Persistent differences in recruitment variability among co-occurring North Atlantic groundfish species

Author:

Johannesen Edda1ORCID,Keith Dave2ORCID,Fogarty Michael J3,Shackell Nancy2,Frank Kenneth T2ORCID

Affiliation:

1. Institute of Marine Research , P.O. Box 1870, Nordnesgaten 50, Vestland 5005, N5817 Bergen , Norway

2. Ocean and Ecosystem Sciences Division DFO, Bedford Institute of Oceanography , P.O. Box 1006, Dartmouth, N.S. B2Y 4A2 , Canada

3. 124 West Falmouth Hwy , Falmouth, MA 02574 , USA

Abstract

Abstract Knowledge of recruitment and its variability in marine fish populations contributes to sustainable fisheries but a full understanding remains elusive. An earlier study showed that haddock (Melanogrammus aeglefinus) stocks exhibited consistently higher variability and lower reproductive rates compared to cod (Gadus morhua) stocks in the geographic regions where they co-occurred. Thus, cod may have a higher resilience to overexploitation, whereas haddock stocks may be more likely to be rescued by chance strong recruitments events. Since that initial study, the ecosystems and stocks have experienced large structural and functional changes, as well as changes in management practice and ocean warming. Here, we updated the previous earlier analysis with new data and found that despite large changes in the ecosystems explored, the patterns of recruitment variability have persisted. Recruitment variability remains higher in haddock than in cod, and the maximum annual reproduction rate at low spawning stock biomass (SSB) remains higher in cod than in haddock, although the latter difference is now less pronounced. Despite the economic and ecological importance of cod and haddock, and their long history of scientific scrutiny, the persistent difference in their reproductive biology remains unexplained.

Funder

Norwegian Research Council

Fisheries and Oceans

Ministry of Trade, Industry and Fisheries

Publisher

Oxford University Press (OUP)

Subject

Ecology,Aquatic Science,Ecology, Evolution, Behavior and Systematics,Oceanography

Reference61 articles.

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3. Warming temperatures and smaller body sizes: synchronous changes in growth of North Sea fishes;Baudron;Global Change Biology,2014

4. Life history and ecology of the gadoid resources of the Barents Sea;Bergstad;Fisheries Research,1987

5. Changing ocean, marine ecosystems, and dependent communities;Bindoff,2019

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