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Toxoplasma gondii Comprises Three Clonal Lineages: Correlation of Parasite Genotype with Human Disease

The Journal of Infectious Diseases · 1995 · Vol. 172(6) · pp. 1561–1566
Daniel K. HoweL. David Sibley

Abstract

The population genetic structure of Toxoplasma gondii was determined by multilocus restriction fragment length polymorphism analysis at 6 loci in 106 independent isolates from humans and animals. Phylogenetic and statistical analyses indicated a highly unusual population structure consisting of 3 widespread clonal lineages. Extensively mixed genotypes were only apparent in 4 strains, which indicated that, while not separate species, sexual recombination between the 3 lineages is exceedingly rare in natural populations. T. gondii is a major cause of subclinical human infection and an important opportunistic pathogen that causes severe disease in immunocompromised patients. While strains from all 3 lineages were isolated from humans, the majority of human toxoplasmosis cases were associated with strains of a type II genotype. The correlation of specific clonal lineages with human toxoplasmosis has important implications for development of vaccines, drug treatments, and diagnostic protocols.

Toxoplasma gondii Research StudiesHerpesvirus Infections and TreatmentsCytomegalovirus and herpesvirus researchBiologyGenotypeToxoplasma gondiiToxoplasmosisPhylogenetic treeGeneticsPopulationParasite hostingRestriction fragment length polymorphismVirology

MeSH terms

AnimalsBase SequenceGenotypeHumansMolecular Sequence DataPhylogenyPolymorphism, Restriction Fragment LengthToxoplasmaToxoplasmosisPolymerase Chain Reaction
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Evolution · 1976 · 1,655 citations
Mathematical model for studying genetic variation in terms of restriction endonucleases.
Proceedings of the National Academy of Sciences · 1979 · 10,556 citations
Toxoplasmic Encephalitis in AIDS
Clinical Infectious Diseases · 1992 · 1,297 citations
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