Early evidence for establishment of a Chinook salmon population in a restored watershed

IF 2.7 3区 环境科学与生态学 Q2 ECOLOGY
Ecosphere Pub Date : 2025-03-16 DOI:10.1002/ecs2.70207
Lauren G. Hitt, Malte Willmes, George Whitman, Mackenzie C. Miner, Carson Jeffres, Rachel C. Johnson, Dennis E. Cocherell, Nann A. Fangue, Andrew L. Rypel
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Abstract

As fish populations face compounding pressures under climate change, highly modified rivers are receiving increasing research and conservation attention as important sites for restoration. Across the North Pacific Ocean, Chinook salmon (Oncorhynchus tshawytscha) have experienced unprecedented declines and extirpations because of habitat loss and fragmentation and climate variability. Here, we studied a rare example of a novel salmon population developing in Putah Creek, California, a dam-controlled stream flowing through an area of intensive agriculture where salmon were unlikely to occur prior to the rehabilitation of a more natural flow regime. We used otoliths from adult Chinook salmon carcasses recovered from Putah Creek to determine river or hatchery of origin for five spawning year classes. Our results provide evidence of successful salmon reproduction, outmigration survival, and natal homing of individuals back to Putah Creek in recent years. Although hatchery-origin fish that strayed to Putah Creek to spawn dominated returns each year, this study documents life-cycle completion required for the potential development of a self-sustaining salmon population. This study demonstrates that targeted restoration and flow rehabilitation efforts can generate viable new salmon spawning habitat in dam-controlled river systems, which could help mitigate habitat lost to dams and developments. Further, successful anadromous life-cycle completion can occur in new spawning habitat within the first several generations, which will help inform efforts to restore or reintroduce salmon in other altered river systems.

Abstract Image

奇努克鲑鱼种群在恢复后的流域建立的早期证据
在气候变化的影响下,鱼类种群面临着复杂的压力,高度改造的河流作为重要的恢复场所受到越来越多的研究和保护关注。在整个北太平洋,由于栖息地丧失、破碎化和气候变化,奇努克鲑鱼(Oncorhynchus tshawytscha)经历了前所未有的减少和灭绝。在这里,我们研究了一个罕见的新鲑鱼种群发展的例子,在加利福尼亚州的普塔溪,一条由水坝控制的河流流经集约化农业地区,在恢复更自然的流动制度之前,鲑鱼不太可能出现。我们使用从普塔溪回收的成年奇努克鲑鱼尸体的耳石来确定五个产卵年类别的起源河流或孵化场。我们的研究结果提供了近年来成功的鲑鱼繁殖,外移生存和个体返回Putah溪出生的证据。虽然每年洄游到普塔溪产卵的孵化场鱼类在回报中占主导地位,但这项研究记录了一个自我维持的鲑鱼种群潜在发展所需的生命周期完成。这项研究表明,有针对性的恢复和流量恢复工作可以在水坝控制的河流系统中产生可行的新鲑鱼产卵栖息地,这有助于减轻因水坝和开发而失去的栖息地。此外,在最初的几代内,在新的产卵栖息地可以成功地完成溯河洄游的生命周期,这将有助于在其他改变的河流系统中恢复或重新引入鲑鱼。
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来源期刊
Ecosphere
Ecosphere ECOLOGY-
CiteScore
4.70
自引率
3.70%
发文量
378
审稿时长
15 weeks
期刊介绍: The scope of Ecosphere is as broad as the science of ecology itself. The journal welcomes submissions from all sub-disciplines of ecological science, as well as interdisciplinary studies relating to ecology. The journal''s goal is to provide a rapid-publication, online-only, open-access alternative to ESA''s other journals, while maintaining the rigorous standards of peer review for which ESA publications are renowned.
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