Strategic fisheries closure balances harvest opportunity and stock diversity in a large Alaska river basin

Effective conservation of exploited species requires balancing harvest opportunities with the protection of biodiversity. In Pacific salmon, biodiversity among populations contributes to basin-wide resilience, yet spatiotemporal dynamics of adult migrating Chinook salmon remain poorly understood in many large salmon-producing watersheds, creating uncertainty about management impacts. Declining abundance in western Alaska has led to restrictions in subsistence harvest and challenges for upstream communities. In the Kuskokwim River, a large salmon-producing river, a front-end closure limits early-season fishing to reduce exploitation of fish migrating to the upper watershed. To quantify stock-specific effects of this strategy, we reconstruct spatiotemporal dynamics of Chinook salmon return timing across six years using otolith isotope signatures. We demonstrate a consistent relationship between seasonal run timing and watershed origin, with earlier migrants contributing disproportionately to upper watershed regions. A longer simulated closure provided greater protection for upper watershed stocks but with a tradeoff of lost harvest opportunity. Protection varied substantially among years due to migration timing, highlighting how fixed closure strategies interact with dynamic ecological processes to influence overall efficacy.

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Publication Details

Journal
Canadian Journal of Fisheries and Aquatic Sciences
Published
2026-09-21
DOI
https://doi.org/10.1139/cjfas-2026-0085
Primary Topic
Fish Ecology and Management Studies
Type
article
Field-Weighted Citation Impact
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article

Strategic fisheries closure balances harvest opportunity and stock diversity in a large Alaska river basin

Daniel E. Schindler, Diego P. Fernández, Janessa Esquible, Avery Hoffman et al.
Canadian Journal of Fisheries and Aquatic Sciences
Fish Ecology and Management Studies
article

Strategic fisheries closure balances harvest opportunity and stock diversity in a large Alaska river basin

Daniel E. Schindler, Diego P. Fernández, Janessa Esquible, Avery Hoffman, Ben Makhlouf, Timothy Cline
article en

Abstract

Effective conservation of exploited species requires balancing harvest opportunities with the protection of biodiversity. In Pacific salmon, biodiversity among populations contributes to basin-wide resilience, yet spatiotemporal dynamics of adult migrating Chinook salmon remain poorly understood in many large salmon-producing watersheds, creating uncertainty about management impacts. Declining abundance in western Alaska has led to restrictions in subsistence harvest and challenges for upstream communities. In the Kuskokwim River, a large salmon-producing river, a front-end closure limits early-season fishing to reduce exploitation of fish migrating to the upper watershed. To quantify stock-specific effects of this strategy, we reconstruct spatiotemporal dynamics of Chinook salmon return timing across six years using otolith isotope signatures. We demonstrate a consistent relationship between seasonal run timing and watershed origin, with earlier migrants contributing disproportionately to upper watershed regions. A longer simulated closure provided greater protection for upper watershed stocks but with a tradeoff of lost harvest opportunity. Protection varied substantially among years due to migration timing, highlighting how fixed closure strategies interact with dynamic ecological processes to influence overall efficacy.

Canadian Journal of Fisheries and Aquatic Sciences
Great Lakes Fishery Commission (US), University of Washington (US), University of Utah (US), Montana State University (US)
Openalex Percentile: Top 8%
Fish Ecology and Management Studies
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Strategic fisheries closure balances harvest opportunity and stock diversity in a large Alaska river basin — Daniel E. Schindler, Diego P. Fernández, et al. · Canadian Journal of Fisheries and Aquatic Sciences (2026) | TGRS Research Map | TGRS