1.Pathogenicity and antigenicity of a new variant of Korean nephropathogenic infectious bronchitis virus.
Kang Seuk CHOI ; Eun Kyoung LEE ; Woo Jin JEON ; Mi Ja PARK ; Jin Won KIM ; Jun Hun KWON
Journal of Veterinary Science 2009;10(4):357-359
Despite the existence of an active vaccination program, recently emerged strains of nephropathogenic infectious bronchitis virus (IBV) in Korea have caused significant economic losses in the poultry industry. In this study, we assessed the pathogenic and antigenic characteristics of a K-IIb type field strain of IBV that emerged in Korea since 2003, such as Kr/Q43/06. Specific pathogen free 1-week-old chickens exhibited severe respiratory symptoms (dyspnea) and nephropathogenic lesions (swollen kidneys with nephritis and urate deposits) following challenge with the recent IBV field strain. The antigenic relatedness (R value), based on a calculated virus neutralization index, of the K-IIb type field strain and K-IIa type strain KM91 (isolated in 1991) was 30%, which indicated that the recent strain, Kr/Q43/06, is a new variant that is antigenically distinct from strain KM91. This report is the first to document the emergence of a new antigenic variant of nephropathogenic IBV in chicken from Korea.
Animals
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Antigens, Viral
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*Chickens
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Coronavirus Infections/epidemiology/*veterinary/virology
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Infectious bronchitis virus/classification/*pathogenicity
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Korea
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Nephritis/*veterinary/virology
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Poultry Diseases/*virology
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Specific Pathogen-Free Organisms
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Virulence
2.Dynamic distribution of the avian infectious bronchitis virus isolate strain Jin-13 in SPF chickens.
Huan LI ; Xia YANG ; Jun ZHAO ; Zhong-Tian WANG ; Lu CHEN ; Xin-Wei WANG ; Hong-Tao CHANG ; Yong-Tao LI ; Hong-Ying LIU ; Chuan-Qing WANG
Chinese Journal of Virology 2014;30(4):353-358
This study aimed to understand the dynamic distribution of infectious bronchitis virus (IBV) Jin-13 strain in SPF chickens. Ninety-day-old SPF chickens were inoculated with Jin-13, a virulent strain, and dissected at day 1, 4, 7, 10, 14, 21, 28 or 35 post-inoculation (dpi). Samples of heart, liver, spleen, lung, trachea, kidney and duodenum were collected and the N gene was detected by Sybr Green I real-time quantitative RT-PCR assays. The established method had a good linear correlation from 7.77 x 10(8) to 10(0) copies/microL. SPF chickens developed typical clinical signs of IBV at the 4th dpi, and the IBV viral concentration of tissues and organs gradually increased with a peak of up to 7.13 x 10(4) copies/microL. The viral concentration of most organs decreased by the 10th dpi, but those of the kidney, trachea and lung remained positive for IBV at 28 dpi and the heart was still positive for IBV at > 35 dpi. The results of this study, showed that the Jin-13 strain can cause prolonged virus excertion in chickens with severe renal damage.
Animals
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Chickens
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Coronavirus Infections
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veterinary
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virology
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Infectious bronchitis virus
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isolation & purification
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pathogenicity
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physiology
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Lung
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virology
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Poultry Diseases
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virology
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Reverse Transcriptase Polymerase Chain Reaction
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Specific Pathogen-Free Organisms
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Trachea
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virology
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Virulence
3.The Isolation and Identification of Infectious Bronchitis Virus PTFY Strain in Muscovy Ducks.
Xiaoping WU ; Shulei PAN ; Wuduo ZHOU ; Yijiang WU ; Yifan HUANG ; Baocheng WU
Chinese Journal of Virology 2016;32(2):203-209
In July 2009, some farms of breeding Muscovy ducks on the peak of egg laying suffered the decrease of hatching rate and the quality of the eggs showing low mortality and no evident respiratory symptoms. The swelling and congestive ovary was visible after autopsy. This study was brought out for the diagnosis of these cases. The virus was isolated and identified by the methods of virus culture in chicken embryo, physical and chemical properties test, hemagglutinin test, NDV (Newcastle diseases Virus) interference test, electron microscope observation, pathogenicity test and the gene sequence analysis. The results indicated the virus showed the characters of inducing dwarf embryo after inocubation, the sensibility to lipid solvent and the hemagglutination capacity after pancreatic enzyme treatment, the typical morphology of coronavirus, the interference to NDV replication and the homology among 84.7% - 99% of the particial N gene sequences to the reference IBV (Avian infectious bronchitis virus) strains. The strain was identified as IBV isolate and this study confirmed the pathogenicity of IBV to Muscovy ducks.
