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Journal of Virology, December 2007, p. 13158-13167, Vol. 81, No. 23
0022-538X/07/$08.00+0     doi:10.1128/JVI.01310-07
Copyright © 2007, American Society for Microbiology. All Rights Reserved.

Divergence and Recombination of Clinical Herpes Simplex Virus Type 2 Isolates{triangledown}

Peter Norberg,1* Mabula J. Kasubi,2,3,4 Lars Haarr,4 Tomas Bergström,1 and Jan-Åke Liljeqvist1

Department of Virology, Göteborg University, Göteborg, Sweden,1 Center for International Health,2 Department of Microbiology and Immunology, The Gade Institute, University of Bergen, Bergen, Norway,4 Department of Microbiology and Immunology, Muhimbili University, College of Health Sciences, Dar es Salaam, Tanzania3

Received 15 June 2007/ Accepted 7 September 2007

Herpes simplex virus type 2 (HSV-2) infects the genital mucosa and is one of the most common sexually transmitted viruses. Here we sequenced a segment comprising 3.5% of the HSV-2 genome, including genes coding for glycoproteins G, I, and E, from 27 clinical isolates from Tanzania, 10 isolates from Norway, and 10 isolates from Sweden. The sequence variation was low compared to that described for clinical HSV-1 isolates, with an overall similarity of 99.6% between the two most distant HSV-2 isolates. Phylogenetic analysis revealed a divergence into at least two genogroups arbitrarily designated A and B, supported by high bootstrap values and evolutionarily separated at the root. Genogroup A contained isolates collected in Tanzania, and genogroup B contained isolates collected in Tanzania and Scandinavia, implying that the genetic variability of HSV-2 is higher in Tanzania than in Scandinavia. Recombination network analysis and bootscan analysis revealed a complex pattern of phylogenetically conflicting informative sites in the sequence alignments. These signals were present in synonymous and nonsynonymous sites in all three genes and were not accumulated in specific regions, observations arguing against positive selection. Since the PHI test applied solely to synonymous sites revealed a high statistical probability of recombination, we suggest as a novel finding that homologous recombination is, as reported earlier for HSV-1 and varicella-zoster virus, a prominent feature in the evolution of HSV-2.


* Corresponding author. Mailing address: Department of Virology, University of Göteborg, Guldhedsgatan 10 B, S-413 46 Göteborg, Sweden. Phone: (46) 31 3424615. Fax: (46) 31 3424960. E-mail: peter.norberg{at}microbio.gu.se

{triangledown} Published ahead of print on 19 September 2007.


Journal of Virology, December 2007, p. 13158-13167, Vol. 81, No. 23
0022-538X/07/$08.00+0     doi:10.1128/JVI.01310-07
Copyright © 2007, American Society for Microbiology. All Rights Reserved.







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