• Title/Summary/Keyword: Rhabdoviridae

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A Basical Study on Viral Haemorrhagic Septicemia of Rainbow trout, Salmo gairdneri (무지개송어의 바이러스성 출혈성 패혈증에 관한 기초적 연구)

  • Lee, Keun-Kwang
    • Journal of fish pathology
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    • v.7 no.1
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    • pp.7-11
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    • 1994
  • The viral hemorrhagic septicemia of rainbow trout, Salmo gairdneri was studied. The hematocrit values of diseased fish were very low than those of normal fish. And, the GOT and GPT values of serum of diseased fish were a little high than those of normal fish. Cytopathic effect of viral agents(serum and organs of diseased fish) was observed with inverted phase contrast microscopy. After 24hrs infection, the cells were showed the cytopathic effect.

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OIE Zoo-sanitary Code ; Chapter 3.1.5 (광견병에 관한 국제수역사무국 동물위생규약)

  • 강영배;배상호
    • Journal of the korean veterinary medical association
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    • v.30 no.3
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    • pp.172-182
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    • 1994
  • 광견병(rabies)은 국제수역사무국에서 지정한 동물전염병 분류 List B에 속하며, 전염병 코드 번호는 B 058이다. 본 병의 병명은 영어로는 , 불어로는 , 스페인어로는 로 표기하며, 특히 인체에서의 본병에 대하여는 로 표현한다. 우리말로는 동물에서의 질병을 <광견병>, 인체에서의 본병을 <공수병>으로 부르고 있다. 병인체는 Rhabdoviridae에 속하는 Lyssavirus이며, 최대 잠복 기간(maximum incubation period)은 6개월로 알려져 있다. 인수공통전염병(zoonosis)의 1종이다. 매개체(vector)로 작용하는 절지동물은 없는 것으로 알려져 있다. 광견병과 관련하여, 동물의 국제교역을 위한 동물검역 시행에 있어서 반드시 적용하여야 할 사항인 국제수역사무국(O.I.E) 제정 동물위생 규약(Zoo-sanitary Code)을 번역하여 소개한다.

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Rabies immune status in the stray and companion dogs in Korea

  • Yang, Dong-Kun;Yoon, Soon-Seek;Lee, Kyoung-Ki;Byun, Jae-Won;Bae, You-Chan;Oh, Yoon-I;Song, Jae-Young
    • Korean Journal of Veterinary Research
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    • v.50 no.2
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    • pp.133-137
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    • 2010
  • Rabies virus (family Rhabdoviridae, genus Lyssavirus, RV) is the causative agent of rabies in mammals. We conducted a sero-epidemiological survey for RV using sera from South Korean stray and companion dogs in the present study. A total of 533 canine serum samples were collected between February 2006 and December 2007 and were screened for rabies immunity with a neutralizing peroxidase linked assay. Both companion (49.1%) and stray (60.1%) dogs demonstrated RV seropositivity. Regional RV antibody prevalence was measured in the Jeju (87.5%), Gyeonggi (62%), Gyeongsang (59.1%), Jeonra (42%), Chungcheong (37.9%), and Gangwon (30.4%) provinces. Prevalence increased with age but did not exceed 80% in any age group. Stray and companion dogs had RV antibody prevalence values of 26.7% and 23.7%, respectively. Seroprevalence was significantly associated with age $({\chi}2\;=\;9.46;\;p\;=\;0.024)$ for companion dogs, although this association was not evident in stray dogs. There were no significant differences in age between stray and companion dogs and no gender differences in RV seroprevalence. Our results suggested that a widespread and reinforced vaccination program must be applied to Korean dogs.

Molecular epidemiology and virulence changes of infectious hematopoietic necrosis virus (IHNV) in East Asia (동아시아 지역에 있어 전염성조혈기괴사증 바이러스 (IHNV)의 분자역학 및 병독성의 변화)

  • Nishizawa, Toyohiko
    • Journal of fish pathology
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    • v.31 no.1
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    • pp.1-8
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    • 2018
  • Causative agent of infectious hematopoietic necrosis (IHN) belonging to genus Novirhabdovirus (Rhabdoviridae). Economic losses caused by IHNV are serious in mainly Oncorhynchus spp. including rainbow trout O. mykiss and Atrantic salmon Salmo salar. IHNV was initially found by endemic presence in U.S. West Coast for sockeye salmon fry O. nerka and chinook salmon fry O. tshawytscha in the 1950s, and it has spread to Japan, Korea and Taiwan in the 1970s, and also to Italy and France in the 1990s. Currently, IHNV is detectable in many parts of the world, including Russia and South America. Mortality due to IHNV infection in fish with ${\leq}0.5g$ of body weight reaches 60% to 100%, while the mortality reduces by fish growing. In recent years, onset of IHNV infection has increased also in fish with large sizes. Here, we introduce molecular epidemiology and virulence changes of IHNV in East Asia, furthermore, we discuss on future prospects in IHNV researches.

