Arkansas Democrat-Gazette

Genetic mapping boosts hopes for restoring prized lake trout

- JOHN FLESHER

TRAVERSE CITY, Mich. — Scientists have traced the genetic makeup of lake trout, a feat that should boost efforts to rebuild population­s of the prized fish in the Great Lakes and other North American waters where they’ve been hammered by invasive species, overfishin­g and pollution, officials said Tuesday.

U.S. and Canadian researcher­s completed a reference genome, or digital genetic map, for lake trout. It will help explain characteri­stics that enabled the species to evolve and spread across its vast range, with certain types becoming better suited to particular locations and depths.

The data also will provide vital informatio­n for managers of programs that stock lakes with young trout to supplement natural reproducti­on, said Marc Gaden, spokesman for the Great Lakes Fishery Commission, a U.S.-Canadian agency that funded the research.

“Lake trout are widely distribute­d across North America, and there are huge variations in habitat use, shape, size, body mass, color,” Gaden said. “We need to understand why they look the way they do, why some types are more successful in some habitats than others, why some types in hatcheries do better than others.”

The team of experts with several U.S. and Canadian universiti­es and government agencies published their genome report Aug. 5 in the journal Molecular Ecology Resources. William Taylor, chairman of the fishery commission and a Michigan State University fisheries ecologist, described it as “a vital missing link in our efforts to restore lake trout.”

Lake trout long dominated the Great Lakes as a predator fish and are common in other large North American lakes. They sustained aboriginal tribes for generation­s and were a primary target of post-settlement commercial fishing operations.

Their numbers in the Great Lakes plummeted in the last century with the invasion of sea lamprey, an eellike parasite that attaches to fish and sucks their bodily fluids. Researcher­s eventually developed a poison that is applied to tributary rivers where the lamprey spawn, keeping them in check.

But habitat loss, overfishin­g, pollution and other invaders have hampered efforts to bring back the lake trout. Although they can live for decades, it takes about seven years for them to become sexually mature — and many don’t survive long enough to reproduce.

Agencies continue to stock them in all the Great Lakes except Lake Superior, where the species has recovered well, Gaden said.

Developmen­t of the reference genome should help managers fine-tune those efforts.

“The more you can understand what makes this organism tick, the more you can do to take steps to rehabilita­te it,” he said.

Genomes of salmonids, a family that includes lake trout, are harder to compile than those of many other animals, the research team said.

“Having a publicly available map of the lake trout genome removes most of the initial hurdles associated with doing conservati­on-oriented genomic research, makes it significan­tly easier to compare results across studies, and will hopefully quicken the pace of scientific discovery,” said Seth Smith of Michigan State University, the study’s lead author.

Shawn Sitar, a fisheries research biologist with the Michigan Department of Natural Resources who wasn’t involved with the study, said returning lake trout to their historical­ly influentia­l role in the Great Lakes will require understand­ing difference­s between their types at the sub-species level — which the genome research will support.

“We see them in different habitats, functionin­g in ecological­ly different ways, living differentl­y,” Sitar said.

“If you want to restore a forest ecosystem, you don’t put in one just one tree. You want to restore the integrity of what the ecosystem was originally.”

 ?? (File Photo/aP/great Lakes Fishery Commission/andrew Muiri) ?? A lake trout swims September 12, 2018, off Isle Royale, Mich., in Lake Superior.
(File Photo/aP/great Lakes Fishery Commission/andrew Muiri) A lake trout swims September 12, 2018, off Isle Royale, Mich., in Lake Superior.
 ?? (File Photo/aP/Jim Cole) ?? Snow falls Jan. 18, 2014, as ice fisherman Jeremy Simon walks off the ice after catching his 19½inch Lake trout on Lake Winnipesau­kee’s alton Bay in alton, N.H. Lake trout were once the most dominant fish predator fish species in the great Lakes but declined in the 20th century because of attacks from invasive sea lamprey, plus overfishin­g and pollution.
(File Photo/aP/Jim Cole) Snow falls Jan. 18, 2014, as ice fisherman Jeremy Simon walks off the ice after catching his 19½inch Lake trout on Lake Winnipesau­kee’s alton Bay in alton, N.H. Lake trout were once the most dominant fish predator fish species in the great Lakes but declined in the 20th century because of attacks from invasive sea lamprey, plus overfishin­g and pollution.
 ?? (File Photo/aP/Wilson Ring) ?? Mary Russ and her son Siler look into a fish tank July 7, 2017, at the White River National Fish Hatchery following a ceremony marking the reopening of the hatchery, focused on producing landlocked salmon and lake trout eggs.
(File Photo/aP/Wilson Ring) Mary Russ and her son Siler look into a fish tank July 7, 2017, at the White River National Fish Hatchery following a ceremony marking the reopening of the hatchery, focused on producing landlocked salmon and lake trout eggs.
 ?? (File Photo/aP/Mary Esch) ?? Baby bloaters being reared to restore the prey fish population in Lake Ontario swim June 4, 2013, in a tank at the U.S. geological Service’s tunison Laboratory of aquatic Science.
(File Photo/aP/Mary Esch) Baby bloaters being reared to restore the prey fish population in Lake Ontario swim June 4, 2013, in a tank at the U.S. geological Service’s tunison Laboratory of aquatic Science.
 ?? (File Photo/aP/Mary Esch) ?? An adult lake herring is displayed June 4, 2013, at the U.S. geological Service’s tunison Laboratory of aquatic Science.
(File Photo/aP/Mary Esch) An adult lake herring is displayed June 4, 2013, at the U.S. geological Service’s tunison Laboratory of aquatic Science.
 ?? (File Photo/aP/Mary Esch) ?? Lake herring swim June 4, 2013, in a raceway at the U.S. geological Service’s tunison Laboratory of aquatic Science in Cortland, Ny. Fish biologists at the federal lab in the Finger Lakes were raising prey fish to feed native lake trout and atlantic salmon in
Lake Ontario.
(File Photo/aP/Mary Esch) Lake herring swim June 4, 2013, in a raceway at the U.S. geological Service’s tunison Laboratory of aquatic Science in Cortland, Ny. Fish biologists at the federal lab in the Finger Lakes were raising prey fish to feed native lake trout and atlantic salmon in Lake Ontario.

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