Temperature‐based targeting in a multispecies fishery under climate change

Temperature controls important physiological processes in fish and determines aspects of their niches. In an effort to inform selective fishing and spatiotemporal management in the U.S. Northeast Multispecies fishery, we used 16 years of data from the Northeast Fisheries Science Center Spring and Fa...

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Veröffentlicht in:Fisheries oceanography 2016-03, Vol.25 (2), p.105-118
Hauptverfasser: Dunn, Daniel C, Moxley, Jerry H, Halpin, Patrick N
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container_title Fisheries oceanography
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creator Dunn, Daniel C
Moxley, Jerry H
Halpin, Patrick N
description Temperature controls important physiological processes in fish and determines aspects of their niches. In an effort to inform selective fishing and spatiotemporal management in the U.S. Northeast Multispecies fishery, we used 16 years of data from the Northeast Fisheries Science Center Spring and Fall Scientific Trawl Surveys to determine if bottom temperature can be used to differentiate the distribution of Atlantic cod (Gadus morhua) from other species within the fishery management plan (FMP). We identified two separate regimes in spring temperatures and used empirical cumulative distribution functions to calculate biomass availability by temperature for each species. We applied a bagged approach to find optimum thermal threshold values that maximize the difference in cod biomass from each of the other species. For our study area, 38% to 54% of the species considered were well separated from cod by temperature in spring, whereas only 17% were separable in the fall. This study suggests that temperature targeting can be used seasonally to separate cod from many other species in the FMP including top catches and no‐retention species. The use of temperature targeting may allow fishermen to better meet multiple quotas while avoiding choke species. Our results also suggested increasing thermal overlap between cod and species inhabiting higher median temperatures (e.g., spiny dogfish, Squalus acanthias) under the current warming temperature regime. These results indicate that the ability to selectively fish in the US Northeast Multispecies fishery will become more difficult under a warming ocean.
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source Wiley Journals
subjects Atlantic cod
biomass
bottom temperature
climate change
cod (fish)
cumulative distribution
cumulative distribution function
dynamic ocean management
fisheries
fisheries management
fishermen
fishery management
Gadus morhua
Marine
niches
spring
Squalus acanthias
temperature
title Temperature‐based targeting in a multispecies fishery under climate change
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