Insights into longevity and virus-driven adaptation from Myotis bat genomes

Новые представления о долголетии и адаптации, обусловленной вирусами, на основе геномов летучих мышей рода Myotis
Peter H. Sudmant, Richard A. Miller, Sébastien Pfeffer, David Enard, M. Elise Lauterbur, Carine Rey, Tanya M. Lama, Léa Gaucherand, Juan Manuel Vázquez, Saba Mottaghinia, Sarah Maesen, Michael Singer, Sarah Villa, Melanie Bucci, Devaughn Fraser, Genavieve Gray-Sandoval, Zeinab R. Haidar, Melissa Han, William Kohler, Amandine Le Corf, Clara Loyer, Dakota McMillan, Stacy Li, Johnathan Lo, Samantha L. R. Capel, Kathleen Slocum, Melissa Sui, William Thomas, Janet Debelak Tyburec, Rachel Brem, Michael Buchalski, José Pablo Vázquez‐Medina, Lucie Etienne
2026-08-26

EIF2AK2 copy-number polymorphismsMyotis bat genomespositive selectionstructural variationvirus-interacting proteins
. Here, to study the evolution of these phenotypes, we generated cell lines and near-complete genome assemblies for eight closely related Myotis species. Using genome-wide screens of positive selection, analyses of structural variation and functional experiments in primary cells, we identify patterns of adaptation contributing to longevity, cancer resistance and viral interactions. We demonstrate distinct modes of adaptation to DNA and RNA viruses compared with all other mammals, with bats exhibiting genome-wide over-representation of positive selection for DNA-virus-interacting proteins and elevated rates of copy-number variation for RNA-virus-interacting proteins. Characterization of Myotis-specific duplications of the key immune factor EIF2AK2 (also known as PKR) reveals multiple ancient segregating trans-species copy-number polymorphisms. We show that the recurrent evolution of longevity seen in Myotis is associated with positive selection in cancer pathways, and demonstrate a unique response to DNA damage in primary cells of the long-lived Myotis lucifugus. Together, our results suggest that bats' remarkable longevity and immunity are linked through pleiotropic adaptations to viruses and ageing-related disease.
1
Bats show distinct antiviral adaptation modes: genome-wide positive selection is enriched in DNA-virus-interacting proteins, while RNA-virus-interacting proteins exhibit elevated copy-number variation.
2
Myotis-specific duplications of the immune factor EIF2AK2/PKR include multiple ancient, segregating trans-species copy-number polymorphisms.
3
Primary cells from the long-lived Myotis lucifugus display a unique response to DNA damage, linking longevity and immunity through adaptations to viruses and ageing-related disease.
4
Repeated evolution of longevity in Myotis is associated with positive selection in cancer-related pathways.
5
The study generated cell lines and near-complete genome assemblies for eight closely related Myotis bat species.

Eight closely related Myotis bat species, including their genomes and primary cells

Genomic and cellular adaptations underlying longevity, cancer resistance, DNA- and RNA-virus interactions, and the pleiotropic link between bat immunity and ageing-related disease

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2026-08-26
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Authors
Peter H. Sudmant
Richard A. Miller
Sébastien Pfeffer
David Enard
M. Elise Lauterbur
Carine Rey
Tanya M. Lama
Léa Gaucherand
Juan Manuel Vázquez
Saba Mottaghinia
Sarah Maesen
Michael Singer
Sarah Villa
Melanie Bucci
Devaughn Fraser
Genavieve Gray-Sandoval
Zeinab R. Haidar
Melissa Han
William Kohler
Amandine Le Corf
Clara Loyer
Dakota McMillan
Stacy Li
Johnathan Lo
Samantha L. R. Capel
Kathleen Slocum
Melissa Sui
William Thomas
Janet Debelak Tyburec
Rachel Brem
Michael Buchalski
José Pablo Vázquez‐Medina
Lucie Etienne
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