4.4 Article

Spawning migration behaviour of sea trout (Salmo trutta L.) in a boreal river system: effects of flow conditions and obstacles on migratory activity

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JOURNAL OF FISH BIOLOGY
卷 102, 期 2, 页码 479-491

出版社

WILEY
DOI: 10.1111/jfb.15286

关键词

anadromy; dam; fishway; migration behaviour; radio telemetry

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This study used radio telemetry to examine the upstream spawning migration behavior of anadromous brown trout in the River Isojoki, western Finland. The results showed that the movement activity of trout during the upstream migration and the location of spawning habitats were influenced by a hydropower dam and flow conditions. These findings highlight the importance of managing flow regimes and improving fishway efficiency to mitigate the negative impacts of climate change on migratory fish populations in boreal river systems.
In this study, radio telemetry was used to examine the upstream spawning migration behaviour of anadromous brown trout (sea trout), Salmo trutta L., in a boreal river system, the River Isojoki, western Finland. The aim was to study the movement activity and migration characteristics of trout during the upstream spawning migration, as well as to locate the important spawning habitats and study the spawning characteristics. Furthermore, the authors analysed how flow conditions and a hydropower dam, with adjacent fishways, affected the upstream spawning migration. Tagged trout spawned in both the main stem and four tributaries, with spawning taking place from early October to November. The movement activity of radio-tagged trout was influenced by a hydropower dam (Perus dam), with spring migrators spending prolonged periods at the dam area, postponing the migration upstream. Flow conditions affected the total time spent at the dam area, as well as the movement activity in the free-flowing sections above the dam, with increasing flow stimulating activity. In addition, time of river ascent and location of spawning area had a significant effect on the movement activity of tagged trout. These results are further evidence that synergistic effects of flow and migratory obstacles can negatively influence migrations of anadromous fish, regardless of constructed fishways. The management of flow regimes and the efficiency of fishways are vital, as climate change will likely influence the flow and increase the water temperature of boreal river systems, further aggravating issues caused by obstacles.

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