Literature DB >> 21336949

Comparative genomic sequence analysis of the Marek's disease vaccine strain SB-1.

Stephen J Spatz1, Karel A Schat.   

Abstract

Marek's disease virus (MDV), an oncogenic alphaherpesvirus, induces a rapid onset T-cell lymphoma and demyelinating disease in chickens. Since the 1970s the disease has been controlled through mass vaccination with herpesvirus of turkeys [meleagrid herpesvirus type 1 (MeHV-1)]. Over time this vaccine's efficacy decreased, and in the 1980s a bivalent vaccine consisting of MeHV-1 and a non-oncogenic gallid herpesvirus type 3 (GaHV-3) strain known as SB-1 was introduced. The complete DNA sequence (165,994 bp) of this GaHV-3 strain was determined using 454 pyrosequencing. A total of 524 open reading frames (ORFs) were examined for homology to protein sequences present in GenBank using BLAST (E-values <0.9). Of the 128 ORF hits, 75 ORFs showed homology to well-characterized alphaherpesviral proteins. Phylogenetically, this strain partitions in its own branch along with the GaHV-3 strain HPRS24 and shows more relatedness to MeHV-1 than gallid herpesvirus type 2 (GaHV-2, Marek's disease virus). When comparing the GaHV-3 ORFs to their homologues in MeHV-1 and GaHV-2, a greater percentage of amino acid similarity was found with homologous ORFs in the genome of SB-1 than with those in the HPRS24 genome. Overall, twice as many of the 75 ORFs within the SB-1 genome showed greater sequence identities and similarities to homologous ORFs in the Marek's disease genome than those within the HPRS24 genome. This paper describes the sequence difference between the two GaHV-3 genomes. Overall 19 ORFs differ in the number of predicted amino acids; of these, eight (U(L)3.5, U(L)5, U(L)9, U(L)28, U(L)30, U(L)36, U(L)37, and U(L)50) encode well-characterized alphaherpesviral proteins A sequence within the unique short region of the SB-1 genome exhibited significant sequence homology to long terminal repeat (LTR) sequences of avian retroviruses. This sequence was only found in the SB-1 genome and not the HPRS24 genome.

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Year:  2011        PMID: 21336949     DOI: 10.1007/s11262-011-0573-0

Source DB:  PubMed          Journal:  Virus Genes        ISSN: 0920-8569            Impact factor:   2.332


  21 in total

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2.  The history and biology of Marek's disease virus.

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4.  Feather follicle epithelium: a source of enveloped and infectious cell-free herpesvirus from Marek's disease.

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5.  Molecular indications for in vivo integration of the avian leukosis virus, subgroup J-long terminal repeat into the Marek's disease virus in experimentally dually-infected chickens.

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Journal:  Virus Genes       Date:  2002-03       Impact factor: 2.332

6.  Integration of multiple chicken retroviruses into multiple chicken herpesviruses: herpesviral gD as a common target of integration.

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7.  Functional evaluation of the role of reticuloendotheliosis virus long terminal repeat (LTR) integrated into the genome of a field strain of Marek's disease virus.

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8.  Molecular and biological characterization of a Marek's disease virus field strain with reticuloendotheliosis virus LTR insert.

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9.  Field trials with a bivalent vaccine (HVT and SB-1) against Marek's disease.

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10.  Polymorphisms in the repeat long regions of oncogenic and attenuated pathotypes of Marek's disease virus 1.

Authors:  Stephen J Spatz; Robert F Silva
Journal:  Virus Genes       Date:  2006-09-09       Impact factor: 2.198

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  8 in total

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5.  DNA from Dust: Comparative Genomics of Large DNA Viruses in Field Surveillance Samples.

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6.  Gallid herpesvirus 3 SB-1 strain as a recombinant viral vector for poultry vaccination.

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7.  Endogenous Avian Leukosis Virus in Combination with Serotype 2 Marek's Disease Virus Significantly Boosted the Incidence of Lymphoid Leukosis-Like Bursal Lymphomas in Susceptible Chickens.

Authors:  Jody K Mays; Alexis Black-Pyrkosz; Tamer Mansour; Brian C Schutte; Shuang Chang; Kunzhe Dong; Henry D Hunt; Aly M Fadly; Lei Zhang; Huanmin Zhang
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8.  Detection and Molecular Characterization of a Natural Coinfection of Marek's Disease Virus and Reticuloendotheliosis Virus in Brazilian Backyard Chicken Flock.

Authors:  Ruy D Chacón; Claudete S Astolfi-Ferreira; Marta B Guimarães; Luciana N Torres; David I De la Torre; Lilian R M de Sá; Antonio J Piantino Ferreira
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  8 in total

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