• Title/Summary/Keyword: avian infectious bronchitis

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Studies on the Transition of the Rabbit Antibody for the Avian Infectious Bronchitis Virus (전염성기관지염(傳染性氣管支炎)바이러스에 대한 가토항체(家兎抗體)의 소장(消長)에 관한 연구(硏究))

  • Yoo, Tai Suck
    • Korean Journal of Veterinary Research
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    • v.9 no.2
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    • pp.27-29
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    • 1969
  • Observation of transmissive antibody was made on the rabbit inoculated in the virus of avian infection bronchitis. Throughout the studies, the following experimental results were obtained and summarized here. 1. The antibody of rabbit inoculated with the virus of avian infectious bronchitis were persisted for 2-years. 2. The antibody of adult rabbit against the avian infectious bronchitis virus were transmitted to the suckling rabbit and persisted for 15-weeks.

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Studies on the Avian Infectious Bronchitis Virus I. Antbody Survey on Avian Infectious Bronchitis Virus (닭의 전염성 기관지염 바이러스에 관한 연구 1. 전염성 기관지염 바이러스의 항체에 대한 분포 조사)

  • Yoo, Tai Suck
    • Korean Journal of Veterinary Research
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    • v.8 no.1
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    • pp.24-30
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    • 1968
  • From 1962 to 1968, serum samples were collected from fowls of six provinces in Korea. The investigator tested for serum neutralizing antibody against the Beaudette strain of intecfious bronchitis virus. Twenty(40 percent)serum samples out of fifty revealed a neutralization index of more than 30. Neuralizing antibodies of infectious bronchitis virus are widely spread among chickens in Korea. Intensive poultry farming zones, adult chickens have been neutralizing antibody of infectious bronchitis virus.

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Studies on the combined inactivated oil emulsion vaccine of Newcastle disease and avian infectious bronchitis in chickens (닭의 뉴캣슬·전염성 기관지염 바이러스 혼합 불활화 오일 에멀션 백신의 생산시험)

  • Jeon, Yun-seong;Kim, Sun-joong;Seo, Ik-soo
    • Korean Journal of Veterinary Research
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    • v.30 no.1
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    • pp.79-84
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    • 1990
  • A single inoculation of combined vaccines of Newcastle disease and avian infectious bronchitis of chicken, in a form of gel-oil emulsion type (gel-OEV) was tested their immunogenecity in chickens. The results were summerized as follows: 1. Average minimum and maximum ELISA antibody titers of ND were recorded 2407 and 13144 respectively. In the case of IB, 1824 and 4496 were recorded as minimum and maximum titers. 2. The distribution of average proportional groups, in the lowest and the highest, were 1.6 and 7.0 in ND ELISA and 1.4 and 2.8 in IB ELISA antibody titers. 3. ND ELISA antibody titers were significantly increased upto 7th week after the vaccination. On the other hand, IB ELISA antibody titers were raised upto 4th week after the vaccination.

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Prevalence of major legal communicable diseases in chicken and ducks in Jeonbuk province (2004~2008) (전북지역에서 2004~2008년에 닭과 오리에서 법정전염병 발생동향 분석)

  • Hur, Boo-Hong;Lee, Jeong-Won;Song, Hee-Jong
    • Korean Journal of Veterinary Service
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    • v.34 no.1
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    • pp.19-29
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    • 2011
  • Prevalence of major legal communicable diseases in chickens and ducks, which had occurred in Jeonbuk province from year 2004 to 2008. Total 283 farms 1,419,244 chickens and ducks have been affected by avian diseases. Specifically, fowl typhoid (FT) occurred in 92 farms 416,600 chickens, Marek's disease (MD) in 45 farms 145,563, duck virus hepatitis (DVH) in 31 farms 199,200, infectious bursal disease (IBD) in 27 farms 113,220, infectious bronchitis (IB) in 27 farms 280,300, low pathogenic avian influenza (LPAI) in 26 farms 78,495, avian mycoplasmosis in 16 farms 103,774, Newcastle disease (ND) occurred in 11 farms 61,052, avian encephalomyelitis (AE) in 7 farms 21,000, Pullorum disease (PD) occurred in 1 farm 40. According to total analysis about major legal communicable diseases, 1 species of first-class legal communicable diseases have occurred, 3 species of second-class and 6 species of third-class all adding up to 10 species. In the first-class diseases, Newcastle disease have occurred. Pullorum and fowl typhoid, duck virus hepatitis in the second-class have occurred and as third-class diseases, Marek's disease, Infectious bursal disease, Infectious bronchitis, avian mycoplasmosis, avian encephalomyelitis, low pathogenic avian influenza have occurred.