Amino Acid Sequence
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Animals
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Chick Embryo
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Coronavirus Infections
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veterinary
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virology
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Ducks
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virology
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Female
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Infectious bronchitis virus
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classification
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genetics
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isolation & purification
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Molecular Sequence Data
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Phylogeny
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Poultry Diseases
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virology
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Sequence Alignment
4.Detection and molecular characterization of infectious bronchitis virus isolated from recent outbreaks in broiler flocks in Thailand.
Tawatchai POHUANG ; Niwat CHANSIRIPORNCHAI ; Achara TAWATSIN ; Jiroj SASIPREEYAJAN
Journal of Veterinary Science 2009;10(3):219-223
Thirteen field isolates of infectious bronchitis virus (IBV) were isolated from broiler flocks in Thailand between January and June 2008. The 878-bp of the S1 gene covering a hypervariable region was amplified and sequenced. Phylogenetic analysis based on that region revealed that these viruses were separated into two groups (I and II). IBV isolates in group I were not related to other IBV strains published in the GenBank database. Group 1 nucleotide sequence identities were less than 85% and amino acid sequence identities less than 84% in common with IBVs published in the GenBank database. This group likely represents the strains indigenous to Thailand. The isolates in group II showed a close relationship with Chinese IBVs. They had nucleotide sequence identities of 97-98% and amino acid sequence identities 96-98% in common with Chinese IBVs (strain A2, SH and QXIBV). This finding indicated that the recent Thai IBVs evolved separately and at least two groups of viruses are circulating in Thailand.
Animals
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Chickens
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Coronavirus Infections/*veterinary/virology
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Infectious bronchitis virus/*genetics/*isolation & purification
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Molecular Sequence Data
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Phylogeny
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Poultry Diseases/*virology
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Sequence Homology, Amino Acid
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Sequence Homology, Nucleic Acid
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Thailand
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Viral Proteins/chemistry
5.Protection of chickens against infectious bronchitis virus with a multivalent DNA vaccine and boosting with an inactivated vaccine.
Fang YAN ; Yujun ZHAO ; Yongting HU ; Jianyang QIU ; Wenxin LEI ; Wenhui JI ; Xuying LI ; Qian WU ; Xiumin SHI ; Zhong LI
Journal of Veterinary Science 2013;14(1):53-60
The protective efficacy of DNA plasmids encoding avian infectious bronchitis virus (IBV) S1, N, or M protein was investigated in chickens. Chickens were inoculated monovalently (with plasmid pVAX1-16S1, pVAX1-16M, or pVAX1-16N alone) or multivalently (combination of the three different plasmids, pVAX1-16S1/M/N). A prime-boost immunization protocol against IBV was developed. Chickens were immunized with the multivalent DNA vaccine twice and then boosted with an inactivated vaccine once. Antibody titers of the chickens immunized with pVAX1-16S1/M/N were much higher than those of the monovalent groups (p < 0.01). A protective rate up to 90% was observed in the pVAX1-16S1/M/N group. The serum antibody titers in the prime-boost birds were significantly higher than those of the multivalent DNA vaccine group (p < 0.01) but not significantly different compared to the inactivated vaccine group at 49 days of age. Additionally, the prime-boost group also showed the highest level of IBV-specific cellular proliferation compared to the monovalent groups (p < 0.01) but no significant difference was found compared to the multivalent DNA vaccine group, and the prime-boost group completely protected from followed viral challenge.
