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Louse flies of Eleonora's falcons that also feed on their prey are evolutionary dead-end hosts for blood parasites.

Laura Gangoso | Rafael Gutiérrez-López | Josué Martínez-de la Puente | Jordi Figuerola
Molecular ecology | 2019

Host shifts are widespread among avian haemosporidians, although the success of transmission depends upon parasite-host and parasite-vector compatibility. Insular avifaunas are typically characterized by a low prevalence and diversity of haemosporidians, although the underlying ecological and evolutionary processes remain unclear. We investigated the parasite transmission network in an insular system formed by Eleonora's falcons (the avian host), louse flies that parasitize the falcons (the potential vector), and haemosporidians (the parasites). We found a great diversity of parasites in louse flies (16 Haemoproteus and 6 Plasmodium lineages) that did not match with lineages previously found infecting adult falcons (only one shared lineage). Because Eleonora's falcon feeds on migratory passerines hunted over the ocean, we sampled falcon kills in search of the origin of parasites found in louse flies. Surprisingly, louse flies shared 10 of the 18 different parasite lineages infecting falcon kills. Phylogenetic analyses revealed that all lineages found in louse flies (including five new lineages) corresponded to Haemoproteus and Plasmodium parasites infecting Passeriformes. We found molecular evidence of louse flies feeding on passerines hunted by falcons. The lack of infection in nestlings and the mismatch between the lineages isolated in adult falcons and louse flies suggest that despite louse flies' contact with a diverse array of parasites, no successful transmission to Eleonora's falcon occurs. This could be due to the falcons' resistance to infection, the inability of parasites to develop in these phylogenetically distant species, or the inability of haemosporidian lineages to complete their development in louse flies.

Pubmed ID: 30710395

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Associated grants

  • Agency: BBVA Foundation, International
    Id: 2017 Leonardo Grant for Researchers and Cultural Creators
  • Agency: European Commision H2020 Marie Skłodowska-Curie Actions, International
    Id: 747729 "EcoEvoClim"
  • Agency: Cabildo Insular de Lanzarote, International
  • Agency: Severo Ochoa programme for Centers of Excellence in R&D&I, International
    Id: SEV-2012-0262
  • Agency: Consejo Superior de Investigaciones Científicas, International
    Id: BES-2013-065274
  • Agency: Consejo Superior de Investigaciones Científicas, International
    Id: CGL2012-30759
  • Agency: Consejo Superior de Investigaciones Científicas, International
    Id: CGL2015-65055-P

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jModelTest (tool)

RRID:SCR_015244

Software tool used to carry out statistical selection of best-fit models of nucleotide substitution without the aid of PAUP*. It implements five different model selection strategies: hierarchical and dynamical likelihood ratio tests, Akaike and Bayesian information criteria, and a decision theory method. It also provides estimates of model selection uncertainty, parameter importances, and model-averaged parameter estimates.

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