1.Emergence of virulent pseudorabies virus infection in Northern China.
Rui WU ; Chaoyong BAI ; Jinzhong SUN ; Shengke CHANG ; Xuke ZHANG
Journal of Veterinary Science 2013;14(3):363-365
Our investigation was conducted in order to verify a recent severe epidemic at several swine farms in northern China that indicated a newly emerging disease. Evidence confirmed that the epidemic was caused by a virulent Pseudorabies virus infection in swine herds.
Animals
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China/epidemiology
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Enzyme-Linked Immunosorbent Assay/veterinary
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Epidemics/*veterinary
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Herpesvirus 1, Suid/classification/*isolation & purification/*pathogenicity
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Pseudorabies/*epidemiology/mortality/pathology/virology
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Reverse Transcriptase Polymerase Chain Reaction/veterinary
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Sequence Analysis, DNA/veterinary
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Swine
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Swine Diseases/*epidemiology/mortality/pathology/virology
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Vaccination/adverse effects/veterinary
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Virulence
2.Investigation of etiology of massive infection with porcine pseudorabies virus in Henan and neighboring Provinces.
Hong-Tao CHANG ; Hui-Min LIU ; Zhan-Da GUO ; Ji-Mei DU ; Jun ZHAO ; Lu CHEN ; Xia YANG ; Xin-Wei WANG ; Hui-Xia YAO ; Chuan-Qing WANG
Chinese Journal of Virology 2014;30(4):441-449
In early 2011, the serious outbreak of porcine pseudorabies virus (PRV) infection suddenly recurred in Henan and neighboring Provinces. To investigate the etiology of massive infection with PRV, 16 800 serum samples, 905 porcine epidemic diarrhea virus (PEDV) back-feeding tissues, and 56 PR gene deleted live vaccines were colleted from January 2011 to May 2013 to detect PRV field infection using a PRV gE antibody test kit. The gE and TK genes of 11 new epidemic PRV strains were sequenced by PCR, and their molecular characteristics were analyzed. Moreover, virus titer determination, protective test against PRV, and vaccine potency testing were performed. The results showed that the detection rate of PRV field infection-positive pig farms was 68.06%, and the overall positive rate of PRV field infection in serum was 38.47%; the positive rates in breeding sows, breeding boars, reserve pigs, and commercial pigs were 40.12%, 30.88%, 54.67%, and 26.52%, respectively. The new epidemic strains were in the same evolutionary branch and belonged to the virulent strain group. Compared with the classical PRV strain, the virulence of new epidemic strains changed a little. The length of gE gene was 1 787 bp, and the length of TK gene was 963 bp. The nucleotide homologies of gE and TK genes to Chinese reference strains were 98.2%-99.8% and 98.90%-99.6%, respectively, and the amino acid homologies were 97.1%-99.8% and 97.5%-99.4%, respectively. Commercial vaccine had a 100% protective effect against the new epidemic strains. The positive rate of PRV field infection was 0% in vaccine and 40.44% in back-feeding tissues. The results confirmed that PRV field infection rates were rising sharply among pigs in Henan and neighboring Provinces after 2011. The main virulence genes of new epidemic PRV strains did not change significantly over the years. PR gene deleted live vaccines had no PRV field infection and could completely resist the attack of new strains. The virus carriage of breeding boars and reserve pigs and the serious PRV field infection in PEDV back-feeding tissues were the main causative factors for massive infection with PRV and epidemic outbreak in Henan and neighboring Provinces from 2011 to 2013.
Amino Acid Sequence
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Animal Feed
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analysis
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virology
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Animals
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China
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epidemiology
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Epidemics
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Female
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Herpesvirus 1, Suid
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chemistry
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classification
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genetics
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isolation & purification
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Male
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Molecular Sequence Data
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Phylogeny
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Pseudorabies
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epidemiology
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virology
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Sequence Alignment
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Sequence Homology, Amino Acid
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Sus scrofa
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Swine
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Swine Diseases
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epidemiology
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virology
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Viral Proteins
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chemistry
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genetics