Aging
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Animals
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Antibodies, Viral/blood
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Cell Proliferation
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Chickens
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Coronavirus Infections/prevention & control/*veterinary/virology
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Immunization, Secondary/veterinary
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Infectious bronchitis virus/*immunology
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Poultry Diseases/*prevention & control/virology
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T-Lymphocyte Subsets/cytology/physiology
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Vaccines, DNA/immunology
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Vaccines, Inactivated/immunology
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Viral Vaccines/*immunology
6.Genotypes and serotypes of avian infectious bronchitis viruses isolated during 2009-2011 in Guangxi, China.
Li-Li QIN ; Meng LI ; Rong SUN ; Zhi-Jin WU ; Kun HE ; Mei-Lan MO ; Tian-Chao WEI ; Ping WEI
Chinese Journal of Virology 2014;30(2):162-170
In order to investigate the prevalence and track genetic and antigenic evolutions of infectious bronchitis virus (IBV) and their prevalence in Guangxi, China since 1985, gene amplification and sequencing and virus neutralization (VN) test on chicken embryo tracheal organ cultures were used in genotyping and serotyping of 28 IBV isolates during 2009-2011 in Guangxi. The results of N gene sequencing and comparison showed that the 28 isolates and reference strains were classified into three groups, and most isolates belonged to group Ill, while the isolates in 1985-2008 belonged to groups IV and II. The data of VN test indicated that the 28 isolates belonged to 6 serotypes; among them, 71. 4% belonged to serotypes 1, 2, and 3, and 11 (39.3%) shared the same serotype with the current vaccine strains. Given the data of our previous study, it is found that prevalent serotypes and their proportions varied in different areas of Guangxi and during different periods. These data lay a good foundation for developing an oil-emulsified inactivated polyvalent vaccine containing local dominant serotypes for the effective prevention and control of infectious bronchitis.
Animals
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Antibodies, Viral
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immunology
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Chick Embryo
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Chickens
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China
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epidemiology
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Coronavirus Infections
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epidemiology
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immunology
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veterinary
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virology
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Infectious bronchitis virus
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classification
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genetics
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immunology
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isolation & purification
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Molecular Sequence Data
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Phylogeny
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Poultry Diseases
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epidemiology
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immunology
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virology
7.Evaluation of antigenic relationship of Guangxi isolates of infectious bronchitis virus.
Xiu-Ying WANG ; Meng LI ; Ping WEI ; Qiu-Ying CHEN ; Zheng-Ji WEI ; Mei-Lan MO ; Tian-Chao WEI
Chinese Journal of Virology 2012;28(6):621-627
Monovalent antisera of 3 vaccine strains and 7 representative field isolates were prepared based on the comparison of genetic diversity of the hypervariable region I of S1 gene (HVR I from 3 infectious bronchitis (IB) vaccine strains (H120, Ma5 and 4/91) ,one reference strain M41 and 26 IB field isolates. These 30 strains were classified in 7 different genotypes, respectively. Virus-neutralizing test on tracheal organ cultures (TOC) with chicken embryo were used to evaluate relatedness values of the antigenicity based on the antibody titer, to analyze the antigenic relationships between the isolates and vaccine strains, as well as to determine the serotypes of 26 IB viruses isolated from the field in Guangxi between 1985 and 2008. The results showed 30 strains were classified into 7 distinct serotypes and there were two predominant serotypes within the 26 isolates, serotypes 1 (totally 13 isolates) and serotype 2 (totally 5 isolates), respectively. In addition, there were some differences observed between the results of serotyping and the genotyping (including the S1, N, M and 3'UTR). The results of the study demonstrated that there were different predominant serotypes and multiple serotypes of IBV circulated in Guangxi in recent years, antigenic variation existed between Guangxi field isolates and vaccine strains.
Animals
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Antibodies, Viral
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immunology
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Antigens, Viral
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genetics
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immunology
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Chick Embryo
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Chickens
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China
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Coronavirus Infections
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immunology
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veterinary
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virology
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Genetic Variation
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Genotype
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Infectious bronchitis virus
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classification
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genetics
;
immunology
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isolation & purification
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Phylogeny
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Poultry Diseases
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immunology
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virology
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Viral Envelope Proteins
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genetics
;
immunology
8.Sequencing and Serologic Identification of S1 Genes of Infectious Bronchitis Viruses Isolated during 2012-2013 in Guangxi Province, China.
