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1.
Arch Virol ; 158(8): 1783-6, 2013 Aug.
Article in English | MEDLINE | ID: mdl-23474985

ABSTRACT

Sixty field strains of avian infectious bronchitis virus (IBV) were isolated from chicken flocks in different regions of Guangxi from 1985 to 2012. Phylogenetic analysis of S1 subunit glycoprotein genes revealed that field isolates from 2009-2011 mostly belonged to the LX4 type, while those from 1985-2008 belonged to the HN08 type, and a few others belonged to the 4/91 type, the TW type and the Mass type. In addition, it is noteworthy that no obvious regional differences were found among these 60 strains isolated from six regions in Guangxi, while there was a high degree of sequence identity among the isolates in the same period of time.


Subject(s)
Coronavirus Infections/veterinary , Evolution, Molecular , Genetic Variation , Infectious bronchitis virus/classification , Infectious bronchitis virus/genetics , Poultry Diseases/virology , Animals , Chickens , China , Cluster Analysis , Coronavirus Infections/virology , Infectious bronchitis virus/isolation & purification , Membrane Glycoproteins/genetics , Molecular Sequence Data , Phylogeny , Sequence Analysis, DNA , Sequence Homology , Spike Glycoprotein, Coronavirus , Viral Envelope Proteins/genetics
2.
J Virol ; 86(24): 13887-8, 2012 Dec.
Article in English | MEDLINE | ID: mdl-23166279

ABSTRACT

To date, multiple serotypes and genotypes of infectious bronchitis virus (IBV) have been isolated and identified. In order to provide more information on the viral evolution of IBVs, a new virulent strain named GX-NN09032, isolated from Guangxi, China, in 2009, was sequenced, and phylogenetic and recombination analyses were conducted. Furthermore, potential recombination events associated with GX-NN09032 were found in four IBV strains, including GX-YL5, DY07, CK/CH/SD09/005, TC07-2. The present study suggested that GX-NN09032 might contribute to the emergence of modern IBV variants through recombination.


Subject(s)
Genome, Viral , Infectious bronchitis virus/genetics , Infectious bronchitis virus/classification , Molecular Sequence Data , Phylogeny , Recombination, Genetic
3.
Bing Du Xue Bao ; 24(2): 126-32, 2008 Jun.
Article in Chinese | MEDLINE | ID: mdl-18533344

ABSTRACT

The S1 gene hypervariable region I (HVR I) of 22 infectious bronchitis virus (IBV) strains isolated in Guangxi during the period of 1985-2007 were sequenced and compared to that of the other IBV reference strains and the pigeon coronavirus isolates. A phylogenetic tree based on nucleotide sequences of HVR I of all the IBV showed that they were classified into 5 distinct Clusters. 16 out of 22 IBV isolates were grouped into Cluster I, and had higher homology with pigeon coronavirus isolates but lower homology with the Massachusetts (Mass) type vaccine strains. There were 4 and 3 amino-acid residues inserted at the sites of 33-34 and 34-35 respectively within HVR I in 15 isolates, except in isolate GX-NN6 there had 4 amino-acid residues inserted at the both sites; isolates GX-YL1 and GX-NN2 had close relationship with Mass type vaccine strains, and they shared Cluster II; isolates GX-G and GX-XD of Cluster III had close relationship with the Japanese strain JP Miyazaki 89 which was isolated at the same period; isolates GX-YL6 and GX-NN7 of Cluster V had close relationship with the European strain 4/91. The results showed that there were high phylogenetic diversity among the IBVs prevailed in the field in Guangxi resulting from the commonly occurred mutation or insertion within the S1 gene HVR I of the viruses, and majority of the isolates had lower homology with the commonly used Mass type vaccine strains. There was much higher homology among viruses isolated in the same period of time, but without distinct difference in geographical origins.


Subject(s)
Chickens/virology , Infectious bronchitis virus/genetics , Membrane Glycoproteins/genetics , Viral Envelope Proteins/genetics , Amino Acid Sequence , Animals , Genetic Variation , Infectious bronchitis virus/classification , Infectious bronchitis virus/isolation & purification , Membrane Glycoproteins/chemistry , Molecular Sequence Data , Phylogeny , Spike Glycoprotein, Coronavirus , Viral Envelope Proteins/chemistry
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