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1.
Infect Genet Evol ; 96: 105095, 2021 12.
Article in English | MEDLINE | ID: mdl-34597819

ABSTRACT

Avian hepatitis E virus (aHEV) is the causative agent of an important disease of broiler breeders and layers. aHEV cannot be readily propagated in cell culture and is characterised primarily by sequencing of amplicons generated through several RT-PCRs that target individual genes. This study aims to uncover the origin of current Australian aHEV isolates based on whole genome sequencing using clinical liver tissues. Complete genome sequences of the two aHEV isolates were assembled using Nanopore and Illumina reads. The two isolates possessed only four single nucleotide polymorphisms to each other. Comparison of the sequences with aHEV genome sequences available in the GenBank showed the highest nucleotide sequence identity of 88% with the prototype USA strain (AY535004), 82% with the European (AM943647) and genotype 1 Australian strains (AM943647). Recombination analysis suggested that aHEV isolates characterised in this study are progeny of a cross between a US and a Hungarian strain. Phylogenetic tree and phylogenetic networks constructed using complete genome and individual coding sequences revealed that Australian aHEV isolates formed a distinct clade closer to the USA strains and classified as genotype 2 whereas genotype 1 Australian strain clustered together with South Korean strains.


Subject(s)
Chickens , Genome, Viral , Hepatitis, Viral, Animal/virology , Hepevirus/genetics , Poultry Diseases/virology , RNA Virus Infections/veterinary , Animals , Female , Liver/virology , Phylogeny , RNA Virus Infections/virology , Recombination, Genetic , Whole Genome Sequencing
2.
Infect Genet Evol ; 78: 104067, 2020 03.
Article in English | MEDLINE | ID: mdl-31678646

ABSTRACT

Infectious laryngotracheitis virus (ILTV) is an alphaherpesvirus that infects chickens, causing upper respiratory tract illness and substantial economic losses to the commercial poultry industry worldwide. Due to its geographical isolation, Australia has had a unique population of ILTV genotypes, and this has provided the researchers with an excellent opportunity to examine the evolution of herpesviruses. Recent studies on the evolution of ILTV have reported the emergence of recombinant ILTVs in Australian poultry flocks. More recently, there has been an increasing number of field outbreaks caused by ILTV isolates that are indistinguishable from serva vaccine strain using current molecular tests that rely on restriction fragment analysis of selected regions of the viral genome. In this study, whole-genome analysis of one of the field isolates revealed a new class of ILTV, identified here as class 7b, emerged as a result of recombination probably between another recombinant strain and the Serva vaccine strain (now reclassified as 7a). Interestingly, the 7b virus had the highest similarity to class 9, a virus that dominates the ILTV population in Victoria, where 7b has never been reported to date. Also, sequence analysis detected sequences unique to class 10, another recombinant virus that became predominant in some states of Australia between 2013 and 2014 but disappeared since then. These results demonstrate the influence of recombination as a continuous process towards more virulent and transmissible ILTVs.


Subject(s)
Herpesviridae Infections/virology , Herpesvirus 1, Gallid/classification , Reassortant Viruses/genetics , Viral Vaccines/genetics , Whole Genome Sequencing/methods , Animals , Australia , Chickens/virology , Genome, Viral , Genotype , Herpesvirus 1, Gallid/genetics , Herpesvirus 1, Gallid/isolation & purification , High-Throughput Nucleotide Sequencing , Phylogeny , Recombination, Genetic
3.
Vet Microbiol ; 228: 252-258, 2019 Jan.
Article in English | MEDLINE | ID: mdl-30593375

ABSTRACT

Infectious laryngotracheitis virus (ILTV) is an alphaherpesvirus that causes upper respiratory tract disease in chickens and significant losses to the poultry industry worldwide. Both antibody and cell-mediated responses are generated against ILTV infection; however, the correlation of humoral immune response with protection against ILTV infection is debatable. To examine if whether antibody responses to individual ILTV glycoproteins are correlated with disease and protection, four ILTV glycoproteins (gD, gE, gG and gJ) were expressed as recombinant proteins and used in conjunction with commercially available recombinant gC and gI in indirect ELISAs to measure post-vaccination and/or post-challenge chicken serum antibodies. Serum optical density (OD) values detected by the whole virus, gC, gI and gJ were significantly higher in birds vaccinated with the Serva vaccine strain compared to the SA2 vaccine strain. However, the mean ODs detected by gD, gE and gG were not significantly different between the vaccine strains. Examination of post-ILTV vaccination sera found that gE was the most antigenic glycoprotein and that gC ODs were strongly correlated with those of gI and gJ, while ODs to gG had a relatively poor correlation with those of other glycoproteins. Moderate to poor correlations were found between microscopic tracheal lesion scores and ODs to individual glycoproteins. Examination of post-vaccination pre-challenge antibodies to individual glycoproteins did not find a strong correlation with protective immunity as measured by the severity of clinical signs, gross lesions, and tracheal viral load. Results from this study demonstrated that systemic antibody titers to individual ILTV glycoproteins C, D, E, G, I and J had a relatively poor correlation to protective immunity.


Subject(s)
Antibodies, Viral/blood , Chickens/immunology , Herpesvirus 1, Gallid/immunology , Membrane Glycoproteins/immunology , Poultry Diseases/immunology , Viral Vaccines/immunology , Animals , Chickens/virology , Enzyme-Linked Immunosorbent Assay/veterinary , HEK293 Cells , Humans , Immunity, Humoral , Membrane Glycoproteins/genetics , Membrane Glycoproteins/isolation & purification , Poultry Diseases/virology , Vaccination/veterinary , Viral Proteins/genetics , Viral Proteins/immunology , Viral Proteins/isolation & purification
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