Salmon from upstream reaches of the two northernmost Baltic rivers are different from downstream salmon. A recent study found that upstream salmon from the large Tornio and Kalix Rivers in Finland and Sweden are genetically distinct and migrate at different times and ages than their downstream counterparts. However, there seems to be no such distinction between salmon from these two neighbouring rivers.
Traffic is busy below the surface of the Baltic Sea and rivers flowing into it. Starting in early summer, mature salmon migrate from the sea into their home rivers to spawn. The study by the University of Helsinki, Natural Resources Institute Finland (Luke) and Swedish University of Agricultural Sciences (SLU) found that salmon destined to spawn far upstream entered the Tornio (Torne in Swedish) River at an earlier date during their spawning migration.
Morever, salmon heading to the upper parts of the river system had almost always spent more than one year at the sea. This is relevant for fisheries, as salmon grow larger the more time they spend at sea. Old and large salmon are particularly prized catches, and essential for the stocks’ wellbeing: large salmon produce the most offspring. How to preserve this kind of diversity is an important consideration in the management and conservation of the largest wild Baltic salmon stocks. The Tornio River acts as the border between Finland and Sweden, whereas the neighbouring Kalix River is located entirely in Sweden. These rivers host by far the largest remaining wild Baltic salmon stocks.
Surprisingly, the study found no clear genetic differences separating salmon from the two rivers. This may partly be explained by the rivers being connected to each other by one of the largest bifurcations in the world. About half of the water from the Swedish Torne River flows into the Kalix River through the bifurcation. From the salmon’s perspective, it makes the rivers one vast system to navigate in. In practice, salmon and their genes have a way of reaching the other river.
Source: EurekAlert