4.3 Article

Spatiotemporal variation in harbor porpoise distribution and foraging across a landscape of fear

期刊

MARINE MAMMAL SCIENCE
卷 38, 期 1, 页码 42-57

出版社

WILEY
DOI: 10.1111/mms.12839

关键词

bottlenose dolphin; competition; C-POD; distribution; foraging; harbor porpoise; INLA; landscape of fear

资金

  1. Marine Alliance for Science and Technology for Scotland
  2. Marine Scotland Science
  3. University of Aberdeen

向作者/读者索取更多资源

Understanding the spatiotemporal distribution of harbor porpoises, influenced by seasonal prey availability, daylight, and competition with bottlenose dolphins, can shed light on management strategies and interactions with offshore industries. The study found that porpoises had the highest occurrence probability on an offshore sandbank with low foraging activity, shifting their distribution throughout the summer and autumn to potentially avoid overlap with dolphins.
Understanding spatiotemporally varying animal distributions can inform ecological understanding of species' behavior (e.g., foraging and predator/prey interactions) and support development of management and conservation measures. Data from an array of echolocation-click detectors (C-PODs) were analyzed using Bayesian spatiotemporal modeling to investigate spatial and temporal variation in occurrence and foraging activity of harbor porpoises (Phocoena phocoena) and how this variation was influenced by daylight and presence of bottlenose dolphins (Tursiops truncatus). The probability of occurrence of porpoises was highest on an offshore sandbank, where the proportion of detections with foraging clicks was relatively low. The porpoises' overall distribution shifted throughout the summer and autumn, likely influenced by seasonal prey availability. Probability of porpoise occurrence was lowest in areas close to the coast, where dolphin detections were highest and declined prior to dolphin detection, leading potentially to avoidance of spatiotemporal overlap between porpoises and dolphins. Increased understanding of porpoises' seasonal distribution, key foraging areas, and their relationship with competitors can shed light on management options and potential interactions with offshore industries.

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