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Toews, D.

Publications and source records attributed to Toews, D..

2 recordsLinked to original sources

Genomes of the extinct Bachman's Warbler shows high divergence and no evidence of admixture with other extant Vermivora Warblers

Bachmans Warbler (Vermivora bachmanii) - last sighted in 1988 - is one of the few North American passerines that have gone extinct. Given the extensive ongoing hybridization of its two extant congeners - the Blue-Winged Warbler (V. cyanoptera) and Golden-Winged Warbler (V. chrysoptera) - and shared patterns of plumage variation between Bachmans Warbler and hybrids between those extant species, it has been suggested that Bachmans Warbler might have also had a component of hybrid ancestry. Here, we use historic DNA (hDNA) and whole genome sequencing of Bachmans Warblers collected at the turn of the 20th century to address this possibility. We combine these data with genomes of the two extant Vermivora species to examine patterns of population differentiation, inbreeding, and gene flow. In contrast to the admixture hypothesis, the genomic evidence is consistent with V. bachmanii being a highly divergent, reproductively isolated species, with no evidence of introgression. We show that both V. bachmanii and V. chrysoptera have elevated runs of homozygosity compared to V. cyanoptera, consistent with the effects of a small effective population size or population bottlenecks in the former two species. We also found--using population branch statistic estimates of all three species--previously undocumented evidence of lineage-specific evolution in V. chrysoptera near a novel pigmentation gene candidate for warblers, CORIN, which is a known modifier of ASIP, which is in turn involved in melanic throat and mask coloration in this family of birds. Together, these genomic results also highlight how natural history collections are such invaluable repositories of information about extant and extinct species. SignificanceFew common North American passerines have gone extinct. Bachmans Warbler is, unfortunately, one that has--the last sighting was in 1988. Here we use whole genome historical DNA from museum specimens of Bachmans warblers collected at the turn of the 20th century to learn about the evolution of this species and test whether there was evidence for hybridization and gene flow between it and two extant members of the same genus which, today, hybridize extensively. We find Bachmans warbler was highly divergent with no evidence of gene flow. We also find evidence of elevated "runs of homozygosity" in both Bachmans warbler and one of the two extant Vermivora species, suggesting the effects of a small population size or population bottlenecks.

evolutionary biology↗

Comparing divergence landscapes from reduced-representation and whole-genome re-sequencing in the yellow-rumped warbler (Setophaga coronata) species complex

Researchers seeking to generate genomic data for non-model organisms are faced with a number of trade-offs when deciding which method to use. The selection of reduced representation approaches versus whole genome re-sequencing will ultimately affect the marker density, sequencing depth, and the number of individuals that can multiplexed. These factors can affect researchers ability to accurately characterize certain genomic features, such as landscapes of divergence--how FST varies across the genomes. To provide insight into the effect of sequencing method on the estimation of divergence landscapes, we applied an identical bioinformatic pipeline to three generations of sequencing data (GBS, ddRAD, and WGS) produced for the same system, the yellow-rumped warbler species complex. We compare divergence landscapes generated using each method for the myrtle warbler (Setophaga coronata coronata) and the Audubons warbler (S. c. auduboni), and for Audubons warblers with deeply divergent mtDNA resulting from mitochondrial introgression. We found that most high-FST peaks were not detected in the ddRAD dataset, and that while both GBS and WGS were able to identify the presence of large peaks, WGS was superior at a finer scale. Comparing Audubons warblers with divergent mitochondrial haplotypes, only WGS allowed us to identify small (10-20kb) regions of elevated differentiation, one of which contained the nuclear-encoded mitochondrial gene NDUFAF3. We calculated the cost per base pair for each method and found it was comparable between GBS and WGS, but significantly higher for ddRAD. These comparisons highlight the advantages of WGS over reduced representation methods when characterizing landscapes of divergence.

evolutionary biology↗