Taxonomic patterns in the zoonotic potential of mammalian viruses.

Alex D Washburne1 Daniel E Crowley1 Daniel J Becker1 Kevin J Olival2 Matthew Taylor1 Vincent J Munster3 Raina K Plowright1
Affiliations 3 institutions
  1. Department of Microbiology and Immunology, Montana State University, Bozeman, MT, USA.
  2. Ecohealth Alliance, New York, NY, USA.
  3. National Institute of Allergy and Infectious Disease, Hamilton, MT, USA.

Abstract

Predicting and simplifying which pathogens may spill over from animals to humans is a major priority in infectious disease biology. Many efforts to determine which viruses are at risk of spillover use a subset of viral traits to find trait-based associations with spillover. We adapt a new method-phylofactorization-to identify not traits but lineages of viruses at risk of spilling over. Phylofactorization is used to partition the International Committee on Taxonomy of Viruses viral taxonomy based on non-human host range of viruses and whether there exists evidence the viruses have infected humans. We identify clades on a range of taxonomic levels with high or low propensities to spillover, thereby simplifying the classification of zoonotic potential of mammalian viruses. Phylofactorization by whether a virus is zoonotic yields many disjoint clades of viruses containing few to no representatives that have spilled over to humans. Phylofactorization by non-human host breadth yields several clades with significantly higher host breadth. We connect the phylogenetic factors above with life-histories of clades, revisit trait-based analyses, and illustrate how cladistic coarse-graining of zoonotic potential can refine trait-based analyses by illuminating clade-specific determinants of spillover risk.

Supporting text Virus Host Location
Epidemiology 48 Phylofactorization 1 Spillover 105 Viruses 117 Zoonosis 116

Evidence records

3 total
Genomic Evolution
3 records · 1 evidence types
Evidence type
3 records
OVE3143
Key finding

Phylofactorization of viral taxonomy identified clades of mammalian viruses with high or low propensities to spill over to humans.

Virus
Host
Location
Not specified
Supporting text

We identify clades on a range of taxonomic levels with high or low propensities to spillover, thereby simplifying the classification of zoonotic potential of mammalian viruses.

Analysis methods
phylofactorization | phylogenetic analysis
OVE3145
Key finding

Phylofactorization analysis identified mammalian virus clades with documented evidence of infection in humans, indicating natural animal-to-human spillover events among these lineages.

Virus
Host
Location
Not specified
Supporting text

Phylofactorization is used to partition the International Committee on Taxonomy of Viruses viral taxonomy based on non-human host range of viruses and whether there exists evidence the viruses have infected humans.

Analysis methods
phylofactorization | taxonomy-based partitioning
OVE3144
Key finding

Phylofactorization based on non-human host breadth revealed clades of mammalian viruses with significantly higher host breadth.

Virus
Host
Not specified
Location
Not specified
Supporting text

Phylofactorization by non-human host breadth yields several clades with significantly higher host breadth among mammalian viruses.

Analysis methods
phylofactorization | phylogenetic analysis