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Biogeographic history moulds population differentiation in ageing of oxidative status in an amphibian.

Anita LiparotoDaniele CanestrelliRoberta BiscontiClaudio CarereDavid Costantini
Published in: The Journal of experimental biology (2020)
Regulation of oxidative status plays a substantial role in physiological ageing. However, we know little about age-related changes of oxidative status in wild animals, and even less about the role of population history in moulding ageing rates. We addressed these questions by means of a common garden experiment, using the Tyrrhenian tree frog Hyla sarda as the study species. This species underwent a range expansion from northern Sardinia (source) up to Corsica (newly founded) during the Late Pleistocene, and then the two populations became geographically isolated. We found that, at the beginning of the experiment, Sardinian and Corsican frogs had similar concentrations of all oxidative status markers analysed. One year later, Corsican frogs had higher oxidative stress and suffered higher mortality than Sardinian frogs. Our results suggest the intriguing scenario that population differentiation in rates of physiological ageing owing to oxidative stress might be an overlooked legacy of past biogeographic processes.
Keyphrases
  • oxidative stress
  • dna damage
  • genetic diversity
  • induced apoptosis
  • coronary artery disease
  • cardiovascular events
  • diabetic rats
  • signaling pathway
  • endoplasmic reticulum stress
  • heat shock