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1.
Emerg Microbes Infect ; 6(11): e103, 2017 Nov 29.
Article in English | MEDLINE | ID: mdl-29184155

ABSTRACT

Fowl adenovirus (FAdV) has caused significant losses in chicken flocks throughout China in recent years. However, the current understanding of the genetic and pathogenic characteristics of the FAdV epidemic in southwestern China remains poorly understood. In this study, a total of 22 strains were isolated from liver samples of diseased chickens from farms in southwestern China. Phylogenetic analysis based on the hexon loop-1 gene showed that the 22 isolates were clustered into four distinct serotypes: FAdV serotype 4 (FAdV-4) (86.4%, 19/22), FAdV-2 (4.5%, 1/22), FAdV-8a (4.5%, 1/22), and FAdV-8b (4.5%, 1/22). FAdV-4 was the predominant serotype in southwestern China. Pathogenicity testing showed that the FAdV-4 serotype strain CH/GZXF/1602 and FAdV-8a strain CH/CQBS/1504 were pathogenic to chickens, with mortality rates reaching as high as 80% and 20%, respectively. The primary clinical feature observed following infection with strain CH/GZXF/1602 (FAdV-4) was hepatitis-hydropericardium syndrome, and that of strain CH/CQBS/1504 (FAdV-8a) was inclusion body hepatitis. Conversely, the FAdV-2 serotype strain CH/GZXF/1511 and FAdV-8b serotype strain CH/CQBS/1512 was not observed to be pathogenic in chickens. Then, CH/GZXF/1602 (FAdV-4) was selected for the preparation of an inactivated oil-emulsion vaccine. Immune studies on Partridge Shank broilers showed that a single dose immunization at 17 days of age could not only protect against homologous challenge with virulent FAdV-4 but also provided protection against clinical disease following challenge with the heterologous FAdV-8b virulent strain until 70 days of age. The characterization of newly prevalent FAdV strains provides a valuable reference for the development of an efficacious control strategy.


Subject(s)
Adenoviridae Infections/veterinary , Aviadenovirus/classification , Aviadenovirus/genetics , Genetic Variation , Poultry Diseases/virology , Adenoviridae Infections/epidemiology , Adenoviridae Infections/prevention & control , Adenoviridae Infections/virology , Animals , Aviadenovirus/isolation & purification , Aviadenovirus/pathogenicity , Capsid Proteins/genetics , Chickens , China/epidemiology , Genotype , Hepatitis, Viral, Animal/pathology , Hepatitis, Viral, Animal/prevention & control , Hepatitis, Viral, Animal/virology , Liver/virology , Phylogeny , Poultry Diseases/epidemiology , Poultry Diseases/prevention & control , Serogroup , Survival Analysis , Vaccines, Inactivated/administration & dosage , Vaccines, Inactivated/immunology , Vaccines, Inactivated/isolation & purification , Viral Vaccines/administration & dosage , Viral Vaccines/immunology , Viral Vaccines/isolation & purification
2.
PLoS One ; 12(2): e0171564, 2017.
Article in English | MEDLINE | ID: mdl-28158271

ABSTRACT

H9N2 avian influenza virus (AIV) has caused significant losses in chicken flocks throughout china in recent years. There is a limited understanding of the genetic and antigenic characteristics of the H9N2 virus isolated in chickens in southwestern China. In this study a total of 12 field strains were isolated from tissue samples from diseased chickens between 2013 and 2016. Phylogenetic analysis of the Hemagglutinin (HA) and Neuraminidase (NA) nucleotide sequences from the 12 field isolates and other reference strains showed that most of the isolates in the past four years could be clustered into a major branch (HA-branch A and NA-branch I) in the Clade h9.4.2 lineages. These sequences are accompanied by nine and seven new amino acids mutations in the HA and NA proteins, respectively, when compared with those previous to 2013. In addition, four new isolates were grouped into a minor branch (HA-branch B) in the Clade h9.4.2 lineages and two potential N-glycosylation sites were observed due to amino acid mutations in the HA protein. Three antigenic groups (1-3), which had low antigenic relatedness with two commonly used vaccines in China, were identified among the 12 isolates by antigenMap analysis. Immunoprotection testing showed that those two vaccines could efficiently prevent the shedding of branch A viruses but not branch B viruses. In conclusion, these results indicate the genotype of branch B may become epidemic in the next few years and that a new vaccine should be developed for the prevention of H9N2 AIV.


Subject(s)
Antigens, Viral/genetics , Chickens , Evolution, Molecular , Influenza A Virus, H9N2 Subtype/genetics , Influenza in Birds/virology , Poultry Diseases/virology , Animals , Antigens, Viral/immunology , China , Cross Reactions , Hemagglutinin Glycoproteins, Influenza Virus/genetics , Influenza A Virus, H9N2 Subtype/classification , Influenza A Virus, H9N2 Subtype/immunology , Influenza Vaccines/immunology , Influenza in Birds/immunology , Neuraminidase/genetics , Phylogeny , Poultry Diseases/immunology , Vaccine Potency , Viral Proteins/genetics
3.
Infect Genet Evol ; 45: 11-19, 2016 11.
Article in English | MEDLINE | ID: mdl-27530216

ABSTRACT

The aim of this study was to decipher the molecular epidemiological and antigenic characteristics of infectious bronchitis virus strains (IBVs) isolated in recent years in southwestern China. A total of 24 field strains were isolated from diseased chickens between 2012 and 2016. Phylogenetic analysis based on S1 nucleotide sequences showed that 16 of the 24 isolates were clustered into four distinct genotypes: QX (37.5%), TW (16.7%, TWI and TWII), Mass (8.3%), and J2 (4.2%). The QX genotype was still the prevalent genotype in southwestern China. Recombination analysis of the S1 subunit gene showed that eight of the 24 field strains were recombinant variants that originated from field strains and vaccine strains. A new potential recombination hotspot [ATTTT(T/A)] was identified, implying that recombination events may become more and more common. The antigenicity of ten IBVs, including seven field strains and commonly used vaccine strains, were assayed with a viral cross-neutralization assay in chicken embryonated kidney cells (CEK). The results showed that the ten IBVs could be divided into four serotypes (Massachusetts, 793B, Sczy3, and SCYB). Sczy3 and 793B were the predominant serotypes. Six of the seven field isolates (all except for cK/CH/SCYB/140913) cross-reacted well with anti-sera against other field strains. In conclusion, the genetic and antigenic features of IBVs from southwestern China in recent years have changed when compared to the previous reports. The results could provide a reference for vaccine development and the prevention of infectious bronchitis in southwestern China.


Subject(s)
Coronavirus Infections/virology , Infectious bronchitis virus/classification , Infectious bronchitis virus/genetics , Animals , Antigens, Viral/genetics , Chickens/virology , China , Coronavirus Infections/epidemiology , Coronavirus Infections/immunology , Genotype , Infectious bronchitis virus/immunology , Kidney/virology , Lung/virology , Molecular Epidemiology , Phylogeny
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