AI Article Synopsis

  • This study investigates how natural selection influences the evolution of invasive guppies in Hawaii, highlighting the role of population structure and limited gene flow after their introduction.
  • Researchers found that guppies developed significant population differentiation and minimal gene flow among various populations, suggesting that they adapted using the genetic variation from their initial introduction.
  • The findings support the idea that local adaptation is key to the success of invasive species, indicating that controlling their spread might be effective through targeted removal efforts.

Article Abstract

How much does natural selection, as opposed to genetic drift, admixture, and gene flow, contribute to the evolution of invasive species following introduction to a new environment? Here we assess how evolution can shape biological invasions by examining population genomic variation in non-native guppies () introduced to the Hawaiian Islands approximately a century ago. By examining 18 invasive populations from four Hawaiian islands and four populations from the native range in northern South America, we reconstructed the history of introductions and evaluated population structure as well as the extent of ongoing gene flow across watersheds and among islands. Patterns of differentiation indicate that guppies have developed significant population structure, with little natural or human-mediated gene flow having occurred among populations following introduction. Demographic modeling and admixture graph analyses together suggest that guppies were initially introduced to O'ahu and Maui and then translocated to Hawai'i and Kaua'i. We detected evidence for only one introduction event from the native range, implying that any adaptive evolution in introduced populations likely utilized the genetic variation present in the founding population. Environmental association tests accounting for population structure identified loci exhibiting signatures of adaptive variation related to predators and landscape characteristics but not nutrient regimes. When paired with high estimates of effective population sizes and detectable population structure, the presence of environment-associated loci supports the role of natural selection in shaping contemporary evolution of Hawaiian guppy populations. Our findings indicate that local adaptation may engender invasion success, particularly in species with life histories that facilitate rapid evolution. Finally, evidence of low gene flow between populations suggests that removal could be an effective approach to control invasive guppies across the Hawaiian archipelago.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8288002PMC
http://dx.doi.org/10.1111/eva.13236DOI Listing

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