Fisheries management

Leveraging science, policy, and partnerships in pursuit of place-based sustainable salmon fisheries.

Photo by Fernando Lessa.

For more than a century, fishing pressure has contributed to the decline of wild salmon.  One reason for this is the nature of ocean fisheries that intercept salmon while migrating to their rivers of origin. Populations of salmon with varying degrees of abundance often migrate together.

When caught in the ocean, it’s hard to know which populations of salmon you are harvesting. In this way, salmon populations can be inadvertently overharvested, and decline.  We use a comprehensive approach to inform actions that benefit salmon ecosystems in a changing climate.

Two sockeye salmon swimming in a river.
Photo by Fernando Lessa.
Salmon school in the shallows, clearly seen from above, on a sandy region of the Fraser River, mountains looming in the background.
Photo by Fernando Lessa.

More than a numbers game

Fisheries can affect more than just the abundance of salmon. They can make fish smaller and younger; they can decrease genetic diversity; they can change the time salmon return to spawn. They can also influence the number of eggs a salmon lays, and whether the fry from those eggs survive to become adult salmon. Ultimately, unsustainable fisheries can influence many factors that prevent the recovery of wild salmon.

While harvest is just one of many threats facing these fish, it is one that we have considerable control over. Raincoast works to change unsustainable fishing practices that drive the decline in salmon abundance and the problem of smaller and younger salmon.

How we advance sustainable fisheries

Raincoast engages in technical aspects of salmon management, fisheries harvest, and recovery planning. We do this independently and as part of the Marine Conservation Caucus, a collaborative group of scientists and conservationists from several member organizations that engage with Fisheries and Oceans Canada on fisheries management. As a part of this caucus, Raincoast advocates for alternatives to unsustainable fishing practices, protection of wild salmon from hatcheries, and considering the needs of wildlife in fisheries decisions.

Multiple Chinook salmon underwater.
Photo by Fernando Lessa.
Two tiny fish float int he dark green sea.
Photo by Fernando Lessa.

Our view on hatcheries

Wild salmon require wild rivers. Since the 1970s, hatcheries have been used to prop up commercial and recreational fisheries. Hatcheries were the response to the problem of overfishing and habitat destruction, the root causes of the initial salmon decline. 

The original belief behind hatcheries was that consumer demand for salmon could be met while simultaneously rebuilding depleted populations. However, this goal has proved elusive, and hatchery practices often harm the wild fish they purport to help.

Hatcheries can decrease the genetic diversity of salmon populations. Hatchery fish can [also] compete with wild fish in the ocean and disrupt marine food webs.

Lastly, hatchery production complicates fisheries. When less abundant wild salmon are caught alongside plentiful hatchery fish, wild salmon are overharvested. Hatcheries can be an effective short-term tool to support recovery for at-risk populations, but they should be closed once recovery objectives have been met, and only used to support fisheries in limited places.

Salmon for ecosystems

If the wildlife that depend on salmon are to be considered when harvest decisions are made, one of the most important shifts needed is an ecosystem-based approach. Such decision- making would incorporate the importance of salmon to food webs that contribute essential food and nutrients to forests, rivers, and the ocean. In many cases, simply letting more fish spawn would meet ecosystem objectives.

Equally, salmon management should be “place-based,” a concept that recognizes the unique attributes of each watershed where salmon spawn, rear, and adapt to the local conditions. This process makes each salmon population unique.

Overhead photo of four killer whales swimming together.
Photo by Raincoast Conservation Foundation, taken under SARA Research License XMMS-2-2022.

Recent articles

A wolf fishes in an intertidal pool.

Mail is down, but our conservation work continues

Keep conservation going: Easy ways to give during the Canada Post Strike.
Humpback whales bubblenet feeding on the central coast.

Dr. Erin Wall presents on humpback whale songs in Perth

Dr. Erin Wall is at the Perth conference on the Biology of Marine Mammals where she is singing the praise of humpback whale song.
A memorable evening at the 2024 Raincoast Ocean Science Awards

A memorable evening at the 2024 Raincoast Ocean Science Awards

Filled with warmth, camaraderie, and engaging conversations, the Ocean Awards was an inspiring celebration of science excellence and conservation achievement.
Our field team navigating to shore on their way to a camera service.

What forests mean to coastal wildlife

We know that old-growth forests provide many important services to coastal species, but when these environments are changed, how does the age, diversity, and structure of these forests influence wildlife communities?  Over the past 14 months, a network of wildlife cameras in Heiltsuk Territory has been collecting images of coastal species so that managers and…
A field scientists walk in the central coast rainforest watching and counting salmon

Creekwalking in Heiltsuk Territory

This past fall, Raincoast’s Wild Salmon team and technicians from the Reynolds Lab at Simon Fraser University conducted fieldwork for a long-term chum and pink salmon spawner monitoring project in Heiltsuk Territory. Started in 2007, the project monitors spawning populations in 27 small streams throughout the territory, and the data is used to inform fisheries…
Water runs into the forest line, with mountains looming moodily in the background.

Studying the impacts of drought on salmon habitat in the Nicola watershed

We’re conducting collaborative science to build climate resilience for salmon in the Nicola watershed.