Please use this identifier to cite or link to this item: http://hdl.handle.net/11189/9235
Title: Strong and lasting impacts of past global warming on baleen whales and their prey
Authors: Cabrera, Andrea A. 
Schall, Elena 
Bérubé, Martine 
Anderwald, Pia 
Bachmann, Lutz 
Simon, Berrow 
Best, Peter B. 
Clapham, Phillip J. 
Cunha, Haydée A. 
Dalla Rosa, Luciano 
Dias, Carolina 
Findlay, Kenneth P. 
Haug, Tore 
Heide-Jørgensen, Mads Peter 
Hoelzel, A. Rus 
Kovacs, Kit M. 
Landry, Scott 
Larsen, Finn 
Lopes, Xênia M. 
Lydersen, Christian 
Mattila, David K. 
Oosting, Tom 
Pace III, Richard M. 
Papetti, Chiara 
Paspati, Angeliki 
Pastene, Luis A. 
Ramp, Christian 
Robbins, Jooke 
Sears, Richard 
Secchi, Eduardo R. 
Silva, Mónica A. 
Simon, Malene 
Víkingsson, Gísli 
Wiig, Øystein 
Øien, Nils 
Palsbøll, Per J. 
Keywords: Cetaceans;climate change;demographic inference;genetics;glaciation;marine ecosystem;North Atlantic Ocean;polar ecosystems;Southern Ocean
Issue Date: 2022
Publisher: Wiley
Source: Cabrera, A. A., Schall, E. Bérubé, M. et al. 2022. Strong and lasting impacts of past global warming on baleen whales and their prey. Global Change Biology, 28: 2657-2677. [https://doi.org/10.1111/gcb.16085]
Journal: Global Change Biology 
Abstract: Global warming is affecting the population dynamics and trophic interactions across a wide range of ecosystems and habitats. Translating these real-time effects into their long-term consequences remains a challenge. The rapid and extreme warming period that occurred after the Last Glacial Maximum (LGM) during the Pleistocene–Holocene transition (7–12 thousand years ago) provides an opportunity to gain insights into the long-term responses of natural populations to periods with global warming. The effects of this post-LGM warming period have been assessed in many terrestrial taxa, whereas insights into the impacts of rapid global warming on marine taxa remain limited, especially for megafauna. In order to understand how large-scale climate fluctuations during the post-LGM affected baleen whales and their prey, we conducted an extensive, large-scale analysis of the long-term effects of the post-LGM warming on abundance and inter-ocean connectivity in eight baleen whale and seven prey (fish and invertebrates) species across the Southern and the North Atlantic Ocean; two ocean basins that differ in key oceanographic features. The analysis was based upon 7032 mitochondrial DNA sequences as well as genome-wide DNA sequence variation in 100 individuals. The estimated temporal changes in genetic diversity during the last 30,000 years indicated that most baleen whale populations underwent post-LGM expansions in both ocean basins. The increase in baleen whale abundance during the Holocene was associated with simultaneous changes in their prey and climate. Highly correlated, synchronized and exponential increases in abundance in both baleen whales and their prey in the Southern Ocean were indicative of a dramatic increase in ocean productivity. In contrast, the demographic fluctuations observed in baleen whales and their prey in the North Atlantic Ocean were subtle, varying across taxa and time. Perhaps most important was the observation that the ocean-wide expansions and decreases in abundance that were initiated by the post-LGM global warming, continued for millennia after global temperatures stabilized, reflecting persistent, long-lasting impacts of global warming on marine fauna.
Description: Article
URI: http://hdl.handle.net/11189/9235
ISSN: 1365-2486
DOI: https://doi.org/10.1111/gcb.16085
Appears in Collections:Appsc - Journal Articles (DHET subsidised)

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