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December 7, 2006Journal of Virology75 citationsOpen Access

Evolutionary Mechanisms of Persistence and Diversification of a Calicivirus within Endemically Infected Natural Host Populations

KCKaren P. CoyneRGRosalind M. GaskellSDSusan Dawson

Key Result

Long-term persistent feline calicivirus infection in individuals is relatively rare, with the majority of apparent viral carriers undergoing a combination of progressive evolution and cyclical reinfection.

Study Design

Type

Observational (n=31)

Multicenter

Yes

PICO

P
Population
31 cats from five geographically distinct households endemically infected with feline calicivirus, monitored over a 15- to 46-month period.
E
Exposure / Comparator
Endemic feline calicivirus infection
O
Primary Outcome
Viral evolution rate and mechanisms of persistence

Limitations

  • Small number of cats showing true progressive evolution
  • Cannot exclude the possibility that original virus may still be present in cats undergoing sequential reinfection but out-competed at intervals

Abstract

In order to understand the evolutionary mechanisms of persistence and diversification within the Caliciviridae, we have been exploiting endemic infection of feline calicivirus within five geographically distinct household groups of cats. By sequencing immunodominant and variable regions of the capsid gene, we identified the relative contribution of the different evolutionary processes employed by the virus to ensure its long-term survival in the host population. Such strategies included progressive evolution of a given variant of a strain through mutation accumulation within an individual, sequential reinfection with either a variant of the same strain or with a different strain, and mixed infection. Recombination between different strains in this study has been reported in detail elsewhere (K. P. Coyne et al., J. Gen. Virol. 87:921-926, 2006). Here, we provide evidence to suggest that true long-term persistent infection in individuals is relatively rare, with the majority of apparent viral carriers undergoing a combination of progressive evolution and cyclical reinfection. Progressive evolution at the individual level and variant reinfection at both the individual and population levels were associated with positive selection. Two measures of evolution rate were determined; for a virus progressively evolving within an individual (1.32 x 10(-2) to 2.64 x 10(-2) substitutions per nucleotide per year, i.e., no transmission) and for a strain circulating within a population (3.84 x 10(-2) to 4.56 x 10(-2) substitutions per nucleotide per year, i.e., including transmission). Reiteration of both progressive evolution and variant reinfection appeared to lead to a gradual increase in the diversity of a given strain of virus, both in the individual and in the population, until eventually new strains emerged.

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Cite This Study

Coyne et al. (2006) conducted an observational in Feline calicivirus infection (n=31). Endemic feline calicivirus infection was evaluated on Viral evolution rate and mechanisms of persistence. Long-term persistent feline calicivirus infection in individuals is relatively rare, with the majority of apparent viral carriers undergoing a combination of progressive evolution and cyclical reinfection.

synapsesocial.com/papers/6a93f54abc28082652fc153bhttps://doi.org/10.1128/jvi.01981-06
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Also Consider

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  1. 1Recombination of Feline calicivirus within an endemically infected cat colony2006 · 74 citations
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  3. 3Evolution of Human Calicivirus RNA In Vivo:Accumulation of Mutations in the Protruding P2 Domain of the CapsidLeads to Structural Changes and Possibly a NewPhenotype2003 · 214 citations
  4. 4Large-Scale Spatial and Temporal Genetic Diversity of Feline Calicivirus2012 · 55 citations
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