Avian predator-prey dynamics in a changing climate along the Western Antarctic Peninsula; a scoping review
Russell, T. M.; Hermanson, V. R.
Show abstract
A unique characteristic of the food web along the Western Antarctic Peninsula (WAP), one of the fastest warming regions in the world, is that the avian tertiary predators seasonally rely on avian secondary predators for their subsistence. We conducted a scoping review to 1.) provide a summary of research on Antarctic avian predator-prey relationships, 2.) investigate potential avian predator-prey relationships and trends with the environment, and 3.) highlight research gaps and provide recommendations for future research. We searched Web of Science and Google Scholar for publications in English during any years. For our first aim, we searched using the terms "predator-prey dynamics" AND "Antarctica." We excluded results that did not include both avian predators and prey, which resulted in eight publications from around the Southern Ocean, and one along the WAP. For our second aim, we searched using the terms of each species common and scientific names (gentoo penguin, Pygoscelis papua, Adelie penguin, P. adeliae, chinstrap penguin, P. antarcticus, southern giant petrel, Macronectes giganteus, south polar skua, Stercorarius maccormicki, brown skua, S. antarcticus) AND "population" AND "Antarctic Peninsula." We refined our results (N=59) to publications with data on at least one prey and one predator avian species of all papers found in Web of Science, and the first 100 records of Google Scholar. We selected five locations that had data spanning over 10 years and that spread across the northern WAP. We compared predator-prey species trends across time along with sea surface and air temperature. We found that predator-prey dynamics between avian secondary and tertiary predators have had limited investigations in Antarctica. Along the WAP, the relationship between different penguin species and avian tertiary predators are highly variable and many population trends are decoupled from local temperature change. We include recommendations for future data collection and research on these interactions.
Matching journals
The top 1 journal accounts for 50% of the predicted probability mass.
Similar papers in this journal
- Predicting the impacts of sea level rise in sea turtle nesting habitat on Bioko Island, Equatorial Guinea 96%
- Habitat use of loggerhead (Caretta caretta) and green (Chelonia mydas) turtles in the Northwest Pacific Ocean, the northern limit of their distribution range 96%
- Sperm Whales Demographics in the Gulf of Alaska and Bering Sea/Aleutian Islands: An Overlooked Female Habitat 95%
Similar papers in this journal
Similar papers in this journal
- Determining the Role of Environmental Covariates on Planktivorous Elasmobranch Population Trends within an Isolated Marine Protected Area 93%
- A possible stimulus to induce SPAWNING in Ezo abalone Haliotis discus hannai during a stormy condition: Fenton reaction induces spawning behavior 93%
- Geographic variation in vulnerability to warming temperatures in an intertidal barnacle species 93%
Similar papers in this journal
Similar papers in this journal
- Whale shark residency and small-scale movements around oil and gas platforms in Qatar 95%
- Using cost-effective surveys from platforms of opportunity to assess cetacean occurrence patterns for marine park management in the heart of the Coral Triangle 94%
- Automated quantification of ecological interactions from video 91%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.