Key words: Atlantic Puffins, marine heatwaves, parenting roles, plasticity, chick behavior
References
Ainley, D. G., & Boekelheide, R. J. (Eds.). (1990). Seabirds of the Farallon Islands: Ecology, dynamics, and structure of an upwelling-system community. Stanford University Press.
Akaike, H. (1998). Information theory and an extension of the maximum likelihood principle. In E. Parzen, K. Tanabe, & G. Kitagawa (Eds.),
Selected papers of Hirotugu Akaike (pp. 199-213). Springer.
https://doi.org/10.1007/978-1-4612-1694-0_15
Anker-Nilssen, T., Kadin, M., & Hilde, C. H. (2024). Stay or go? Changing breeding conditions affect sexual difference in colony attendance strategies of Atlantic Puffins
Fratercula arctica.
Ecology and Evolution, 14(7), Article e11681.
https://doi.org/10.1002/ece3.11681
Balch, W. M., Drapeau, D. T., Bowler, B. C., Record, N. R., Bates, N. R., Pinkham, S., Garley, R., & Mitchell, C. (2022). Changing hydrographic, biogeochemical, and acidification properties in the Gulf of Maine as measured by the Gulf of Maine North Atlantic Time Series, GNATS, between 1998 and 2018.
Journal of Geophysical Research: Biogeosciences, 127(6), Article e2022JG006790.
https://doi.org/10.1029/2022JG006790
Budge, S. M., Iverson, S. J., Bowen, W. D., & Ackman, R. G. (2002). Among- and within-species variability in fatty acid signatures of marine fish and invertebrates on the Scotian Shelf, Georges Bank, and southern Gulf of St. Lawrence.
Canadian Journal of Fisheries and Aquatic Sciences, 59(5), 886-898.
https://doi.org/10.1139/f02-062
Creelman, E., & Storey, A. E. (1991). Sex differences in reproductive behavior of Atlantic Puffins.
The Condor, 93(2), 390-398.
https://doi.org/10.2307/1368955
Cushing, D. A., Kuletz, K. J., Sousa, L., Day, R. H., Danielson, S. L., Labunski, E. A., & Hopcroft, R. R. (2024). Differential response of seabird species to warm- and cold-water events in a heterogeneous cross-shelf environment in the Gulf of Alaska.
Marine Ecology Progress Series, 737, 31-58.
https://doi.org/10.3354/meps14239
Fayet, A. L., Clucas, G. V., Anker‐Nilssen, T., Syposz, M., & Hansen, E. S. (2021). Local prey shortages drive foraging costs and breeding success in a declining seabird, the Atlantic Puffin.
Journal of Animal Ecology, 90(5), 1152-1164.
https://doi.org/10.1111/1365-2656.13442
Fitzsimmons, M. G. (2018).
Sex-specific behavioural and physiological responses of breeding Atlantic Puffins Fratercula arctica
and their chicks to fluctuating prey abundance [Doctoral dissertation, Memorial University of Newfoundland].
https://research.library.mun.ca/13632/
Gomes, D. G. E., Ruzicka, J. J., Crozier, L. G., Huff, D. D., Brodeur, R. D., & Stewart, J. D. (2024). Marine heatwaves disrupt ecosystem structure and function via altered food webs and energy flux.
Nature Communications, 15, Article 1988.
https://doi.org/10.1038/s41467-024-46263-2
Grilli, M. G., Pari, M., & Ibañez, A. (2018). Poor body conditions during the breeding period in a seabird population with low breeding success.
Marine Biology, 165(9), Article 142.
https://doi.org/10.1007/s00227-018-3401-4
Harris, M. P., Bogdanova, M. I., Daunt, F., & Wanless, S. (2012). Using GPS technology to assess feeding areas of Atlantic Puffins
Fratercula arctica. Ringing & Migration, 27(1), 43-49.
https://doi.org/10.1080/03078698.2012.691247
Harris, M. P., & Wanless, S. (2011). The Puffin (1st ed.). Bloomsbury Publishing.
