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Biotic and abiotic factors predicting the global distribution and population density of an invasive large mammal

Scientific Reports, ISSN: 2045-2322, Vol: 7, Issue: 1, Page: 44152
2017
  • 185
    Citations
  • 0
    Usage
  • 454
    Captures
  • 13
    Mentions
  • 0
    Social Media
Metric Options:   Counts1 Year3 Year

Metrics Details

  • Citations
    185
  • Captures
    454
  • Mentions
    13
    • News Mentions
      10
      • News
        10
    • Blog Mentions
      3
      • Blog
        3

Most Recent Blog

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1Department of Veterinary Preventive Medicine, The Ohio State University, Columbus, OH, United States 2Department of Population Health and Pathobiology, College of Veterinary Medicine, North Carolina

Article Description

Biotic and abiotic factors are increasingly acknowledged to synergistically shape broad-scale species distributions. However, the relative importance of biotic and abiotic factors in predicting species distributions is unclear. In particular, biotic factors, such as predation and vegetation, including those resulting from anthropogenic land-use change, are underrepresented in species distribution modeling, but could improve model predictions. Using generalized linear models and model selection techniques, we used 129 estimates of population density of wild pigs (Sus scrofa) from 5 continents to evaluate the relative importance, magnitude, and direction of biotic and abiotic factors in predicting population density of an invasive large mammal with a global distribution. Incorporating diverse biotic factors, including agriculture, vegetation cover, and large carnivore richness, into species distribution modeling substantially improved model fit and predictions. Abiotic factors, including precipitation and potential evapotranspiration, were also important predictors. The predictive map of population density revealed wide-ranging potential for an invasive large mammal to expand its distribution globally. This information can be used to proactively create conservation/management plans to control future invasions. Our study demonstrates that the ongoing paradigm shift, which recognizes that both biotic and abiotic factors shape species distributions across broad scales, can be advanced by incorporating diverse biotic factors.

Bibliographic Details

Lewis, Jesse S; Farnsworth, Matthew L; Burdett, Chris L; Theobald, David M; Gray, Miranda; Miller, Ryan S

Springer Science and Business Media LLC

Multidisciplinary

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