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February 21, 20260 citationsOpen Access

Is Increased Mutation Driving Genetic Diversity in Dogs Within the Chornobyl Exclusion Zone?

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MDMegan N. DillonADAllison N. DickeyRRReade B. Roberts

Key Points

  • To explore mutation as a potential driver of genetic differentiation among dog populations in the Chornobyl Exclusion Zone.
  • Assessed karyotypic architecture of dogs in contaminated areas.
  • Conducted short tandem repeat/microsatellite diversity analyses.
  • Calculated the proportion of recently derived alleles in each population.
  • Found no evidence of differential mutation accumulation in dog populations.
  • Concluded that increased mutation rates do not drive genetic differentiation between the populations.

Abstract

Environmental contamination can have lasting impacts on surrounding communities, though the long-term impacts can be difficult to ascertain. The disaster at the Chornobyl Nuclear Power Plant in 1986 and subsequent remediation efforts resulted in contamination of the local environment with radioactive material, heavy metals, and additional environmental toxicants. Many of these are mutagenic in nature, and the full effect of these exposures on local flora and fauna has yet to be understood. Several hundred free-roaming dogs occupy the contaminated area surrounding the Chornobyl Nuclear Power Plant, and previous studies have highlighted a striking level of genetic differentiation between two geographically close populations of these dogs. With this work, we investigate mutation as a possible driver of this genetic differentiation. First, we consider large-scale mutation by assessing the karyotypic architecture of these dogs. We then search for evidence of mutation through short tandem repeat/microsatellite diversity analyses and by calculating the proportion of recently derived alleles in individuals in both populations. Through these analyses, we do not find evidence of differential mutation accumulation for these populations. Thus, we find no evidence that an increased mutation rate is driving the genetic differentiation between these two Chornobyl populations. The dog populations at Chornobyl present a unique opportunity for studying the genetic effects of the long-term exposures they have encountered, and this study expands and builds on previous work done in the area.

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Cite This Study

Dillon et al. (2024) studied this question.

synapsesocial.com/papers/69994cb3873532290d02154bhttps://doi.org/10.1371/journal.pone.0315244">https://doi.org/10.1371/journal.pone.0315244</a></p
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