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        "description": "<div class=\"o-metadata__file-usage-entry\">Peters et al. Data<div class=\"o-metadata__file-description\">Parasite data for Camarhynchus parvulus, Camarhynchus pauper and their hybrids.\nY (trait C) is the number of days the nestlings survived, Y (trait B) is the total number of Philornis downsi per nest. Ring number refers to the individual numbered aluminum rings the birds are banded with. Individual membership coefficient q(i) is the genetic membership coefficient derived from Bayesian clustering analysis of microsatellite data. Nest height is the height of the nest. Brood size is the maximum number of nestlings per nest. Total number of P. downsi/nest denotes the total number of P. downsi larvae, pupae and puparia per nest. Hybrid index refers to the degree of genetic admixture of the male and has been calculated using the individual membership coefficient. Nest ID is a unique number given to each nest for analyses purposes.</div><div class=\"o-metadata__file-name\"></div></div>",
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    "description": "Hybridisation can increase adaptive potential when enhanced genetic diversity or novel genetic combinations confer a fitness advantage, such as in the evolution of anti-parasitic mechanisms. Island systems are especially susceptible to invasive parasites due to the lack of defence mechanisms that usually coevolve in long-standing host-parasite relationships. We test if host genetic admixture affects parasite numbers in a novel host-parasite association on the Gal\u00e1pagos Islands. Specifically, we compare the number of Philornis downsi in nests with offspring sired by Darwin's small tree finch (Camarhynchus parvulus), Darwin's medium tree finch (C. pauper), and hybrids of these two species. The number of P. downsi decreased with increasing genetic admixture of the attending male, and nests of hybrid males had ~ 50 % fewer parasites than C. parvulus nests, and ~ 60 % fewer parasites than C. pauper nests. This finding indicates that hybridisation in this system could be favoured by selection and reveal a mechanism to combat an invasive parasite.",
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