Impacts of artificial rearing on cisco Coregonus artedi morphology, including pugheadedness

Author:

Honsey Andrew E.1ORCID,Anweiler Katie V.2,Bunnell David B.2,Brant Cory O.2,Hoffman Georgia3,O'Malley Brian P.3ORCID,Keeler Kevin M.2,Olds Chris4,Kraus Jeremy5,Kao Yu-Chun6,Stott Wendylee7

Affiliation:

1. US Geological Survey Great Lakes Science Center, Hammond Bay Biological Station, 11188 Ray Road, Millersburg, MI 49759, USA

2. US Geological Survey Great Lakes Science Center, 1451 Green Road, Ann Arbor, MI 48105, USA

3. US Geological Survey Great Lakes Science Center, Lake Ontario Biological Station, 17 Lake Street, Oswego, NY 13126, USA

4. USDA Forest Service, Mark Twain National Forest, Salem Ranger District, 1301 South Main Street, Salem, MO 65560, USA

5. US Geological Survey Great Lakes Science Center, Tunison Laboratory of Aquatic Science, 3075 Gracie Road, Cortland, NY 13045, USA

6. US Fish and Wildlife Service, La Crosse Fish and Wildlife Conservation Office, 555 Lester Avenue, Onalaska, WI 54650, USA

7. Fisheries and Oceans Canada, Freshwater Institute, 501 University Crescent, Winnipeg, MB R3T 2N6, Canada

Abstract

Cisco ( Coregonus artedi Lesueur, 1818) in the Laurentian Great Lakes declined throughout the 19th and 20th centuries. Managers are attempting to restore Great Lakes cisco and other coregonines using multiple approaches, including stocking. A potential obstacle to these efforts is that artificially reared coregonines can display deformities and morphological differences compared to wild fish, but the impacts of artificial rearing on cisco morphology are not well understood. We compared morphologies of wild cisco to their artificially reared offspring, including one family that was exposed to three rearing temperature treatments. We found that artificially reared cisco had smaller eyes, shallower bodies, fewer gill rakers, and longer paired fins than their wild parents. We also found that artificially reared cisco were pugheaded, and this result held for another cisco population and rearing facility. Across the temperature treatments we tested, rearing temperatures did not impact the degree of pugheadedness or other morphological differences. Our results have important implications for coregonine restoration efforts. Future work should evaluate whether morphological differences that arise through artificial rearing affect cisco fitness in the wild.

Funder

Great Lakes Fishery Commission Coregonine Science Program

Publisher

Canadian Science Publishing

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