Prevalence of Serum Antibodies in Breeder Chickens against Specific Avian Pathogens (특정(特定) 전염성(傳染性) 병인체(病因體)에 대한 국내(國內) 종계(種鷄)의 항체(抗體) 보유상황(保有狀況))

  • Kim, Soon J.;Rhee, Young O.;Kim, Sun J.;Jhun, Woo S.;Park, Keun S.
    • Korean Journal of Veterinary Research
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    • v.20 no.1
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    • pp.59-64
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    • 1980
  • Incidence of avian infectious diseases in breeder chickens was followed serologically. Serum samples were collected during the period of 1978~1979 from breeders throughout country and tested for the presence of antibodies against Salmonella pullorum(SP), Mycoplasma gallisepticum(MG), Avian Infectious Bronchitis virus(AIBV), Infectious Bursal Disease virus(IBDV) and Egg Drop Syndrome Virus(EDS). The tests used serum plate agglutination for SP and MG, immuno-diffusion for AIBV and IBDV and hemagglutination-inhibition test for EDS virus. The results are summarized as follows: 1. Individuals and Hocks incidence rate of Avian Infectious Bronchitis virus were 16.9% and 55.3%. 2. Individuals and Hocks incidence rate of Infectious Bursal Disease virus were 50.1% and 66.4%. 3. Individuals and Hocks incidence rate of sal. pullorum were 17.2% and 65.9%. 4. Individuals and flocks incidence rate of M. gallisepticum were 36.2% and 63.2%. 5. Individuals and flocks incidence rate of Egg Drop Syndrome (BC 14) virus were 14.1% and 46.3%.

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Evolution of avian infectious bronchitis virus: Genetic drift and recombination

  • Lee, Chang-Won
    • Korean Journal of Veterinary Service
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    • v.25 no.1
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    • pp.97-103
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    • 2002
  • Infectious bronchitis(IB) is a viral disease in which continued evolution of the virus is of paramount importance for annual endemics and epidemics in chickens. Since the isolation of IB viruses(IBVs) in the 1930s, over 50 serotypes or variants have been reported worldwide. Continuing evolution is most prominent in the suface glycoproteins of IBV but also occurs in other parts of the genome. This genetic variability results from accumulation of molecular changes that can occur by a number of different mechanisms including genetic drift (point mutations) and genetic shift(RNA recombination). GA98 is a new serotype of IBV identified recently in the United States. In this paper, the evolutionary trend of IBV will be discussed using GA98 serotype as a model.

Studies on Rabbit Serum Inhibitor of Avian Infectious Bronchitis Virus (전염성기관지염(傳染性氣管支炎) 바이러스에 대한 가토혈청억제물질(家兎血淸抑制物質)에 관한 연구(硏究))

  • Yoo, Tai Suck
    • Korean Journal of Veterinary Research
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    • v.5 no.1
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    • pp.43-57
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    • 1965
  • It has been-reported that rabbit serum exhibit an inhibitory action on avian infectious bronchitis virus in embryonating chicken embryo. In this thesis, the biological, serological, physical and chemical properties of normal rabbit serum on the effect of the virus propagation were studied. Throughout the studies, the following experimental results 'were obtained and summarized here. 1. An inhibitory action of rabbit serum on avian infectious bronchitis vrius is due to the normal serum constituents. 2. The nature of the neutralization between normal rabbit serum and the virus is similar to that of the specific antiserum and the virus. 3. Rabbit serum, heat inactivated at $56^{\circ}C$, for 30 minutes, showed its average $log_{10}El,D_{50}Nl$ of 3.7. 4. The inhibitory compound present in the normal rabbit serum is inactivated by means of 5 per cent trypsin, 0.01 M potassium periodate, and absorbed to zymosan. 5. The inhibitory compound was not affected by 0.05 M trichloroacetic acid and 0.005M $KH_2PO_4$. 6. The higher the temperature of heat inactivation of rabbit serum caused the lesser the neutralizing effect on the virus. Heating the serum at $66^{\circ}C$, for 30 minutes brought about a complete loss of the neutralizing index of the serum. 7. No ions, as a cofactor, was incorporated to the inhibitory action of rabbit serum on the virus. 8. The inhibitory compound amays be found in a fraction of serum globulin.

