Spatially varying effects of the California Undercurrent on Pacific hake distribution

Author:

Malick Michael J.1ORCID,Hunsicker Mary E.2ORCID,Haltuch Melissa A.3ORCID,Parker-Stetter Sandra L.4,Marshall Kristin N.5ORCID,Pohl John E.5,Berger Aaron M.6ORCID,Siedlecki Samantha A.7ORCID,Gauthier Stéphane89ORCID,Hermann Albert J.10ORCID

Affiliation:

1. Environmental and Fisheries Sciences Division, Northwest Fisheries Science Center, National Marine Fisheries Service, National Oceanic and Atmospheric Administration, Port Orchard, WA 98366, USA

2. Fish Ecology Division, Northwest Fisheries Science Center, National Marine Fisheries Service, National Oceanic and Atmospheric Administration, Newport, OR 97365, USA

3. Resource Ecology and Fisheries Management Division, Alaska Fisheries Science Center, National Marine Fisheries Service, National Oceanic and Atmospheric Administration, Seattle, WA 98115, USA

4. Resource Assessment and Conservation Engineering Division, Alaska Fisheries Science Center, National Marine Fisheries Service, National Oceanic and Atmospheric Administration, Seattle, WA 98115, USA

5. Fishery Resource Analysis and Monitoring Division, Northwest Fisheries Science Center, National Marine Fisheries Service, National Oceanic and Atmospheric Administration, Seattle, WA 98112, USA

6. Fishery Resource Analysis and Monitoring Division, Northwest Fisheries Science Center, National Marine Fisheries Service, National Oceanic and Atmospheric Administration, Newport, OR 97365, USA

7. Department of Marine Sciences, University of Connecticut, Groton, CT 06340, USA

8. Institute of Ocean Sciences, Fisheries and Oceans Canada, Sidney, BC V8L 4B2, Canada

9. Department of Biology, University of Victoria, Victoria, BC, Canada

10. Cooperative Institute for Climate, Ocean, and Ecosystem Studies, University of Washington, Seattle, WA 98105, USA

Abstract

In the California Current Ecosystem, the California Undercurrent (CU) is the predominate subsurface current that transports nutrient-rich water from southern California poleward. In this study, we used a large dataset of spatially explicit in situ observations of Pacific hake ( Merluccius productus) and the CU (36.5–48.3°N) to estimate relationships between northward undercurrent velocity and hake distribution and determine whether these relationships vary across space or life-history stage. We found that both hake occurrence and density had strong spatially complex relationships with the CU. In areas north of 44°N (central Oregon), the CU effect was spatially consistent and opposite for occurrence (negative) and density (positive), indicating that hake may aggregate in areas of high northward velocity in this region. In areas south of 44°N, the CU effect showed a cross-shelf gradient for both occurrence and density, indicating a more nearshore hake distribution when northward velocity is higher in this region. Together, our results suggest that future changes in the CU due to climate change are likely to impact hake differently in northern and southern areas.

Funder

NOAA Fisheries and the Environment

Publisher

Canadian Science Publishing

Subject

Aquatic Science,Ecology, Evolution, Behavior and Systematics

Reference58 articles.

1. The relationship between Pacific hake (Merluccius productus) distribution and poleward subsurface flow in the California Current System

2. Climate–ocean variability and Pacific hake: A geostatistical modeling approach

3. Berger A.M., Grandin C.J., Johnson K.F., Edwards A.M. 2023. Status of the Pacific hake (whiting) stock in the U.S. and Canadian waters in 2023. Prepared by the Joint Technical Committee for Pacific Hake/Whiting Agreement, National Marine Fisheries Service and Fisheries and Oceans Canada. 208p.

4. Effects of a Warm-Core Eddy on Fish Distributions in the Tasman Sea of East Australia

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