4.3 Article

Evaluating the Mechanisms of Landscape Change on White-Tailed Deer Populations

Journal

JOURNAL OF WILDLIFE MANAGEMENT
Volume 85, Issue 2, Pages 340-353

Publisher

WILEY
DOI: 10.1002/jwmg.21979

Keywords

Alberta; climate; density; distribution; habitat alteration; Odocoileus virginianus; snow depth; white‐ tailed deer

Funding

  1. Regional Industry Caribou Collaboration

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The study found that snow depth and anthropogenic habitat alteration have significant effects on the distribution and density of white-tailed deer in Alberta, Canada. Sites with shallower snow had higher deer presence, while increased habitat alteration only increased deer presence in the northern portion of the study area. Winter deer density was primarily influenced by snow depth, while spring density was influenced by both habitat alteration and the previous winter's snow depth.
Understanding how landscape change influences the distribution and densities of species, and the consequences of these changes, is a central question in modern ecology. The distribution of white-tailed deer (Odocoileus virginianus) is expanding across North America, and in some areas, this pattern has led to an increase in predators and consequently higher predation rates on woodland caribou (Rangifer tarandus caribou)-an alternate prey species that is declining across western Canada. Understanding the factors influencing deer distribution has therefore become important for effective conservation of caribou in Canada. Changing climate and anthropogenic landscape alteration are hypothesized to facilitate white-tailed deer expansion. Yet, climate and habitat alteration are spatiotemporally correlated, making these factors difficult to isolate. Our study evaluates the relative effects of snow conditions and human-modified habitat (habitat alteration) across space on white-tailed deer presence and relative density. We modeled deer response to snow depth and anthropogenic habitat alteration across a large latitudinal gradient (49 degrees to 60 degrees) in Alberta, Canada, using motion-sensitive camera data collected in winter and spring from 2015 to 2019. Deer distribution in winter and spring were best explained by models including both snow depth and habitat alteration. Sites with shallower snow had higher deer presence regardless of latitude. Increased habitat alteration increased deer presence in the northern portion of the study area only. Winter deer density was best explained by snow depth only, whereas spring density was best explained by both habitat alteration and the previous winter's snow depth. Our results suggest that limiting future habitat alteration or restoring habitat can alter deer distribution, thereby potentially slowing or reversing expansion, but that climate plays a significant role beyond what managers can influence. (c) 2020 The Wildlife Society.

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