Lihua ZHANG ; Cuilan WU ; Zhipeng ZHANG ; Yining HE ; Heming LI ; Lili QIN ; Tianchao WEI ; Meilan MO ; Ping WEI
Chinese Journal of Virology 2016;32(1):62-69
We wished to ascertain the prevalence as well as the genetic and antigenic variation of infectious bronchitis viruses (IBVs) circulating in the Guangxi Province of China in recent years. The S1 gene of 15 IBV field isolates during 2012-2013 underwent analyses in terms of the similarity of amino-acid sequences, creation of phylogenetic trees, recombination, and serologic identification. Similarities in amino-acid sequences among the 15 isolates of the S1 gene were 54.3%-99.6%, and 43.3%-99.3% among 15 isolates and reference strains. Compared with the vaccine strain H120, except for GX-YL130025, the other 14 isolates showed a lower similarity of amino-acid sequences of the S1 gene (65.1-81.4%). Phylogenetic analyses of the S1 gene suggested that 15 IBV isolates were classified into eight genotypes, with the predominant genotype being new-type II. Recombination analyses demonstrated that the S1 gene of the GX-NN130048 isolate originated from recombination events between vaccine strain 4/91 and a LX4-like isolate. Serotyping results suggested that seven serotypes prevailed during 2012-2013 in Guangxi Province, and that only one isolate was consistent with the vaccine strain H120 in serotype (which has been used widely in recent years). The serotype of recombinant isolate GX-NN130048 was different from those of its parent strains. These results suggested that not only the genotype, but also the serotype of IBV field isolates in Guangxi Province had distinct variations, and that increasing numbers of genotypes and serotypes are in circulation. We showed that recombination events can lead to the emergence of new serotypes. Our study provides new evidence for understanding of the molecular mechanisms of IBV variations, and the development of new vaccines against IBVs.
Animals
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Antibodies, Viral
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blood
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Chickens
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China
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Coronavirus Infections
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blood
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veterinary
;
virology
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Genetic Variation
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Genotype
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Infectious bronchitis virus
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classification
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genetics
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immunology
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isolation & purification
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Molecular Sequence Data
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Phylogeny
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Poultry Diseases
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blood
;
virology
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Sequence Homology, Amino Acid
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Spike Glycoprotein, Coronavirus
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chemistry
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genetics
;
immunology
9.Rescue of the recombinant infectious bronchitis virus with the ectodomain region of H120 spike glycoprotein.
Yan-quan WEI ; Hui-chen GUO ; Hai-ming WANG ; De-hui SUN ; Shi-chong HAN ; Shi-qi SUN
Chinese Journal of Virology 2014;30(6):668-674
To explore the expression potential of heterogeneous genes using the backbone of infectious bronchitis virus (IBV) Beaudette strain, the ectodomain region of the Spike gene (1,302 bp) of IBV H120 strain was amplified by RT-PCR and replaced into the corresponding location of the IBV Beaudette strain full-length cDNA. This recombinant was designated as BeauR-H120(S1). BeauR-H120(S1) was directly used as the DNA template for the transcription of viral genomic RNA in vitro. Then, the transcription product was transfected into Vero cells by electroporation. At 48 h post-transfection, the transfected Vero cells were harvested, and passaging continued. A syncytium was not observed until the recombinant virus had passed through four passages. The presence of rBeau-H120(S1) was verified by the detection of the replaced ectodomain region of the H120 Spike gene using RT-PCR. Western blot analysis of rBeau-H120 (S1)-infected Vero cell lysates demonstrated that the nucleocapsid (N) protein was expressed, which implied that rBeau-H120(S1) could propagate in Vero cells. The TCIDs0 and EIDs0 data demonstrated that the titer levels of rBeau-H120(S1) reached 10(590+/-0.22)TCID50/mL and 10(6.13+/-0.23)EID50/mL in Vero cells and 9-day-old SPF chicken embryos, respectively. Protection studies showed that the percentage of antibody-positive chickens, which were vaccinated with rBeau-H120(S1) at 7 days after hatching, rose to 90% at 21 days post-inoculation. Inoculation provided an 85% rate of immune protection against a challenge of the virulent IBV M41 strain (103EID50/chicken). This recombinant virus constructed using reverse genetic techniques could be further developed as a novel genetic engineering vaccine against infectious bronchitis.
