Global shifts in mammalian population trends reveal key predictors of virus spillover risk.

Christine K Johnson1 Peta L Hitchens2 Pranav S Pandit1 Julie Rushmore1 Tierra Smiley Evans1 Cristin C W Young1 Megan M Doyle1
Affiliations 2 institutions
  1. EpiCenter for Disease Dynamics, One Health Institute, School of Veterinary Medicine, University of California, Davis, CA 95616, USA.
  2. Melbourne Veterinary School, Faculty of Veterinary and Agricultural Sciences, University of Melbourne, Werribee, VIC 3030, Australia.

Abstract

Emerging infectious diseases in humans are frequently caused by pathogens originating from animal hosts, and zoonotic disease outbreaks present a major challenge to global health. To investigate drivers of virus spillover, we evaluated the number of viruses mammalian species have shared with humans. We discovered that the number of zoonotic viruses detected in mammalian species scales positively with global species abundance, suggesting that virus transmission risk has been highest from animal species that have increased in abundance and even expanded their range by adapting to human-dominated landscapes. Domesticated species, primates and bats were identified as having more zoonotic viruses than other species. Among threatened wildlife species, those with population reductions owing to exploitation and loss of habitat shared more viruses with humans. Exploitation of wildlife through hunting and trade facilitates close contact between wildlife and humans, and our findings provide further evidence that exploitation, as well as anthropogenic activities that have caused losses in wildlife habitat quality, have increased opportunities for animal-human interactions and facilitated zoonotic disease transmission. Our study provides new evidence for assessing spillover risk from mammalian species and highlights convergent processes whereby the causes of wildlife population declines have facilitated the transmission of animal viruses to humans.

Supporting text Virus Host Location
exploitation 1 habitat loss 1 spillover 105 threatened species 1 virus 12 zoonotic disease 19 Mammals 92 Viruses 49 Animals 1948 Animals, Wild 187 Chiroptera 371 Communicable Diseases, Emerging 33 Ecosystem 36 Global Health 6 Humans 1440 Population Dynamics 7 Zoonoses 397

Evidence records

3 total
Zoonotic Surveillance
3 records · 1 evidence types
Evidence type
3 records
OVE3712
Key finding

Mammalian species with greater abundance in human-dominated landscapes show higher detection of zoonotic viruses, indicating increased animal-to-human spillover risk.

Virus
Host
Location
Not specified
Supporting text

We discovered that the number of zoonotic viruses detected in mammalian species scales positively with global species abundance, suggesting that virus transmission risk has been highest from animal species that have increased in abundance and even expanded their range by adapting to human-dominated landscapes.

Method
virus-host association analysis | global species abundance modeling
OVE3713
Key finding

Domesticated species, primates, and bats possess more zoonotic viruses shared with humans, pointing to elevated animal-to-human transmission potential in these groups.

Virus
Host
Location
Not specified
Supporting text

Domesticated species, primates and bats were identified as having more zoonotic viruses than other species.

Method
host-virus database comparison | statistical association testing
OVE3714
Key finding

Threatened wildlife species undergoing population declines from exploitation and habitat loss shared more viruses with humans, linking ecological disturbance to increased spillover risk.

Virus
Host
Location
Not specified
Supporting text

Among threatened wildlife species, those with population reductions owing to exploitation and loss of habitat shared more viruses with humans.

Method
host-threat correlation analysis | viral sharing network analysis