Environmental drivers of spatiotemporal foraging intensity in fruit bats and implications for Hendra virus ecology.

John R Giles1,2 Peggy Eby3 Hazel Parry4 Alison J Peel5 Raina K Plowright6 David A Westcott7 Hamish McCallum5
Affiliations 7 institutions
  1. Johns Hopkins University Bloomberg School of Public Health, Department of Epidemiology, Baltimore, MD, USA. [email protected].
  2. Environmental Futures Research Institute, Griffith University, Brisbane, QLD, Australia. [email protected].
  3. School of Biological, Earth, and Environmental Sciences, University of New South Wales, Sydney, NSW, Australia.
  4. CSIRO Health and Biosecurity, Brisbane, Queensland, 4001, Australia.
  5. Johns Hopkins University Bloomberg School of Public Health, Department of Epidemiology, Baltimore, MD, USA.
  6. Department of Microbiology and Immunology, Montana State University, Bozeman, MT, USA.
  7. CSIRO Land and Water, Atherton, Queensland, 4883, Australia.

Abstract

In the Australian subtropics, flying-foxes (family Pteropididae) play a fundamental ecological role as forest pollinators. Flying-foxes are also reservoirs of the fatal zoonosis, Hendra virus. Understanding flying fox foraging ecology, particularly in agricultural areas during winter, is critical to determine their role in transmitting Hendra virus to horses and humans. We developed a spatiotemporal model of flying-fox foraging intensity based on foraging patterns of 37 grey-headed flying-foxes (Pteropus poliocephalus) using GPS tracking devices and boosted regression trees. We validated the model with independent population counts and summarized temporal patterns in terms of spatial resource concentration. We found that spatial resource concentration was highest in late-summer and lowest in winter, with lowest values in winter 2011, the same year an unprecedented cluster of spillover events occurred in Queensland and New South Wales. Spatial resource concentration was positively correlated with El Niño Southern Oscillation at 3-8 month time lags. Based on shared foraging traits with the primary reservoir of Hendra virus (Pteropus alecto), we used our results to develop hypotheses on how regional climatic history, eucalypt phenology, and foraging behaviour may contribute to the predominance of winter spillovers, and how these phenomena connote foraging habitat conservation as a public health intervention.

Supporting text Virus Host Location
Behavior, Animal 4 Environment 3 Models, Statistical 11 Spatio-Temporal Analysis 9 Animals 1948 Chiroptera 371 Hendra Virus 39

Evidence records

2 total
Zoonotic Surveillance
2 records · 1 evidence types
Evidence type
2 records
OVE3034
Key finding

Flying-foxes (family Pteropididae) are ecological reservoirs of Hendra virus in the Australian subtropics, and their foraging ecology is investigated to understand conditions influencing transmission to horses and humans.

Virus
Host
Location
Supporting text

In the Australian subtropics, flying-foxes (family Pteropididae) play a fundamental ecological role as forest pollinators. Flying-foxes are also reservoirs of the fatal zoonosis, Hendra virus.

Method
spatiotemporal modeling | GPS tracking | boosted regression trees | population count validation
Sample type
GPS tracking data | population counts
Geographic raw
Australian subtropics
OVE3035
Key finding

An unprecedented cluster of Hendra virus spillover events occurred during winter 2011 in Queensland and New South Wales, temporally linked to flying-fox ecology.

Virus
Host
Location
Supporting text

Flying-foxes are also reservoirs of the fatal zoonosis, Hendra virus. Understanding flying fox foraging ecology, particularly in agricultural areas during winter, is critical to determine their role in transmitting Hendra virus to horses and humans. We found that spatial resource concentration was highest in late-summer and lowest in winter, with lowest values in winter 2011, the same year an unprecedented cluster of spillover events occurred in Queensland and New South Wales.

Method
spatiotemporal model | GPS tracking | boosted regression trees
Geographic raw
Queensland | New South Wales