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Development of an attenuated vaccine strain from a korean respiratory type infectious bronchitis virus (한국호흡기형 닭전염성기관지염 생독백신주의 작성)

  • Choi, Kang-Seuk;Jeon, Woo-Jin;Lee, Eun-Kyoung;Kye, Soo-Jeong;Park, Mi-Ja;Kwon, Jun-Hun
    • Korean Journal of Veterinary Research
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    • v.51 no.3
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    • pp.193-201
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    • 2011
  • An attenuated vaccine strain AVR1/08 of Korean respiratory type of infectious bronchitis virus (IBV) was developed by 89th passages of IBV D85/06 strain in chicken eggs. The AVR1/08 strain had higher virus titer at least 20 times ($10^{1.3}$) than the parent virus D85/06 by egg inoculation method. The AVR1/08 strain had a single point mutation (S to Y) at position 56 of spike protein of IBV compared to parent virus IBV D85/06 strain. The mutation was observed consistently at viruses after 47th passage in chicken eggs. The AVR1/08 strain showed no virulence even after 6 passages in chickens and all chickens inoculated induced anti-IBV antibody 14 days after vaccination. The AVR1/08 strain had broad protective efficacy against QX type Korean nephropathogenic virus (Q43/06 strain), KM91 type Korean nephropathogenic virus (KM91 strain) and Korean respiratory virus (D85/06 strain). In contrast, Massachusetts (Mass) type attenuated vaccine strain H120 showed protection of 37.5 to 50% against these three viruses. Our results indicate that the AVR1/08 strain has potential as an attenuated vaccine effective in controlling IBVs circulating in Korea.

Studies on the Characters of Avian Infectious Bronchitis Virus Isolated in Korea. (국내 분리 닭 전염성 기관지염 바이러스 성상에 관한 연구)

  • 이청산;조우영;최윤식;김순재
    • Korean Journal of Veterinary Service
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    • v.14 no.1
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    • pp.27-40
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    • 1991
  • In order to investigate the biological properties, pathogenicity and immune responses in artficially infected SPF chickens with Avian infectious bronchitis virus that was isolated from chickens showing IB like signs in southern region of Chung buk. Results obtained throuth the experiments are summarized as follows. 1. From 15 IB suspected cases, two strains of IB virus were isolated, one each from the tracheas and lungs. 2. Infectious bronchitis specific embryo lesions were observed after four serial passages of the isolates in chicken embryos. 3. The field isolates and M-41 strain of IB virus interfered with the replication of Newcastle disease virus in chicken embryos. 4. When specific pathogen free chickens, two week old, were inoculated with the IB virus isolates, clinical respiratory signs as dyspnea, coughing were observed. Airsacculitis was observed by necropsy. 5. AGP antibody positive rates of inoculated SPF chickens were highest on day 14 and lowest on day 36, while HI antibody responses were detected on day 14 in all Groups, the reinoculated Group was shown highest titers. 6. By Indirect immunofluorescence antibody assay of artificially infected SPF chickens, the viral antigens were detected in tissues of larynx, trachea and lung on the 4 th to 7 th days post inoculation.

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Production and characterization of monoclonal antibodies against an avian influenza virus (H9N2)

  • Lim, Yong Hwan;Phan, Le Van;Mo, In-Pil;Koo, Bon-Sang;Choi, Young-Ki;Lee, Seung-Chul;Kang, Shien-Young
    • Korean Journal of Veterinary Service
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    • v.40 no.3
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    • pp.187-192
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    • 2017
  • In this report, fifteen monoclonal antibodies (MAbs) against an avian influenza virus (H9N2 subtype) were newly produced and characterized. These MAbs proved to react to the epitopes of nucleocapsid protein (NP), hemagglutinin (HA), neuraminidase (NA) and non-structural protein 1 (NS1) of Korean H9N2 strain, respectively. Two HA-specific MAbs showed the ability to inhibit the hemagglutination activity of H9N2 subtype avian influenza virus when tested by hemagglutination inhibition (HI) assay. All MAbs did not cross-react with other avian-origin viruses (Newcastle disease virus, infectious bursal disease virus, infectious bronchitis virus and avian rotavirus) by immunofluorescence test or enzyme-linked immunosorbent assay. The MAbs produced in this study could be useful as the materials for diagnostics and therapeutics against Korean-lineage H9N2 virus infections.