4.2 Article

Quantitative genetics of gastrointestinal strongyle burden and associated body condition in feral horses

出版社

ELSEVIER
DOI: 10.1016/j.ijppaw.2019.03.010

关键词

Sable island; Parasites; Animal model; Heritability; Genetic correlation; Spatial effects

资金

  1. Natural Sciences and Engineering Research Council of Canada (NSERC) [371535-2009]
  2. Canada Foundation for Innovation [25046]
  3. Royal Society
  4. University of Calgary NSERC-CREATE Host-Parasite Interactions Training Program
  5. Leverhulme Trust
  6. University of Exeter M.Sc. program in Conservation and Biodiversity
  7. L. David Dube and Heather Ryan Veterinary Health and Research Fund

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Variability in host resistance or tolerance to parasites is nearly ubiquitous, and is of key significance in understanding the evolutionary processes shaping host-parasite interactions. While ample research has been conducted on the genetics of parasite burden in livestock, relatively little has been done in free-living populations. Here, we investigate the sources of (co)variation in strongyle nematode faecal egg count (FEC) and body condition in Sable Island horses, a feral population in which parasite burden has previously been shown to negatively correlate with body condition. We used the quantitative genetic animal model to understand the sources of (co)variation in these traits, and tested for impacts of an important spatial gradient in habitat quality on the parameter estimates. Although FEC is significantly heritable (h(2) = 0.43 +/- 0.11), there was no evidence for significant additive genetic variation in body condition (h(2) = 0.04 +/- 0.07), and therefore there was also no significant genetic covariance between the two traits. The negative phenotypic covariance between these traits therefore does not derive principally from additive genetic effects. We also found that both FEC and body condition increase from east to west across the island, which indicates that the longitudinal environmental gradient is not responsible for the negative phenotypic association observed between these traits. There was also little evidence to suggest that quantitative genetic parameters were biased when an individual's location along the islands environmental gradient was not incorporated into the analysis. This research provides new and important insights into the genetic basis and adaptive potential of parasite resistance in free-living animals, and highlights the importance of environmental heterogeneity in modulating host-parasite interactions in wild vertebrate systems.

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