATCC 25922, Clostridium perfringens ATCC 3624, and coliphage PRD1 were applied to irrigation water to grow cantaloupe, lettuce, and bell pepper. Half of the sixteen plots were subsurface drip irrigated (SDI) and the other half were furrow irrigated (FI). Two relative humidity levels were controlled at 15-65 % and 55-80 % for the dry and humid condition experiments, respectively. Samples of produce, surface soil, and subsurface soil at a depth of 10 cm were collected over a two-week period following the application of the study microorganisms. Overall, greater contamination of both produce and soil occurred in the FI plots. For the SDI plots, preferential water paths and resulting water appearance on the seed beds seemed to be responsible for produce contamination. Relative humidity levels did not appear to affect microbial survival in soil. PRD 1 showed lower inactivation rates than 5. coli in both dry and humid conditions. C. perfringens did not experience significant inactivation over the experimental period, suggesting this microorganism can be an effective indicator of fecal contamination.

Impact of Land-based Pollution Sources on Seawater and Shellfish after Rainfall Event in the Jindongman Area (강우 발생에 의한 진동만해역의 육상오염원이 해수 및 패류에 미치는 영향 분석)

  • Jang Won Lee;Minchul Yoon;Ji Hoon Kim;Sung Rae Jo;Ki Ho Nam;Kwang Soo Ha;Kunbawui Park
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.56 no.6
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    • pp.798-809
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    • 2023
  • In this study, we evaluated the impacts of land-based pollution sources on seawater and shellfish in the Jindongman area after 20.5 mm and 90.6 mm rainfall events. We analyzed sanitary indicator microorganisms used in survey management, such as total coliform, fecal coliform, Escherichia coli, and male-specific coliphage in Waste water treatment plant (WWTP), major inland pollution source,s seawater, and shellfish for 4 days after rainfall events. Our results showed that the range of coliform group and fecal coliform was 1.8-49 and <1.8-4.5 MPN (most probable number)/100 mL, respectively, after rainfall events in WWTP discharge water. Furthermore, the radius of the calculated impacted area of major inland pollution sources ranged from 5 to 798 m after 20.5 mm of rainfall and 30 to 1,031 m after 90.6 mm of rainfall. The fecal coliform of seawater at 30 stations in the shellfish growing area and areas adjacent to four stations was <1.8-130 and from <1.8-79 MPN/100 mL, respectively. The E. coli level of shellfish at 7 stations in the shellfish growing area was <18-220 MPN/100 g.

Molecular Phylogeny of Korean-type Coliphages and American-type Coliphages Determined by a RAPD Analysis (RAPD 분석법에 의한 한국형 대장균파아지와 미국형 대장균파아지의 분자적 계통분류)

  • 권오식
    • Biomedical Science Letters
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    • v.6 no.2
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    • pp.131-139
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    • 2000
  • RAPD-PCR was applied to identify the phylogenetic relationship between isolated Korean-type coliphages ($\phi$C1, $\phi$C2, $\phi$C3 and $\phi$C4) and well-known American coliphages ($\phi$T2, $\phi$T4, $\phi$T5, $\phi$T7 and ${\phi}{\lambda}$). Subsequently, a computer analysis was carried out with the results of RAPD-PCR. As a result, 9 individuals were divided into five groups. The Korean-type coliphages formed a single cluster which showed very high genetic similarity but the American-type coliphages revealed very low genetic similarity among them. In particular, the $\phi$T2와 $\phi$T4 (T$_{even}$ phages) made one sub-cluster among American coliphages, and they were very distant from $\phi$T5, $\phi$T7 and ${\phi}{\lambda}$. However, ${\phi}{\lambda}$ made a cluster with the Korean-type coliphages that we isolated. The genome size of Korean-type coliphages was ranged from 25,000 bp to 35,000 bp. Among them, the genome of $\phi$C2 was the smallest and that of $\phi$C1 was the biggest, while others were in the middle of the size.

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Isolation and characterization of bacteriophages for the control of Shiga Toxin-producing E. coli (시가 독소 생성 대장균의 제어를 위한 박테리오파지의 분리와 특성 분석)

  • Lim, Ga-Yeon;Park, Do Won;Lee, Young-Duck;Park, Jong-Hyun
    • Korean Journal of Food Science and Technology
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    • v.50 no.6
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    • pp.594-600
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    • 2018
  • Shiga toxin-producing Escherichia coli (STEC) is an important pathogenic bacterium. To control STEC, the characteristics of the ECP33 and NOECP91 coliphages, which belong to the Myoviridae family, were analyzed. The host inhibition range for a total of 44 STEC strains was 45.5% for ECP33 and 65.9% for NOECP91. ECP33 and NOECP91 were relatively stable at $65^{\circ}C$, 50 ppm of sodium hyperchlorite, and a pH value of 4-10. However, the two phages were susceptible to a temperature of $70^{\circ}C$. NOECP91 was killed within 1 h after exposure to 30% ethanol, but ECP33 showed high tolerance even after exposure to 70% ethanol for 1 h. Interestingly, the inhibition of STEC growth according to the multiplicity of infection of 0.1 was confirmed until no growth was observed after 10 hours of culture with the phages. Therefore, the ECP33 and NOECP91 phages may be applied as a biological control agent for Shiga toxin-producing E. coli.