Animals
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Cercopithecus aethiops
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Chick Embryo
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Chickens
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Coronavirus Infections
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veterinary
;
virology
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Infectious bronchitis virus
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chemistry
;
genetics
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growth & development
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metabolism
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Poultry Diseases
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virology
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Protein Structure, Tertiary
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Spike Glycoprotein, Coronavirus
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chemistry
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genetics
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metabolism
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Transfection
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Vero Cells
10.Complete genomic analysis of a novel infectious bronchitis virus isolate.
Bei-Xia HU ; Shao-Hua YANG ; Xiu-Mei ZHANG ; Wei ZHANG ; San-Jie CAO ; Chuan-Tian XU ; Qing-Hua HUANG ; Lin ZHANG ; Yan-Yan HUANG ; Xin-Tian WEN
Chinese Journal of Virology 2014;30(4):339-345
The genome of CK/CH/SD09/005, an isolate of infectious bronchitis virus (IBV), was characterized to enable the further understanding of the epidemiology and evolution of IBV in China. Twenty-five pairs of primers were designed to amplify the full-length genome of CK/CH/SD09/005. The nucleotide sequence of CK/CH/SD09/005 was compared with reference IBV strains retrieved from GenBank. The phylogenic relationship between CK/CH/SD09/005 and the reference strains was analyzed based on S1 gene sequences. The complete genome of CK/CH/SD09/005 consisted of 27691 nucleotides (nt), excluding the 5' cap and 3' poly A tail. The whole-genome of CK/CH/SD09/005 shared 97 - 99% nucleotide sequence homology with the GX-NN09032 strain, which was the only complete genome that was closely related to CK/CH/SD09/005. When compared with all reference strains except GX-NN09032, CK/CH/SD09/005 showed the highest similarity to ck/CH/LDL/091022 and SDIB821/2012 (QX-like) in the replicase gene (Gene 1) and 3'UTR, with a sequence identity rate of 97% and 98%, respectively. However, CK/CH/SD09/005 exhibited lower levels of similarity with ck/CH/LDL/091022 and SDIB821/2012 in S-3a-3b-3c/ E-M-5a-5b-N with a sequence identity of 72% - 90%. CK/CH/SD09/005 showed the highest level of nucleotide identity with Korean strain 1011, and Chinese strains CK/CH/LXJ/02I, DK/CH/HN/ZZ2004 and YX10, in ORF 3c/E (97%), 5a (96%), 5b (99%) and N (96%), respectively. ORFs 3a, 3b and M of CK/CH/SD09/005 exhibited no more than 90% homology with the reference strains, excluding GX-NN09032. The phylogenic analysis based on the S1 gene revealed that CK/CH/SD09/005 and 39 published strains were classified into seven clades (genotypes). CK/CH/SD09/005 was distributed in clade IV with several isolates collected between 2007 and 2012. CK/CH/SD09/005 showed 66% - 69% and 72% - 81% nucleotide identities with the IBV strains of other six clades in the S1 and S2 subunits, respectively. More over, multiple substitutions were found throughout the entire S gene of CK/CH/SD09/005, while insertions and deletions were located within the S1 gene. These results indicated that CK/CH/SD09/005 is a novel variant that may be derived from the QX-like strains that are prevalent in China. Multiple genetic mechanisms, including recombinations, mutations, insertions and deletions, are likely to have contributed to the emergence of this IBV strain.
Animals
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Chickens
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China
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Coronavirus Infections
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veterinary
;
virology
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Genome, Viral
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Genomics
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Infectious bronchitis virus
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classification
;
genetics
;
isolation & purification
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Molecular Sequence Data
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Phylogeny
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Poultry Diseases
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virology
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Sequence Homology, Amino Acid
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Viral Proteins
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chemistry
;
genetics