Molecular Characterization and Survey of the Infection Rate of Orchid fleck virus in Commercial Orchids

  • Kim, Sung-Ryul;Yoon, Ju-Yoon;Choi, Gug-Sun;Chang, Moo-Ung;Choi, Jang-Kyung;Chung, Bong-Nam
    • The Plant Pathology Journal
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    • v.26 no.2
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    • pp.130-138
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    • 2010
  • Orchid fleck virus (OFV) is an unassigned plant virus in the family Rhabdoviridae. OFV was isolated from Cymbidium sp. showing oval necrotic lesions on their leaves in Korea, and designated as OFV-NHHS1. The complete nucleotide sequence of the RNA1 (6,413 nt) (GenBank accession no. AB516442) and RNA2 (6,001 nt) (GenBank accession no. AB516441) was determined in this study. RNA1 and RNA2 contained five and one ORF respectively. RNA1 encodes nucleocapsid (N) of 49 kDa, ORF2 of 26 kDa, ORF3 of 38 kDa, ORF4 of 20 kDa and glycoprotein (G) of 61 kDa proteins, whereas RNA2 encodes a single polymerase of 212 kDa. OFV-NHHS1 shared extremely high similarity of 98.6-100% and 98.9-99.6% in nucleotidle and amino acid sequences with a Japanese isolate, OFV-so, respectively. However, the N, G and L of OFV-NHHS1 revealed 6.9-19.3%, 7.3-12.0%, and 13.4-26.6% identities to those of 29 Rhabdoviruses, respectively. To survey the infection rate of OFV in commercial orchids in Korea, 51 Cymbidium sp., 10 Phalaenopsis sp., 22 Oncidium sp. and 21 Dendrobium sp. plants that showed typical viral symptoms were collected. RT-PCR with specific primers for detection of Cymbidium mosaic virus (CymMV), ORSV and OFV showed high infection rate by ORSV alone and double infection by ORSV and CymMV. One of the orchids tested was infected with OFV. This is the first report of the complete nucleotide sequences of OFV isolated in Korea.

Production and characterization of monoclonal antibodies against rabies virus (광견병바이러스에 대한 단크론항체 생산 및 특성)

  • Lee, Seung-Chul;Yoon, Young-Sim;Song, Yun-Kyung;Woo, Gye-Hyeong;Jean, Young-Hwa;Kang, Shien-Young
    • Korean Journal of Veterinary Service
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    • v.33 no.2
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    • pp.105-111
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    • 2010
  • Rabies virus which belongs to the genus Lyssavirus of the family Rhabdoviridae is known as a highly neurotropic virus and causes fatal encephalitis accompanied by severe neurological symptoms in almost all mammals, including humans. In this study, monoclonal antibodies (MAbs) against rabies virus were produced, characterized and applications of MAbs as diagnostic reagents were assessed Spleen and inguinal lymph node cells from Balb/c mouse immunized with purified rabies virus were fused with SP2/O myeloma cells using polyethylene glycol (PEG) and hybridoma cells producing rabies virus-specific MAbs were screened by an indirect fluorescent antibody test. A total of ten MAbs were produced against rabies virus. The protein specificity and neutralizing activity of MAbs were determined by Western blot analysis and fluorescent antibody virus neutralization test, respectively. As a result, two MAbs, 5G3 and 6H4 had specificity for nucleoprotein (N protein) and two other MAbs, 5B1 and 5C1 had neutralizing activity for rabies virus. Some MAbs recognized the rabies virus-infected bovine brain stem cells by immunohistochemistry (IHC) assay. In conclusion, it was confirmed that MAbs produced in this study were rabies virusspecific and could be used as reliable diagnostic reagents for the detection of rabies virus.

Viral Hemorrhagic Septicemia Virus NV Gene Decreases Glycolytic Enzyme Gene Transcription (바이러스성 출혈성 패혈증 바이러스 NV 단백질에 의한 glucokinase 전사 활성의 억제)

  • Cho, Mi Young;Hwang, Jee Youn;Ji, Bo Young;Park, Myoung Ae;Seong, Mi So;Kim, So Young;Jung, Ye Eun;Cheong, Jae Hun;Choi, Yung Hyun
    • Journal of Life Science
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    • v.26 no.12
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    • pp.1470-1476
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    • 2016
  • The viral hemorrhagic septicemia virus (VHSV), which belongs to the Novirhabdovirus genus of the Rhabdoviridae family, is a viral pathogen that causes severe losses in the olive flounder farming industry. Among six encoding VHSV proteins, the non-virion (NV) protein has been shown to have an impact on virulence. In our previous studies, transcriptomics microarray analysis by using VHSV-infected olive flounder showed that VHSV infection significantly down-regulated the mRNA expression of glycolytic enzymes. In addition, VHSV NV protein variants decreased the intracellular ATP level. Based on these results, we have tried to examine the effect of VHSV NV protein on glycolytic enzyme glucokinase expression, which phosphorylates glucose to glucose 6-phosphate. Our results indicated that the NV protein significantly decreased the mRNA expression of glucokinase in olive flounder HINAE cells. Furthermore, the NV protein played a negative role in the promoter activation of glucokinase. Furthermore, glucose uptake was effectively inhibited by VHSV infection and NV protein expression in olive flounder HINAE cells. These results suggest that the VHSV NV protein negatively regulates glycolytic enzyme expression by a transcription level and eventually leads to gradual morbidity of olive flounder through cellular energy deprivation. The present results may be useful for the prevention and diagnosis of VHSV infection in olive flounder.