Abstract
Resources in the pelagic environment tend to be patchily distributed, often resulting in animals engaging in adaptive behaviors to maximize foraging success. While these behaviors have been examined in horizontal and vertical dimensions separately, there has been limited work integrating these functionally related movements in sharks. We investigated how vertical behaviors change in relation to horizontal movements in the pelagic, highly migratory, shortfin mako shark Isurus oxyrinchus. Data from 30 sharks (114 to 245 cm total length), double-tagged with Pop-up Archival and Transmitting (PAT) and Smart Position or Temperature Transmitting (SPOT) tags within the Southern California Bight were analyzed. We examined shark daytime depth distributions after their horizontal movements were first classified by water column thermal structure (thermal habitat), and into 1 of 2 behavioral modes (area-restricted search or transient) using a switching state-space model. Despite high inter- and intra-individual variability, thermal habitat and behavioral mode influenced depth distribution. Within thermal habitats, sharks spent similar amounts of time near the surface in both behavioral modes, although transient animals spent more time in deeper waters within some thermal habitats. Comparing among thermal habitats, sharks performing transient movements in warmer waters spent more time at depth. Sharks experienced an expansion of vertical habitat use when they switched to transient behaviors, possibly to search for prey, and the degree of habitat expansion may be influenced by temperature. These results suggest that in a 3-dimensional habitat, such as the pelagic environment, prey searching behaviors in the horizontal and vertical dimensions are linked.
| Original language | English |
|---|---|
| Pages (from-to) | 85-99 |
| Number of pages | 15 |
| Journal | Marine Ecology Progress Series |
| Volume | 732 |
| DOIs | |
| State | Published - Mar 20 2024 |
Bibliographical note
Publisher Copyright:© Inter-Research 2024.
Funding
We thank many colleagues, field assistants and volunteers from the Southwest Fisheries Science Center. We thank the crews of the RV \u2018David Starr Jordon\u2019, FV \u2018Ventura II\u2019, and FV \u2018Southern Horizon\u2019. Numerous students and colleagues from the Centro de Investigaci\u00F3n Cient\u00EDfica y de Educaci\u00F3n Superior de Ensenada (CICESE), and volunteers from Moss Landing Marine Labs, California State University Fullerton, California State University Long Beach, Monterey Bay Aquarium, Scripps Institution of Oceanography, and other institutions assisted during tagging cruises. We also thank the Tagging of Pacific Predators (TOPP) Program, which supplied many of the deployed tags and N. Nasby-Lucas for comments on a previous draft of the manuscript. Funding was provided by the National Marine Fisheries Service (NMFS), the TOPP Program, the NOAA National Cooperative Research Program, the Guy Harvey Foundation, and the Save Our Seas Foundation.
| Funders |
|---|
| California State University, Long Beach |
| National Marine Fisheries Service |
| NOAA National Cooperative Research Program |
| National Oceanic and Atmospheric Administration |
| Guy Harvey Foundation |
| California State University, Fullerton |
| Monterey Bay Aquarium Foundation |
| University of California at San Diego |
| Save our Seas Foundation |
| Centro de Investigación Científica y de Educación Superior de Ensenada, Baja California |
ASJC Scopus Subject Areas
- Ecology, Evolution, Behavior and Systematics
- Aquatic Science
- Ecology
Keywords
- Behavioral plasticity
- Dive behavior
- Habitat use
- Prey searching
- Satellite telemetry
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