Hobday, A. J., Alexander, L. V., Perkins, S. E., Smale, D. A., Straub, S. C., Oliver, E. C. J., Benthuysen, J. A., Burrows, M. T., Donat, M. G., Feng, M., Holbrook, N. J., Moore, P. J., Scannell, H. A., Sen Gupta, A., & Wernberg, T. (2016). A hierarchical approach to defining marine heatwaves.
Progress in Oceanography, 141, 227-238.
https://doi.org/10.1016/j.pocean.2015.12.014
Hobday, A. J., Oliver, E. C. J., Sen Gupta, A., Benthuysen, J. A., Burrows, M. T., Donat, M. G., Holbrook, N. J., Moore, P. J., Thomsen, M. S., Wernberg, T., & Smale, D. A. (2018). Categorizing and naming marine heatwaves.
Oceanography, 31(2), 162-173.
https://doi.org/10.5670/oceanog.2018.205
Huang, B., Liu, C., Banzon, V. F., Freeman, E., Graham, G., Hankins, W., Smith, T. M., & Zhang, H.-M. (2020).
NOAA 0.25-degree daily Optimum Interpolation Sea Surface Temperature (OISST), Version 2.1 [Data set]. National Centers for Environmental Information, National Oceanic and Atmospheric Administration, U.S. Department of Commerce.
https://doi.org/10.25921/RE9P-PT57
Kleisner, K. M., Fogarty, M. J., McGee, S., Hare, J. A., Moret, S., Perretti, C. T., & Saba, V. S. (2017). Marine species distribution shifts on the U.S. Northeast Continental Shelf under continued ocean warming.
Progress in Oceanography, 153, 24-36.
https://doi.org/10.1016/j.pocean.2017.04.001
Kress, S. W., Shannon, P., & O'Neal, C. (2016). Recent changes in the diet and survival of Atlantic Puffin chicks in the face of climate change and commercial fishing in midcoast Maine, USA.
FACETS, 1(1), 27-43.
https://doi.org/10.1139/facets-2015-0009
Le Nohaïc, M., Ross, C. L., Cornwall, C. E., Comeau, S., Lowe, R., McCulloch, M. T., & Schoepf, V. (2017). Marine heatwave causes unprecedented regional mass bleaching of thermally resistant corals in northwestern Australia.
Scientific Reports, 7, Article 14999.
https://doi.org/10.1038/s41598-017-14794-y
Lescure, L., Gulka, J., & Davoren, G. K. (2023). Increased foraging effort and reduced chick condition of Razorbills under lower prey biomass in coastal Newfoundland, Canada.
Marine Ecology Progress Series, 709, 109-123.
https://doi.org/10.3354/meps14286
Lonhart, S. I., Jeppesen, R., Beas-Luna, R., Crooks, J. A., & Lorda, J. (2019). Shifts in the distribution and abundance of coastal marine species along the eastern Pacific Ocean during marine heatwaves from 2013 to 2018.
Marine Biodiversity Records, 12, Article 13.
https://doi.org/10.1186/s41200-019-0171-8
Marin, M., Feng, M., Phillips, H. E., & Bindoff, N. L. (2021). A global, multiproduct analysis of coastal marine heatwaves: Distribution, characteristics, and long-term trends.
Journal of Geophysical Research: Oceans, 126(2), Article e2020JC016708.
https://doi.org/10.1029/2020JC016708
Merchant, C. J., Allan, R. P., & Embury, O. (2025). Quantifying the acceleration of multidecadal global sea surface warming driven by Earth's energy imbalance.
Environmental Research Letters, 20(2), Article 024037.
https://doi.org/10.1088/1748-9326/adaa8a
Mills, K. E., Kemberling, A., Kerr, L. A., Lucey, S. M., McBride, R. S., Nye, J. A., Pershing, A. J., Barajas, M., & Lovas, C. S. (2024). Multispecies population-scale emergence of climate change signals in an ocean warming hotspot.
