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      High rates of molecular evolution in hantaviruses.

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          Abstract

          Hantaviruses are rodent-borne Bunyaviruses that infect the Arvicolinae, Murinae, and Sigmodontinae subfamilies of Muridae. The rate of molecular evolution in the hantaviruses has been previously estimated at approximately 10(-7) nucleotide substitutions per site, per year (substitutions/site/year), based on the assumption of codivergence and hence shared divergence times with their rodent hosts. If substantiated, this would make the hantaviruses among the slowest evolving of all RNA viruses. However, as hantaviruses replicate with an RNA-dependent RNA polymerase, with error rates in the region of one mutation per genome replication, this low rate of nucleotide substitution is anomalous. Here, we use a Bayesian coalescent approach to estimate the rate of nucleotide substitution from serially sampled gene sequence data for hantaviruses known to infect each of the 3 rodent subfamilies: Araraquara virus (Sigmodontinae), Dobrava virus (Murinae), Puumala virus (Arvicolinae), and Tula virus (Arvicolinae). Our results reveal that hantaviruses exhibit short-term substitution rates of 10(-2) to 10(-4) substitutions/site/year and so are within the range exhibited by other RNA viruses. The disparity between this substitution rate and that estimated assuming rodent-hantavirus codivergence suggests that the codivergence hypothesis may need to be reevaluated.

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          Author and article information

          Journal
          Mol Biol Evol
          Molecular biology and evolution
          Oxford University Press (OUP)
          1537-1719
          0737-4038
          Jul 2008
          : 25
          : 7
          Affiliations
          [1 ] Department of Biology, Center for Infectious Disease Dynamics, The Pennsylvania State University, PA, USA.
          Article
          msn093
          10.1093/molbev/msn093
          18417484
          5f3f5020-3d3b-4e53-8cbf-d89a59406b37
          History

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