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Biology subjects

Bergman, J. C.

Publications and source records attributed to Bergman, J. C..

2 recordsLinked to original sources

Pronounced genetic structure associated with differences in a reproductive trait and climatic barriers in Canadian populations of the western toad (Anaxyrus boreas)

Identifying genetic groups within species is critical for inventorying biodiversity, understanding species distributions, and delineating conservation units. The western toad (Anaxyrus boreas) is one of the most widespread amphibians in western Canada and one of just two amphibian species to maintain an extensive range on both sides of the Canadian Rocky Mountains. Curiously, toads on the eastern side of the mountains have a vocal sac and produce a distinct advertisement call whereas toads on the western side of the mountains lack these traits. However, the extent to which these "Calling" and "Non-Calling" populations are genetically and ecologically distinct remains unclear. We used reduced representation sequencing (ddRAD-seq) to genotype individuals from across the Canadian portion of the species range. Combining population genomic analysis with the original phenotypic data used to delineate the Calling and Non-Calling populations and with predictions from ecological niche models, we show that Calling and Non-Calling populations of western toads represent distinct genetic groups separated by both differences in a major reproductive trait and by climate barriers. We additionally find evidence for a third, undescribed group in southwestern Alberta and southeastern British Columbia. Our results suggest Calling and Non-Calling populations should be managed as distinct groups and highlight the potential for there to be cryptic and strong genetic structure among northern populations of widespread species.

evolutionary biology↗

Embracing the power of genomics to inform evolutionary significant units

Appropriate identification of evolutionary significant units (ESUs) is essential for effective conservation planning. Genomic data has emerged as a key tool to inform ESU decisions due to the increased information resolution, yet it remains unclear how genomic data are being used in practice to identify the number of ESUs. To address this, we conducted a systematic literature review and found that genomic data are increasingly being used to suggest numbers of ESUs globally across plant and animal taxa. However, our review revealed inconsistencies in how ESUs are defined, with many studies not providing a definition at all. We also found inconsistencies in the methods used to analyze genomic data, highlighting the need for greater standardization to ensure studies adequately address all components of an ESUs. Adaptive loci, a key advantage of genomic data, need to be interpreted with caution and simply identifying these loci may lead to inflated ESU estimates. Overall, we found that 68% of studies suggested an increase in the number of ESUs, and that the amount of gene flow detected did not appear to influence this conclusion. We outline how genomic data can be used to assess the two key components of ESUs and provide recommendations for future studies aiming to identify ESUs with genomic data.

genomics↗