• Title/Summary/Keyword: Vibrio cholerae non-O1 and non-O139

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The Distribution of Serogroup of Vibrio cholerae non-O1 Isolated in Korea (한국에서 분리된 Vibrio cholerae non-O1의 혈청형의 분포)

  • 성희경
    • Microbiology and Biotechnology Letters
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    • v.31 no.1
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    • pp.13-17
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    • 2003
  • The studies were carried out to identification of biochemical characteristics and serogroup of 55 Vibrio cholerae non-01 isolated from sea waters and shellfish from Apr., 1996 to Nov., 1996 in Korea coastal, and clinical sources from 1984 to 1996 in Korea hospitals. The results were as followed: V. cholerae non-O1 isolated 21 (10%) of 206 samples and the distribution in Kusan area was highest (16%) compared with those of other area, and its were not isolated during low water temperature of 13-18$^{\circ}C$. Of 55 strains, a strain was delayed sucrose utilization for 48hr in the biochemical characteristics. Fifty five V. cholerae non-O1 were differentiated 15 types by serogroup test and O14 of sea waters were 76% of highest followed by 14 clinical sources were O8.

Distribution of Virulence Factors of Vibrio cholerae non-O1 and non-O139 Isolated from Korea (한국에서 분리된 Vibrio cholerae serovar non-O1 및 non-O139 병독 인자의 분포)

  • 성희경
    • Korean Journal of Microbiology
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    • v.35 no.3
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    • pp.248-252
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    • 1999
  • The PI-oduction of virulence factors such as cholera toxin, heinolysin and hemagglutinin in V cliolerae non-01 and non-0139 were examined. Among 65 strains isolated from environmental and clinical blood sources, 29 (14.6%) strains produced hemolysin only, 35(53.9%) sh.ains produced both hemolysin and hemagglutinin. From one 037 slrain isolated from environmenl, cholera toxin, ctx gene, hemolysin, and hemagglutinin were detected. All of the strains isolated from clinical and environmental sources showed hemolytic activity against human 0 group e~ythrocytes. In inhibition patterns of heinagglotination, 5 of 18 clinical strains (27.8%) were inhibited by less than 1% mannose and galactose, while, among the 47 environmental isolates. hose paltems by less than 1% mannose and galactose 55.4% wel-e inhibited. Thel-ehre, exohamagglutinin positive rate was high in clinical blood isolates but in environnlental sources, the rate was almost similar lo ihe rate or endohemagglutinin positive. These results indicaled that V cholerae non-01 and non-0139 produced various virnlence factors such as cholera toxin, hemolysin, and hemagglutinin but not a single factor. Further studies are need for epidemiological or bacteriological shtdies of V cholerae 037 isolated from environment.

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A Novel Marker for the Species-Specific Detection and Quantitation of Vibrio cholerae by Targeting an Outer Membrane Lipoprotein lolB Gene

  • Cho, Min Seok;Ahn, Tae-Young;Joh, Kiseong;Paik, Soon-Young;Kwon, Oh-Sang;Jheong, Won-Hwa;Joung, Yochan;Park, Dong Suk
    • Journal of Microbiology and Biotechnology
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    • v.23 no.4
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    • pp.555-559
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    • 2013
  • Vibrio cholerae O1 and O139 are the major serotypes associated with illness, and some V. cholera non-O1 and non-O139 isolates produce cholera toxin. The present study describes a quantitative polymerase chain reaction (qPCR) assay for the species-specific detection and quantitation of V. cholera using a primer pair based on an outer membrane lipoprotein lolB gene for the amplification of a 195 bp DNA fragment. The qPCR primer set for the accurate diagnosis of V. cholera was developed from publically available genome sequences. This quantitative PCR-based method will potentially simplify and facilitate the diagnosis of this pathogen and guide disease management.

Distribution and Antibiotic Resistance of Vibrio spp. Isolated from Fishery Products and Coastal Areas in Gyeongsangnam-do (경상남도 유통 어패류와 해양환경에서 분리된 비브리오균속 (Vibrio spp.) 분포 및 항생제 내성 특성)

