4.5 Article

Clonal reproduction shapes evolution in the lizard malaria parasite Plasmodium floridense

期刊

EVOLUTION
卷 69, 期 6, 页码 1584-1596

出版社

OXFORD UNIV PRESS
DOI: 10.1111/evo.12683

关键词

Cryptic species; genetic variation; Haemosporidia; preponderant clonal evolution; recent speciation

资金

  1. National Science Foundation [DEB-1210547]
  2. Theodore Roosevelt Memorial Fund (American Museum of Natural History)
  3. Explorer's Club

向作者/读者索取更多资源

The preponderant clonal evolution hypothesis (PCE) predicts that frequent clonal reproduction (sex between two clones) in many pathogens capable of sexual recombination results in strong linkage disequilibrium and the presence of discrete genetic subdivisions characterized by occasional gene flow. We expand on the PCE and predict that higher rates of clonal reproduction will result in: (1) morphologically cryptic species that exhibit (2) low within-species variation and (3) recent between-species divergence. We tested these predictions in the Caribbean lizard malaria parasite Plasmodium floridense using 63 single-infection samples in lizards collected from across the parasite's range, and sequenced them at two mitochondrial, one apicoplast, and five nuclear genes. We identified 11 provisionally cryptic species within P. floridense, each of which exhibits low intraspecific variation and recent divergence times between species (some diverged approximately 110,000 years ago). Our results are consistent with the hypothesis that clonal reproduction can profoundly affect diversification of species capable of sexual recombination, and suggest that clonal reproduction may have led to a large number of unrecognized pathogen species. The factors that may influence the rates of clonal reproduction among pathogens are unclear, and we discuss how prevalence and virulence may relate to clonal reproduction.

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