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Disentangling the biotic and abiotic drivers of emergent migratory behavior using individual-based models

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Listed:
  • Dodson, Stephanie
  • Abrahms, Briana
  • Bograd, Steven J.
  • Fiechter, Jerome
  • Hazen, Elliott L.

Abstract

Understanding the drivers of movement, migration and distribution of individuals is important for insight into how species will respond to changing environmental conditions. Both abiotic and biotic factors are thought to influence migratory behavior, but their relative roles are difficult to disentangle. For migratory marine predators, both temperature and prey availability have been shown to be significant predictors of space use, though often researchers rely on physical proxies due to the lack of data on dynamic prey fields. We generated spatially explicit individual-based movement models to evaluate the relative roles of abiotic (sea surface temperature; SST) and biotic (prey availability) factors in driving blue whale (Balaenoptera musculus) movement decisions and migratory behavior in the eastern North Pacific. Using output from a lower trophic ecosystem model coupled with a regional ocean circulation model, we parameterized a blue whale movement model that explicitly incorporates prey fields in addition to physical proxies. A model using both SST and prey data reproduced blue whale foraging behavior including realistic timing of latitudinal migrations. SST- and prey-only population models demonstrated important independent effects of each variable. In particular, the SST-only model revealed that warm temperatures limited krill foraging opportunities but failed to drive seasonal foraging patterns, whereas the prey-only model revealed more realistic seasonal and interannual differences in foraging behavior. Our individual-based movement model helps elucidate the mechanisms underlying migration and demonstrates how fine-scale individual decision-making can lead to emergent migratory behavior at the population level. Moreover, determining the relative effects of the physical environment and prey availability on the movement decisions of threatened species is critical to understand how they may respond to changing ocean conditions.

Suggested Citation

  • Dodson, Stephanie & Abrahms, Briana & Bograd, Steven J. & Fiechter, Jerome & Hazen, Elliott L., 2020. "Disentangling the biotic and abiotic drivers of emergent migratory behavior using individual-based models," Ecological Modelling, Elsevier, vol. 432(C).
  • Handle: RePEc:eee:ecomod:v:432:y:2020:i:c:s0304380020302957
    DOI: 10.1016/j.ecolmodel.2020.109225
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    References listed on IDEAS

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    1. Olivier Duriez & Silke Bauer & Anne Destin & Jesper Madsen & Bart A. Nolet & Richard A. Stillman & Marcel Klaassen, 2009. "What decision rules might pink-footed geese use to depart on migration? An individual-based model," Behavioral Ecology, International Society for Behavioral Ecology, vol. 20(3), pages 560-569.
    2. Andrew J Bernoff & Michael Culshaw-Maurer & Rebecca A Everett & Maryann E Hohn & W Christopher Strickland & Jasper Weinburd, 2020. "Agent-based and continuous models of hopper bands for the Australian plague locust: How resource consumption mediates pulse formation and geometry," PLOS Computational Biology, Public Library of Science, vol. 16(5), pages 1-29, May.
    3. Kishi, Michio J. & Kashiwai, Makoto & Ware, Daniel M. & Megrey, Bernard A. & Eslinger, David L. & Werner, Francisco E. & Noguchi-Aita, Maki & Azumaya, Tomonori & Fujii, Masahiko & Hashimoto, Shinji & , 2007. "NEMURO—a lower trophic level model for the North Pacific marine ecosystem," Ecological Modelling, Elsevier, vol. 202(1), pages 12-25.
    4. David S Wilcove & Martin Wikelski, 2008. "Going, Going, Gone: Is Animal Migration Disappearing," PLOS Biology, Public Library of Science, vol. 6(7), pages 1-4, July.
    5. Kelly J Benoit-Bird & Brian C Battaile & Scott A Heppell & Brian Hoover & David Irons & Nathan Jones & Kathy J Kuletz & Chad A Nordstrom & Rosana Paredes & Robert M Suryan & Chad M Waluk & Andrew W Tr, 2013. "Prey Patch Patterns Predict Habitat Use by Top Marine Predators with Diverse Foraging Strategies," PLOS ONE, Public Library of Science, vol. 8(1), pages 1-12, January.
    6. H. Hildenbrandt & C. Carere & C.K. Hemelrijk, 2010. "Self-organized aerial displays of thousands of starlings: a model," Behavioral Ecology, International Society for Behavioral Ecology, vol. 21(6), pages 1349-1359.
    7. Ladd M Irvine & Bruce R Mate & Martha H Winsor & Daniel M Palacios & Steven J Bograd & Daniel P Costa & Helen Bailey, 2014. "Spatial and Temporal Occurrence of Blue Whales off the U.S. West Coast, with Implications for Management," PLOS ONE, Public Library of Science, vol. 9(7), pages 1-10, July.
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    Cited by:

    1. Michele Baggio & Metin Cosgel, 2023. "Racial Diversity and Team Performance: Evidence from the American Offshore Whaling Industry," Working papers 2023-04, University of Connecticut, Department of Economics, revised Feb 2024.

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