Hello Everyone,
My co-authors and I are pleased to announce the publication of our new paper which describes the ecological drivers of blue and fin whale movement off the U.S. West Coast, and links non-directed movement to feeding. It is published open access in the journal
Movement Ecology
here . Full citation and abstract are below.
Best,
Ladd
Irvine, L.M., Lagerquist, B.A., Schorr, G.S. et al. Ecological drivers of movement for two sympatric marine predators in the California current large marine ecosystem. Mov Ecol 13, 19 (2025).
https://doi.org/10.1186/s40462-025-00542-9
Abstract
Background
An animal’s movement reflects behavioral decisions made to address ecological needs; specifically, that movement will become less directional in regions with high prey availability, indicating foraging behavior. In the marine realm, animal behavior occurs
below the sea surface and is difficult to observe. We used an extensive satellite tagging dataset to explore how physical and biological habitat characteristics influence blue (Balaenoptera musculus) and fin (B. physalus) whale movement and foraging behavior
in the California Current Ecosystem across four known bioregions.
Methods
We fitted movement models to 14 years of blue whale satellite tracking data and 13 years of fin whale data to characterize their movement persistence, with higher move persistence values representing more directional movement and lower move persistence
values representing less directional movement. Models were evaluated against a range of physical and biological environmental predictors to identify significant correlates of low move persistence (i.e., presumed intensified foraging behavior). We then used
data from a subset of sensor-equipped tags that monitored vertical behavior (e.g., dive and feeding), in addition to movement, to test the relationship between vertical behavior and movement persistence.
Results
Low move persistence was strongly correlated with shallower water depth and sea surface height for both species, with additional effects of chlorophyll-a concentration, vorticity and marine nekton biomass for blue whales. Data from sensor-equipped tags
additionally showed that low move persistence occurred when whales made more numerous feeding dives. Temporal patterns of bioregion occupancy coincided with seasonal peaks in productivity. Most blue whale low-move-persistence movements occurred in the northern,
nearshore bioregion with a late-season peak in productivity and were evenly distributed across all bioregions for fin whales.
Conclusions
We demonstrated that low move persistence is indicative of increased feeding behavior for both blue and fin whales. The environmental drivers of low move persistence were similar to those previously identified for survey-based species distribution models,
linking environmental metrics to subsurface behavior. Occupancy and movement behavior patterns across bioregions indicate both species moved to exploit seasonal and spatial variability in productivity, with blue whales especially focusing on the bioregion of
highest productivity during late summer and fall.
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Ladd M. Irvine, PhD (he/him)
Research Associate
Marine Mammal Institute and Dept. of Fisheries, Wildlife & Conservation Sciences
Oregon State University
Hatfield Marine Science Center
2030 SE Marine Science Drive
Newport, OR 97365, USA