Life History of the Arctic Squid Gonatus fabricii (Cephalopoda: Oegopsida) Reconstructed by Analysis of Individual Ontogenetic Stable Isotopic Trajectories

Author:

Golikov Alexey V.ORCID,Ceia Filipe R.,Hoving Hendrik J. T.,Queirós José P.ORCID,Sabirov Rushan M.,Blicher Martin E.,Larionova Anna M.,Walkusz Wojciech,Zakharov Denis V.ORCID,Xavier José C.ORCID

Abstract

Cephalopods are important in Arctic marine ecosystems as predators and prey, but knowledge of their life cycles is poor. Consequently, they are under-represented in the Arctic ecosystems assessment models. One important parameter is the change in ecological role (habitat and diet) associated with individual ontogenies. Here, the life history of Gonatus fabricii, the most abundant Arctic cephalopod, is reconstructed by the analysis of individual ontogenetic trajectories of stable isotopes (δ13C and δ15N) in archival hard body structures. This approach allows the prediction of the exact mantle length (ML) and mass when the species changes its ecological role. Our results show that the life history of G. fabricii is divided into four stages, each having a distinct ecology: (1) epipelagic squid (ML < 20 mm), preying mostly on copepods; (2) epi- and occasionally mesopelagic squid (ML 20–50 mm), preying on larger crustaceans, fish, and cephalopods; (3) meso- and bathypelagic squid (ML > 50 mm), preying mainly on fish and cephalopods; and (4) non-feeding bathypelagic gelatinous females (ML > 200 mm). Existing Arctic ecosystem models do not reflect the different ecological roles of G. fabricii correctly, and the novel data provided here are a necessary baseline for Arctic ecosystem modelling and forecasting.

Funder

European Union’s Horizon 2020 research and innovation program

Greenland Institute of Natural Resources, North Atlantic Cooperation

Sustainable Fisheries Greenland

Ministry for Research in Greenland

Environmental Protection Agency (Dancea) of the Ministry of Environment and Food of Denmark

strategic project

Emmy Noether Junior Research Group

FCT

European Social Fund

FSE

Publisher

MDPI AG

Subject

General Veterinary,Animal Science and Zoology

Reference150 articles.

1. Global and Arctic climate sensitivity enhanced by changes in North Pacific heat flux;Praetorius;Nat. Commun.,2018

2. Pörtner, H.-O., Roberts, D.C., Poloczanska, E.S., Mintenbeck, K., Tignor, M., Alegría, A., Craig, M., Langsdorf, S., Löschke, S., and Möller, V. (2022). Climate Change 2022: Impacts, Adaptation and Vulnerability. Contribution of Working Group II to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change, Cambridge University Press.

3. Recent warming leads to a rapid borealization of fish communities in the Arctic;Fossheim;Nat. Clim. Change,2015

4. Arctic marine mammal population status, sea ice habitat loss, and conservation recommendations for the 21st century;Laidre;Conserv. Biol.,2015

5. Climate effects on temporal and spatial dynamics of phytoplankton and zooplankton in the Barents Sea;Dalpadado;Prog. Oceanogr.,2020

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