Literature DB >> 12180709

Complete ORF1b-gene sequence indicates yellow head virus is an invertebrate nidovirus.

Nusra Sittidilokratna1, Richard A J Hodgson, Jeff A Cowley, Sarawut Jitrapakdee, Vichal Boonsaeng, Sakol Panyim, Peter J Walker.   

Abstract

We report the sequence of an 8503 nucleotide (nt) region of the genome of yellow head virus (YHV) encompassing the open reading frame (ORF) 1b gene. Comparison with the sequence of Australian gill-associated virus (GAV) indicated that the region, comprising approximately 30% of the YHV genome, commences 268 nt upstream of the putative ORF1a termination codon and continues through ORF1b to a site 30 nt downstream of the ORF2 initiation codon. YHV ORF1a and ORF1b overlap by 37 nt. MFOLD analysis of the overlap and downstream region predicted a 131 nt folding structure (deltaG = -47.3 kcal mol(-1)) with potential to form an RNA pseudoknot. The structure resides 3 nt downstream of a ribosomal frame-shift 'slippery' sequence (AAAUUUU) and a -1 frame-shift at this site would extend the ORF1 polyprotein by 2616 amino acids (299322 Da). In ORF1b, YHV shares 88.9% amino acid sequence identity with GAV and includes conserved polymerase, metal ion binding, helicase and other domains (Motifs 1 and 3) characteristic of nidoviruses. Compared to GAV, the YHV non-coding region linking the ORF 1b and ORF2 genes contains a 263 nt insertion. However, the region contains a conserved core sequence of 46 nucleotides (84.8% identity) that includes a stretch of 20 identical nucleotides surrounding a sub-genomic RNA transcription termination site. The data confirms the taxonomic placement of YHV in the Nidovirales and supports biological and topographical evidence that YHV and GAV may be classified as distinct species.

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Year:  2002        PMID: 12180709     DOI: 10.3354/dao050087

Source DB:  PubMed          Journal:  Dis Aquat Organ        ISSN: 0177-5103            Impact factor:   1.802


  21 in total

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2.  Identification and characterization of a Penaeus monodon lymphoid cell-expressed receptor for the yellow head virus.

Authors:  Wanchai Assavalapsakul; Duncan R Smith; Sakol Panyim
Journal:  J Virol       Date:  2006-01       Impact factor: 5.103

Review 3.  Immunological-based assays for specific detection of shrimp viruses.

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Journal:  World J Virol       Date:  2014-02-12

Review 4.  Shrimp molecular responses to viral pathogens.

Authors:  T W Flegel; Kallaya Sritunyalucksana
Journal:  Mar Biotechnol (NY)       Date:  2011-08       Impact factor: 3.619

5.  Suppression of PmRab7 by dsRNA inhibits WSSV or YHV infection in shrimp.

Authors:  Chalermporn Ongvarrasopone; Mayuree Chanasakulniyom; Kallaya Sritunyalucksana; Sakol Panyim
Journal:  Mar Biotechnol (NY)       Date:  2008-01-24       Impact factor: 3.619

6.  The gene encoding the nucleocapsid protein of Gill-associated nidovirus of Penaeus monodon prawns is located upstream of the glycoprotein gene.

Authors:  Jeff A Cowley; Lee C Cadogan; Kirsten M Spann; Nusra Sittidilokratna; Peter J Walker
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7.  Complete Genome Sequences of Four Major Viruses Infecting Marine Shrimp in Egypt.

Authors:  Mohamed E Megahed; Roberto Cruz-Flores; Arun K Dhar
Journal:  Microbiol Resour Announc       Date:  2018-09-06

8.  Gene expression kinetics of the yellow head virus in experimentally infected Litopenaeus vannamei.

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Journal:  Aquac Res       Date:  2009-12-21       Impact factor: 2.082

9.  RNA transcription analysis and completion of the genome sequence of yellow head nidovirus.

Authors:  Nusra Sittidilokratna; Sirintip Dangtip; Jeff A Cowley; Peter J Walker
Journal:  Virus Res       Date:  2008-06-11       Impact factor: 3.303

10.  Homologous genetic recombination in the yellow head complex of nidoviruses infecting Penaeus monodon shrimp.

Authors:  Priyanjalie K M Wijegoonawardane; Nusra Sittidilokratna; Natthida Petchampai; Jeff A Cowley; Nicholas Gudkovs; Peter J Walker
Journal:  Virology       Date:  2009-05-31       Impact factor: 3.616

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