<p>Characterizing host–virus associations is critical due to the rising frequency of emerging infectious diseases originating from wildlife. Past analyses have evaluated zoonotic risk as binary, but virulence, transmissibility, and death burden can vary dramatically. Recent work suggests bats harbor more viruses with high virulence in humans than other taxa. However, it remains unknown whether all bats harbor viruses of equal viral epidemic potential. We used phylogenetic factorization to flexibly identify clades of mammals (at any taxonomic level) associated with low or high viral epidemic potential. We found that virulence, transmissibility, and death burden only cluster within specific bat clades, often composed largely of cosmopolitan families. Mapping the geographic distributions of these bat clades with anthropogenic footprint data suggests high viral epidemic potential in coastal South America, Southeast Asia, and equatorial Africa. Our results deepen understanding of the host–virus network and identify clades to prioritize for viral surveillance, risk mitigation, and future studies characterizing mechanisms of viral tolerance.</p>

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Viral epidemic potential is not uniformly distributed across the bat phylogeny

  • Caroline A. Cummings,
  • Amanda Vicente-Santos,
  • Colin J. Carlson,
  • Daniel J. Becker

摘要

Characterizing host–virus associations is critical due to the rising frequency of emerging infectious diseases originating from wildlife. Past analyses have evaluated zoonotic risk as binary, but virulence, transmissibility, and death burden can vary dramatically. Recent work suggests bats harbor more viruses with high virulence in humans than other taxa. However, it remains unknown whether all bats harbor viruses of equal viral epidemic potential. We used phylogenetic factorization to flexibly identify clades of mammals (at any taxonomic level) associated with low or high viral epidemic potential. We found that virulence, transmissibility, and death burden only cluster within specific bat clades, often composed largely of cosmopolitan families. Mapping the geographic distributions of these bat clades with anthropogenic footprint data suggests high viral epidemic potential in coastal South America, Southeast Asia, and equatorial Africa. Our results deepen understanding of the host–virus network and identify clades to prioritize for viral surveillance, risk mitigation, and future studies characterizing mechanisms of viral tolerance.