ICES Journal of Marine Science, 81(2), 375-389.
https://doi.org/10.1093/icesjms/fsad208
Mills, K. E., Pershing, A. J., Brown, C. J., Chen, Y., Chiang, F.-S., Holland, D. S., Lehuta, S., Nye, J. A., Sun, J. C., Thomas, A. C., & Wahle, R. A. (2013). Fisheries management in a changing climate: Lessons from the 2012 ocean heat wave in the Northwest Atlantic.
Oceanography, 26(2), 191-195.
https://doi.org/10.5670/oceanog.2013.27
Nye, J. A., Joyce, T. M., Kwon, Y.-O., & Link, J. S. (2011). Silver hake tracks changes in Northwest Atlantic circulation.
Nature Communications, 2, Article 412.
https://doi.org/10.1038/ncomms1420
Nye, J. A., Link, J. S., Hare, J. A., & Overholtz, W. J. (2009). Changing spatial distribution of fish stocks in relation to climate and population size on the Northeast United States continental shelf.
Marine Ecology Progress Series, 393, 111-129.
https://doi.org/10.3354/meps08220
Orians, G. H., & Pearson, N. E. (1979). On the theory of central place foraging. In D. J. Horn, R. D. Mitchell, & G. R. Stairs (Eds.), Analysis of Ecological Systems (pp. 155-177). Ohio State University Press.
Osborne, O. E., O'Hara, P. D., Whelan, S., Zandbergen, P., Hatch, S. A., & Elliott, K. H. (2020). Breeding seabirds increase foraging range in response to an extreme marine heatwave.
Marine Ecology Progress Series, 646, 161-173.
https://doi.org/10.3354/meps13392
Pershing, A. J., Alexander, M. A., Hernandez, C. M., Kerr, L. A., Le Bris, A., Mills, K. E., Nye, J. A., Record, N. R., Scannell, H. A., Scott, J. D., Sherwood, G. D., & Thomas, A. C. (2015). Slow adaptation in the face of rapid warming leads to collapse of the Gulf of Maine cod fishery.
Science, 350(6262), 809-812.
https://doi.org/10.1126/science.aac9819
Piatt, J. F., Arimitsu, M. L., Thompson, S. A., Suryan, R., Wilson, R. P., Elliott, K. H., & Sydeman, W. J. (2024). Mechanisms by which marine heatwaves affect seabirds.
Marine Ecology Progress Series, 737, 1-8.
https://doi.org/10.3354/meps14625
Piatt, J. F., Parrish, J. K., Renner, H. M., Schoen, S. K., Jones, T. T., Arimitsu, M. L., Kuletz, K. J., Bodenstein, B., García-Reyes, M., Duerr, R. S., Corcoran, R. M., Kaler, R. S. A., McChesney, G. J., Golightly, R. T., Coletti, H. A., Suryan, R. M., Burgess, H. K., Lindsey, J., Lindquist, K., … Sydeman, W. J. (2020). Extreme mortality and reproductive failure of Common Murres resulting from the northeast Pacific marine heatwave of 2014-2016.
PLoS One, 15(1), Article e0226087.
https://doi.org/10.1371/journal.pone.0226087
R Core Team. (2024).
R: A language and environment for statistical computing (Version 4.4.1). The R Foundation for Statistical Computing.
https://www.r-project.org/
Ramírez, F., Afán, I., Tavecchia, G., Catalán, I. A., Oro, D., & Sanz-Aguilar, A. (2016). Oceanographic drivers and mistiming processes shape breeding success in a seabird.
Proceedings of the Royal Society B, 283(1826), Article 20152287.
https://doi.org/10.1098/rspb.2015.2287
Schlegel, R. W., & Smit, A. J. (2018). heatwaveR: A central algorithm for the detection of heatwaves and cold-spells.
