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Incorporating environmental heterogeneity and observation effort to predict host distribution and viral spillover from a bat reservoir

  • Rita Ribeiro*
  • , Jason Matthiopoulos
  • , Finn Lindgren
  • , Carlos Tello
  • , Carlos M. Zariquiey
  • , William Valderrama
  • , Tonie E. Rocke
  • , Daniel G. Streicker
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

Abstract

Predicting the spatial occurrence of wildlife is a major challenge for ecology and management. In Latin America, limited knowledge of the number and locations of vampire bat roosts precludes informed allocation of measures intended to prevent rabies spillover to humans and livestock. We inferred the spatial distribution of vampire bat roosts while accounting for observation effort and environmental effects by fitting a log Gaussian Cox process model to the locations of 563 roosts in three regions of Peru. Our model explained 45% of the variance in the observed roost distribution and identified environmental drivers of roost establishment. When correcting for uneven observation effort, our model estimated a total of 2340 roosts, indicating that undetected roosts (76%) exceed known roosts (24%) by threefold. Predicted hotspots of undetected roosts in rabies-free areas revealed high-risk areas for future viral incursions. Using the predicted roost distribution to inform a spatial model of rabies spillover to livestock identified areas with disproportionate underreporting and indicated a higher rabies burden than previously recognized. We provide a transferrable approach to infer the distribution of a mostly unobserved bat reservoir that can inform strategies to prevent the re-emergence of an important zoonosis.

Original languageEnglish
Article number20231739
JournalProceedings of the Royal Society B: Biological Sciences
Volume290
Issue number2011
DOIs
Publication statusPrint publication - 29 Nov 2023
Externally publishedYes

Bibliographical note

Publisher Copyright:
© 2023 The Authors.

Keywords

  • detection probability
  • Gaussian random field
  • partially observed species
  • species distribution models
  • vampire bat rabies

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