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DeWoody, J. A.

Publications and source records attributed to DeWoody, J. A..

2 recordsLinked to original sources

The contemporary Pacific gray whale (Eschrichtius robustus) gene pool includes ancestry from a potential ghost population: inferences from population genomics

Local extirpations and extreme bottlenecks can deplete genetic variation and obscure population dynamics, especially in highly mobile species. The gray whale (Eschrichtius robustus) undertakes some of the longest known migrations among mammals, and conventional wisdom acknowledges two stocks (eastern and western gray whales) in the Pacific. Commercial whaling depleted both stocks, and while the Eastern North Pacific (ENP) stock has rebounded, the western stock was feared extirpated. In the post-whaling era, the origin of a small summer aggregation near Sakhalin Island, Russia (which we refer to as the Western North Pacific (WNP) stock) is unclear; this group may include descendants from the original western stock, founders from the eastern stock, or some combination of the two. To clarify the genetic affinities of WNP gray whales, we generated whole genome resequencing data for 74 individuals sampled from both geographic regions to assess their origins. Surprisingly, WNP whales are more genetically varied than ENP whales according to principal components and admixture analyses. We present evidence that this structure is due to mixed ancestry in WNP, with admixture occurring between historical eastern and western stocks. Genomic signals based on both single nucleotide polymorphisms and on copy number variants indicate that despite mixed ancestry, the influx of eastern gene flow has largely homogenized genomic diversity across the Pacific. These findings highlight the ability of whole-genome data to help resolve questions of extirpation and to clarify complex gene flow dynamics in highly mobile species.

genomics↗

An improved gray whale assembly highlights how allospecific reference-genome choice can affect genomic diversity estimates

Gray whales (Eschrichtius robustus) are unique as bottom feeding baleen whales and they have long been a conservation concern on both sides of the Pacific, in part because they migrate and disperse farther than any other species on earth. They experienced drastic population size declines due to environmental changes and commercial whaling. Here, we present an improved genome assembly for the gray whale. This genome assembly covers 2.4 Gb divided across 2689 contigs with an N50 of 15Mb. From the new assembly, we identify 75Mb sex-linked contigs and a identify 94.6% of searched genes based on Benchmarking Universal Single-Copy Ortholog score. We use the gray whale assembly to explore the effects of mapping to conspecific vs allospecific reference genomes when estimating genome-wide heterozygosity (H) and runs of homozygosity (ROH). The use of allospecific genomes significantly underestimate both H and ROH burden regardless of genomic distance and assembly quality. Our analyses highlight the importance of using contiguous conspecific assemblies in whale genomics and conservation. SignificanceGray whales are unique in their behavior, morphology and ecology. The novel and contiguous genome assembly presented here will serve as a valuable resource for studies of their population and comparative genomics, as well as for identifying key adaptations that have evolved in this clade. Finally, our results demonstrate that biases can arise when using allopatric assemblies to evaluate diversity metrics, so they should be used and interpreted with caution.

evolutionary biology↗