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Biology subjects

Jass, C. N.

Publications and source records attributed to Jass, C. N..

2 recordsLinked to original sources

Ancient DNA perspectives on North American cervids identify dispersal waves and fluctuations in diversity

North American fauna has experienced major changes over the last two million years. Glacial cycles, animal migrations, peopling waves, and, more recently, European colonisation, caused demographic fluctuations, divergence, and wildlife extinctions. Caribou (Rangifer tarandus), moose (Alces alces), wapiti (Cervus canadensis), white-tailed (Odocoileus virginianus) and mule deer (O. hemionus) are the five extant cervids in Northern America, with unique dispersal patterns and conservation statuses. Here, we used DNA analysis of ancient, historical and modern individuals of these Cervidae to retrace evolutionary processes through time. We show that present-day eastern Canada caribou share ancestry with a 30-thousand-year-old sample from western Canada consistent with the species' complex dispersal history as suggested by literature. Our results suggest rapid expansion of moose following their arrival on the continent ~15 thousand years ago. Data on wapiti shows a recent loss of diversity consistent with its large-scale extirpation after European colonisation. Results on Odocoileus species are in line with their recognised mito-nuclear discordance. Our results exemplify the utility of chronological sampling to gain a better understanding of how external pressures drive genomic changes.

evolutionary biology↗

Paleogenomic insight into the collapse, recovery, and management of American bison

American bison were pushed to the brink of extinction by the 20th century. This bottleneck and the fragmented nature of remnant populations pose challenges to their resilience, as does human-facilitated admixture between bison subspecies and with cattle. To contextualize current diversity, we sequenced 115 ancient and 45 modern bison genomes from across North America dating back within the last [~]20,000 years. Past bison populations were highly connected, in contrast to structured modern herds. Modern wood bison carry plains bison ancestry from 1920s translocations, while many bison lack cattle ancestry that has previously been believed to be ubiquitous. Our findings reveal the legacy of human impacts on bison in the context of modern conservation and highlight the applicability of ancient DNA for guiding wildlife restoration.

evolutionary biology↗