Responses of Antarctic seabird populations to past climate change

Higher‐order predators such as Antarctic seabirds serve as ecological indicators of environmental change and provide a crucial trophic link between marine and terrestrial ecosystems. Despite their prevalence and significance in the Antarctic ecosystem, there is a lack of understanding of the impacts of major regime shifts in paleoclimate on flighted Antarctic seabirds. We address this by reconstructing demographic histories using complete genomes of six flighted seabirds and two penguin species, each with distinct habitat requirements and life histories in East Antarctica. We evaluated changes in species abundance in relation to major environmental shifts after 10 Mya, including previously inferred Antarctic krill abundance. We demonstrated that four fulmarine petrel species increased during periods of paleoclimatic cooling (10 Mya to 500 kya) and prior to krill population increases, potentially reflecting earlier use of alternative prey. Fulmarine petrels increased more rapidly than Adélie and emperor penguins, likely reflecting their greater ability to exploit resources through flight. Differing from all other species, demographic histories of south polar skua and Wilson's storm‐petrel exhibited long periods of decline, and these may reflect physiological constraints or may be confounded by aspects of their evolutionary history (e.g. recent speciation and colonisation of Antarctica). Overall, our results indicate a degree of predictability in species' responses to past climate change. With most species requiring ice‐free breeding areas, the predominant observation of increases in predator abundance across a background of climatic cooling suggests that future increases in ice‐free areas for breeding may not offset negative impacts from any declines in prey.

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Publication Details

Journal
Ecography
Published
2026-08-25
DOI
https://doi.org/10.1002/ecog.08322
Primary Topic
Avian ecology and behavior
Type
article
Field-Weighted Citation Impact
0.00

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article

Responses of Antarctic seabird populations to past climate change

Juliana A. Vianna, Fabiola León Miranda, Elize Y. X. Ng, Louise Emmerson et al.
Ecography
Avian ecology and behavior
article

Responses of Antarctic seabird populations to past climate change

Juliana A. Vianna, Fabiola León Miranda, Elize Y. X. Ng, Louise Emmerson, Christopher P. Burridge, Bárbara Wienecke, Colin Southwell
article en

Abstract

Higher‐order predators such as Antarctic seabirds serve as ecological indicators of environmental change and provide a crucial trophic link between marine and terrestrial ecosystems. Despite their prevalence and significance in the Antarctic ecosystem, there is a lack of understanding of the impacts of major regime shifts in paleoclimate on flighted Antarctic seabirds. We address this by reconstructing demographic histories using complete genomes of six flighted seabirds and two penguin species, each with distinct habitat requirements and life histories in East Antarctica. We evaluated changes in species abundance in relation to major environmental shifts after 10 Mya, including previously inferred Antarctic krill abundance. We demonstrated that four fulmarine petrel species increased during periods of paleoclimatic cooling (10 Mya to 500 kya) and prior to krill population increases, potentially reflecting earlier use of alternative prey. Fulmarine petrels increased more rapidly than Adélie and emperor penguins, likely reflecting their greater ability to exploit resources through flight. Differing from all other species, demographic histories of south polar skua and Wilson's storm‐petrel exhibited long periods of decline, and these may reflect physiological constraints or may be confounded by aspects of their evolutionary history (e.g. recent speciation and colonisation of Antarctica). Overall, our results indicate a degree of predictability in species' responses to past climate change. With most species requiring ice‐free breeding areas, the predominant observation of increases in predator abundance across a background of climatic cooling suggests that future increases in ice‐free areas for breeding may not offset negative impacts from any declines in prey.

Ecography
University of Tasmania (AU), Australian Antarctic Division (AU), Instituto Venezolano de Investigaciones Científicas (VE), Millennium Science Initiative (CL), Universidad Andrés Bello (CL), Millennium Institute for Integrative Biology (CL)
Holsworth Wildlife Research Endowment, Ecological Society of America, University of Tasmania, Ecological Society of Australia, Agencia Nacional de Investigación y Desarrollo, Australian Antarctic Division
Life below water
Openalex Percentile: Top 10%
Avian ecology and behavior
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