  • Jin Yeong Tak;Jeong Gil Park;Ji-Young Um;Su Wan Choi;Na Lam Hwang;Mi Suk Kim;Jae Dong Kim
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.56 no.5
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    • pp.626-633
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    • 2023
  • Vibrio spp. are aquatic bacteria that are ubiquitous in warm estuarine and marine environments. Especially, V. vulnificus and V. cholerae are currently known to cause potentially fatal infections in humans. This study investigated the distribution and antibiotic resistance of V. vulnificus and V. cholerae isolated from coastal areas of Gyeongsangnam-do in 2022. A total of 252 samples of water, shellfish and coastal sediment were collected from 7 locations along the coast, and 124 samples of fishery products were collected from markets. Among the 252 samples, forty-four V. vulnificus (11.7%) and fourteen V. cholerae non-O1/non-O139 (3.7%), none of which carried the ctx gene, were isolated. Out of the 124 samples, 6 (4.8%) tested positive for V. vulnificus and V. cholerae was not detected. The isolation rates of V. vulnificus and V. cholerae showed a significant correlation with environmental factors such as seawater temperature and salinity. In an antibiotic resistance test, V. vulnificus was susceptible to amikacin, gentamicin, imipenem trimethoprim/sulfamethoxazole, and ciprofloxacin, but resistant to cefoxitin (100.0%), followed by tetracycline (9.1%). Multidrug resistance was also observed. Continuous monitoring of Vibrio pathogens with water temperature and salinity is expected to help reduce the outbreaks, and rational use of antibiotic agents is needed to prevent the accession of antibiotic-resistant microorganisms in aquatic ecosystems.

Distribution of Pathogenic Vibrios in the Aquatic Environment Adjacent to Coastal Areas of South Korea and Analysis of the Environmental Factors Affecting Their Occurrence (2016년도 국내 해양환경내 병원성 비브리오균의 분포 및 해양환경인자간의 상관성 분석)

  • Jeong, Young-Il;Myung, Go-Eun;Choi, Eun-Jin;Soh, Sang-Moon;Park, Gi-Jun;Son, Tae-Jong
    • Journal of Environmental Health Sciences
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    • v.44 no.2
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    • pp.133-142
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    • 2018
  • Objectives: The pathogenic Vibrios genus denotes halophilic bacteria that are distributed in aquatic environments, including both sea and freshwater. Vibrio cholerae, Vibrio vulnificus, and Vibrio parahaemolyticus are the most important species since they can be potent human pathogens and leading causes of septicemia, wound infections, and seafood borne gastroenteritis. The recent emergence of a potential pandemic clone, V. cholera serotype O1 and the cholera outbreak in South Korea in 2016 indicates the importance of consistent surveillance of pathogenic Vibrio genus within coastal areas. Methods: The present study was undertaken to determine where and how vibrios live in the aquatic environment adjacent to coastal areas of South Korea. For this survey, a total of 838 samples were obtained at 35 different sites in South Korean coastal areas during the period from January 2016 to December 2016. Pathogenic vibrios was determined using the real-time PCR method, and its clones were isolated using three selective plating media. We also monitored changes in seawater and atmospheric temperature, salinity, turbidity, and hydrogen ion concentration at the collection points. Results: The total isolation rates of V. vulnificus, V. cholera (non-pathogenic, non-O1, non-O139 serogroups), and V. parahaemolyticus from seawater specimens in 2016 were 14.2, 13.48, and 67.06%, respectively. Conclusions: The isolation rates of pathogenic vibrios genus showed a positive correlation with temperature of seawater and atmosphere but were negatively correlated with salinity and turbidity.

Sequence Variations in the Non-Coding Sequence of CTX Phages in Vibrio cholerae

  • Kim, Eun Jin;Yu, Hyun Jin;Kim, Dong Wook
    • Journal of Microbiology and Biotechnology
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    • v.26 no.8
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    • pp.1473-1480
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    • 2016
  • This study focused on the variations in the non-coding sequences between ctxB and rstR of various CTX phages. The non-coding sequences of CTX-1 and CTX-cla are phage type-specific. The length of the non-coding region of CTX-1 and CTX-cla is 601 and 730 nucleotides, respectively. The non-coding sequence of CTX phage could be divided into three regions. There is a phage type-specific Variable region between two homologous Common regions (Common regions 1 and 2). The non-coding sequence of RS1 element is similar to CTX-1 except that Common region 1 is replaced by a short RS1-specific sequence. The non-coding sequences of CTX-2 and CTX-cla are homologous, indicating the non-coding sequence of CTX-2 is derived from CTX-cla. The non-coding region of CTX-O139 is similar to CTX-cla and CTX-2; however, it contains an extra phage type-specific sequence between Common region 2 and rstR. The variations in the non-coding sequences of CTX phages might be associated with the difference in the replication efficiency and the directionality in the integration into the V. cholerae chromosome.