Insights into longevity and virus-driven adaptation from Myotis bat genomes
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TL;DR - Comparative and functional analyses of Myotis bat genomes identify distinctive adaptations in virus-interacting proteins and longevity-associated pathways. The study connects bats’ responses to viral pressures with their unusually long lifespans.
- Compares genomes across Myotis bats to characterize evolutionary adaptations.
- Finds unique patterns of change in proteins that interact with viruses.
- Identifies adaptations in biological pathways associated with longevity.
- Links two prominent features of bat biology: viral adaptation and extended lifespan.
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Insights into longevity and virus-driven adaptation from Myotis bat genomes
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TL;DR - Comparative and functional analyses of Myotis bat genomes identify distinctive adaptations in virus-interacting proteins and longevity-associated pathways. The study connects bats’ responses to viral pressures with their unusually long lifespans.
- Compares genomes across Myotis bats to characterize evolutionary adaptations.
- Finds unique patterns of change in proteins that interact with viruses.
- Identifies adaptations in biological pathways associated with longevity.
- Links two prominent features of bat biology: viral adaptation and extended lifespan.