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Pan-Arctic suitable habitat model for Greenland halibut

Permanent link
https://hdl.handle.net/10037/22117
DOI
https://doi.org/10.1093/icesjms/fsab007
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Date
2021-03-08
Type
Journal article
Tidsskriftartikkel
Peer reviewed

Author
Vihtakari, Mikko; Hordoir, Robinson; Treble, Margret A; Bryan, Meaghan D.; Elvarsson, Bjarki; Nogueira, Adriana; Hallfredsson, Elvar H.; Christiansen, Jørgen Schou; Albert, Ole Thomas
Abstract
Deep-sea marine fishes support important fisheries but estimates of their distributions are often incomplete as the data behind them may reflect fishing practices, access rights, or political boundaries, rather than actual geographic distributions. We use a simple suitable habitat model based on bottom depth, temperature, and salinity to estimate the potential distribution of Greenland halibut (Reinhardtius hippoglossoides). A large presence-only dataset is examined using multivariate kernel densities to define environmental envelopes, which we link to spatial distribution using a pan-Arctic oceanographic model. Occurrences generally fit the model well, although there were gaps in the predicted circum-Arctic distribution likely due to limited survey activity in many of the ice-covered seas around the Arctic Ocean. Bottom temperature and depth were major factors defining model fit to observations, but other factors, such as ecosystem interactions and larval drift could also influence distribution. Model predictions can be tested by increasing sampling effort in poorly explored regions and by studying the connectivity of putative populations. While abundances of Greenland halibut in the High Arctic are currently low, some areas are predicted to be suitable habitat for this species, suggesting that on-going sea-ice melt may lead to fisheries expansion into new areas.
Publisher
Oxford University Press
Citation
Vihtakari M, Hordoir R, Treble MA, Bryan, Elvarsson B, Nogueira A, Hallfredsson ehh, Christiansen js, Albert OT. Pan-Arctic suitable habitat model for Greenland halibut. ICES Journal of Marine Science. 2021
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© International Council for the Exploration of the Sea 2021.

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