Literature DB >> 14668395

The contribution of genetic diversity to the spread of infectious diseases in livestock populations.

A J Springbett1, K MacKenzie, J A Woolliams, S C Bishop.   

Abstract

This article uses stochastic simulations with a compartmental epidemic model to quantify the impact of genetic diversity within animal populations on the transmission of infectious disease. Genetic diversity is defined by the number of distinct genotypes in the population conferring resistance to microparasitic (e.g., viral or bacterial) infections. Scenarios include homogeneous populations and populations composed of few (finite-locus model) or many (infinitesimal model) genotypes. Genetic heterogeneity has no impact upon the expected value of the basic reproductive ratio (the primary description of the transmission of infection) but affects the variability of this parameter. Consequently, increasing genetic heterogeneity is associated with an increased probability of minor epidemics and decreased probabilities of both major (catastrophic) epidemics and no epidemics. Additionally, heterogeneity per se is associated with a breakdown in the expected relationship between the basic reproductive ratio and epidemic severity, which has been developed for homogeneous populations, with increasing heterogeneity generally resulting in fewer infected animals than expected. Furthermore, increased heterogeneity is associated with decreased disease-dependent mortality in major epidemics and a complex trend toward decreased duration of these epidemics. In summary, more heterogeneous populations are not expected to suffer fewer epidemics on average, but are less likely to suffer catastrophic epidemics.

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Year:  2003        PMID: 14668395      PMCID: PMC1462849     

Source DB:  PubMed          Journal:  Genetics        ISSN: 0016-6731            Impact factor:   4.562


  5 in total

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2.  The effects of averaging on the basic reproduction ratio.

Authors:  F R Adler
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Authors:  J Dushoff; S Levin
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Journal:  Parasite Immunol       Date:  1995-12       Impact factor: 2.280

  5 in total
  29 in total

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8.  A Public Health Ethics Case for Mitigating Zoonotic Disease Risk in Food Production.

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Review 9.  Does genetic diversity limit disease spread in natural host populations?

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10.  Implications of host genetic variation on the risk and prevalence of infectious diseases transmitted through the environment.

Authors:  Andrea B Doeschl-Wilson; R Davidson; J Conington; T Roughsedge; M R Hutchings; B Villanueva
Journal:  Genetics       Date:  2011-04-28       Impact factor: 4.562

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