Journal of Open Source Software, 3(27), Article 821.
https://doi.org/10.21105/joss.00821
Schrimpf, M. B., Parrish, J. K., & Pearson, S. F. (2012). Trade-offs in prey quality and quantity revealed through the behavioral compensation of breeding seabirds.
Marine Ecology Progress Series, 460, 247-259.
https://www.jstor.org/stable/24876376
Scopel, L., Diamond, A., Kress, S., & Shannon, P. (2019). Varied breeding responses of seabirds to a regime shift in prey base in the Gulf of Maine.
Marine Ecology Progress Series, 626, 177-196.
https://doi.org/10.3354/meps13048
Seidov, D., Mishonov, A., & Parsons, R. (2021). Recent warming and decadal variability of Gulf of Maine and Slope Water.
Limnology and Oceanography, 66(9), 3472-3488.
https://doi.org/10.1002/lno.11892
Sen Gupta, A., Thomsen, M., Benthuysen, J. A., Hobday, A. J., Oliver, E., Alexander, L. V., Burrows, M. T., Donat, M. G., Feng, M., Holbrook, N. J., Perkins-Kirkpatrick, S., Moore, P. J., Rodrigues, R. R., Scannell, H. A., Taschetto, A. S., Ummenhofer, C. C., Wernberg, T., & Smale, D. A. (2020). Drivers and impacts of the most extreme marine heatwave events.
Scientific Reports, 10, Article 19359.
https://doi.org/10.1038/s41598-020-75445-3
Smale, D. A., Wernberg, T., Oliver, E. C. J., Thomsen, M., Harvey, B. P., Straub, S. C., Burrows, M. T., Alexander, L. V., Benthuysen, J. A., Donat, M. G., Feng, M., Hobday, A. J., Holbrook, N. J., Perkins-Kirkpatrick, S. E., Scannell, H. A., Sen Gupta, A., Payne, B. L., & Moore, P. J. (2019). Marine heatwaves threaten global biodiversity and the provision of ecosystem services.
Nature Climate Change, 9, 306-312.
https://doi.org/10.1038/s41558-019-0412-1
Smith, O. A., & Craig, E. C. (2023). Effects of Atlantic Butterfish (
Peprilus triacanthus) in diets of Common Terns (
Sterna hirundo): A case study of climate change effects in the Gulf of Maine.
Avian Conservation and Ecology, 18(2), Article 1.
https://doi.org/10.5751/ACE-02440-180201
Staudinger, M. D., Mills, K. E., Stamieszkin, K., Record, N. R., Hudak, C. A., Allyn, A., Diamond, A., Friedland, K. D., Golet, W., Henderson, M. E., Hernandez, C. M., Huntington, T. G., Ji, R., Johnson, C. L., Johnson, D. S., Jordaan, A., Kocik, J., Li, Y., Liebman, M., … Yakola, K. (2019). It's about time: A synthesis of changing phenology in the Gulf of Maine ecosystem.
Fisheries Oceanography, 28(5), 532-566.
https://doi.org/10.1111/fog.12429
Symons, S. C., & Diamond, A. W. (2022). Resource partitioning in Atlantic Puffins and Razorbills facing declining food: An analysis of feeding areas and dive behaviour in relation to diet.
Marine Ecology Progress Series, 699, 153-165.
https://doi.org/10.3354/meps14172
Venegas, R. M., Acevedo, J., & Treml, E. A. (2023). Three decades of ocean warming impacts on marine ecosystems: A review and perspective.
Deep Sea Research Part II, 212, Article 105318.
https://doi.org/10.1016/j.dsr2.2023.105318
Wernham, C. V. (1993).
Ecology and energetics of breeding Puffins (Fratercula arctica
): Variation in individual reproductive effort and success [Doctoral dissertation, University of Stirling]. Stirling Online Research Repository.
http://hdl.handle.net/1893/29385
Woehler, E. J., & Hobday, A. J. (2024). Impacts of marine heatwaves may be mediated by seabird life history strategies.
Marine Ecology Progress Series, 737, 9-23.
https://doi.org/10.3354/meps14333