Hatchery propagation did not reduce natural steelhead productivity relative to habitat conditions and predation in a mid-Columbia River subbasin

Author:

Courter Ian I.1,Chance Tom2,Gerstenberger Ryan3,Roes Mark1,Gibbs Sean1,Spidle Adrian4

Affiliation:

1. Mount Hood Environmental, PO Box 744, Boring, OR97009, USA

2. Lummi Nation, 2665 Kwina Road, Bellingham, WA98226, USA

3. Confederated Tribes of Warm Springs, 6030 Dee Hwy , Parkdale, OR97041, USA

4. Northwest Indian Fisheries Commission, 6730 Martin Way E, Olympia, WA98516, USA

Abstract

For over 150 years, hatchery-origin anadromous salmon and trout have been reared and released throughout the Pacific Northwest to mitigate for lost habitat and sustain harvest opportunity. Some studies demonstrate that introgression of hatchery and naturally produced fish may constrain conservation efforts through maladaptive genetic processes. However, empirical demonstrations of the influence of these genetic interactions on population productivity are lacking, making it difficult to assess their importance relative to other drivers of productivity. We estimated the effect of the proportion of hatchery-origin spawners (pHOS), proportionate natural influence (PNI), and hatchery fish releases on natural adult winter steelhead recruitment in the Hood River, Oregon, over a 27-year period of record. Adult winter steelhead productivity was not associated with pHOS and PNI. However, natural winter steelhead productivity was positively associated with ocean conditions, stream flow, and hatchery fish release numbers, while negatively associated with pinniped abundance. Our analysis highlights the importance of quantifying the influence of hatchery programs on fish production relative to environmental factors known to affect natural-origin anadromous fish recruitment.

Publisher

Canadian Science Publishing

Subject

Aquatic Science,Ecology, Evolution, Behavior and Systematics

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Spatial and temporal overlap between hatchery‐ and natural‐origin steelhead and Chinook Salmon during spawning in the Klickitat River, Washington, USA;North American Journal of Fisheries Management;2023-11-16

2. New Journal Design;Fisheries;2023-10

3. Response to Comment on Courter et al. (2022);Canadian Journal of Fisheries and Aquatic Sciences;2023-02-01

4. Inferring hatchery effects using spawner-recruit data: comment on Courter et al. (2022);Canadian Journal of Fisheries and Aquatic Sciences;2023-02-01

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