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Ectoparasite infestation and sex-biased local recruitment of hosts

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Listed:
  • Philipp Heeb

    (University of Bern, Centre for Behaviour and Evolution)

  • Isabelle Werner

    (University of Bern, Centre for Behaviour and Evolution)

  • A. C. Mateman

    (Netherlands Institute of Ecology)

  • Mathias Kölliker

    (University of Bern, Centre for Behaviour and Evolution)

  • Martin W. G. Brinkhof

    (University of Bern, Centre for Behaviour and Evolution)

  • C. M. Lessells

    (Netherlands Institute of Ecology)

  • Heinz Richner

    (University of Bern, Centre for Behaviour and Evolution)

Abstract

Dispersal patterns of organisms are a fundamental aspect of their ecology, modifying the genetic and social structure of local populations1,2,3,4. Parasites reduce the reproductive success and survival of hosts and thereby exert selection pressure on host life-history traits4,5,6, possibly affecting host dispersal7,8,9. Here we test experimentally whether infestation by hen fleas, Ceratophyllus gallinae, affects sex-related recruitment of great tit, Parus major, fledglings. Using sex-specific DNA markers, we show that flea infestation led to a higher proportion of male fledglings recruiting in the local population in one year. In infested broods, the proportion of male recruits increased with brood size over a three year period, whereas the proportion of male recruits from uninfested broods decreased with brood size. Natal dispersal distances of recruits from infested nests were shorter than those from uninfested nests10. To our knowledge, this study provides the first evidence for parasite-mediated host natal dispersal and local recruitment in relation to sex. Current theory needs to consider parasites as potentially important factors shaping life-history traits associated with host dispersal.

Suggested Citation

  • Philipp Heeb & Isabelle Werner & A. C. Mateman & Mathias Kölliker & Martin W. G. Brinkhof & C. M. Lessells & Heinz Richner, 1999. "Ectoparasite infestation and sex-biased local recruitment of hosts," Nature, Nature, vol. 400(6739), pages 63-65, July.
  • Handle: RePEc:nat:nature:v:400:y:1999:i:6739:d:10.1038_21881
    DOI: 10.1038/21881
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    Cited by:

    1. Iritani, Ryosuke & Iwasa, Yoh, 2014. "Parasite infection drives the evolution of state-dependent dispersal of the host," Theoretical Population Biology, Elsevier, vol. 92(C), pages 1-13.

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