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Accelerated evolution of SARS-CoV-2 in free-ranging white-tailed deer
- McBride, Dillon S;
- Garushyants, Sofya K;
- Franks, John;
- Magee, Andrew F;
- Overend, Steven H;
- Huey, Devra;
- Williams, Amanda M;
- Faith, Seth A;
- Kandeil, Ahmed;
- Trifkovic, Sanja;
- Miller, Lance;
- Jeevan, Trushar;
- Patel, Anami;
- Nolting, Jacqueline M;
- Tonkovich, Michael J;
- Genders, J Tyler;
- Montoney, Andrew J;
- Kasnyik, Kevin;
- Linder, Timothy J;
- Bevins, Sarah N;
- Lenoch, Julianna B;
- Chandler, Jeffrey C;
- DeLiberto, Thomas J;
- Koonin, Eugene V;
- Suchard, Marc A;
- Lemey, Philippe;
- Webby, Richard J;
- Nelson, Martha I;
- Bowman, Andrew S
Published Web Location
https://doi.org/10.1038/s41467-023-40706-yAbstract
The zoonotic origin of the COVID-19 pandemic virus highlights the need to fill the vast gaps in our knowledge of SARS-CoV-2 ecology and evolution in non-human hosts. Here, we detected that SARS-CoV-2 was introduced from humans into white-tailed deer more than 30 times in Ohio, USA during November 2021-March 2022. Subsequently, deer-to-deer transmission persisted for 2–8 months, disseminating across hundreds of kilometers. Newly developed Bayesian phylogenetic methods quantified how SARS-CoV-2 evolution is not only three-times faster in white-tailed deer compared to the rate observed in humans but also driven by different mutational biases and selection pressures. The long-term effect of this accelerated evolutionary rate remains to be seen as no critical phenotypic changes were observed in our animal models using white-tailed deer origin viruses. Still, SARS-CoV-2 has transmitted in white-tailed deer populations for a relatively short duration, and the risk of future changes may have serious consequences for humans and livestock.
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