Age validation of yellowfin and bigeye tuna using post-peak bomb radiocarbon dating confirms long lifespans in the western and central Pacific Ocean

Author:

Andrews Allen H12ORCID,Eveson J Paige3,Welte Caroline45,Okamoto Kei6,Satoh Keisuke6,Krusic-Golub Kyne7,Lougheed Bryan C28,Macdonald Jed I1,Roupsard Francois1,Farley Jessica H3ORCID

Affiliation:

1. Oceanic Fisheries Programme, FAME, The Pacific Community (SPC) , 95 Promenade Roger Laroque, BP D5, Noumea 98848 , New Caledonia

2. Department of Earth Sciences, Uppsala University , Uppsala 752 36 , Sweden

3. CSIRO Environment , Hobart, Tasmania 7001 , Australia

4. Laboratory of Ion Beam Physics, ETH Zürich , Otto-Stern Weg 5 HPK, Zürich 8093 , Switzerland

5. Geological Institute, ETH Zürich , Sonneggstrasse 5, Zürich 8092 , Switzerland

6. National Research and Development Agency, Japan Fisheries Research and Education Agency, Fisheries Resources Institute , Yokohama 236-8648 , Japan

7. Fish Ageing Services Pty Ltd. , 28 Swanston Street, Queenscliff, Victoria 3225 , Australia

8. Leibniz Institute for Baltic Sea Research , Warnemünde, Rostock 18119 , Germany

Abstract

Abstract Age-reading protocols for tuna species using annual growth zones in thin-cut transverse otolith sections have produced greater age estimates than previous methods. Lifespan estimates for yellowfin (YFT) and bigeye (BET) tuna (Thunnus albacares and T. obesus) were validated up to 16–18 years in the western North Atlantic Ocean using bomb 14C dating and the current study extends the approach to YFT and BET of the western and central Pacific Ocean (WCPO). Archived otoliths from young-of-the-year (YOY) tuna caught in the WCPO were analysed for 14C to establish a reference chronology covering 30 years (1989–2019). This YOY 14C time series exhibited strong concordance with existing coral-otolith 14C references for the tropical-subtropical Pacific Ocean and was combined as a single chronology. Otolith cores from YFT aged 1–14 years and BET aged 1–13 years from presumed annual counts were analysed for 14C. These measurements aligned with the reference chronology for the calculated hatch years for both species. These findings provide strong evidence that growth zones in thin-sectioned otoliths are deposited annually for YFT and BET of the WCPO and that age interpretation is correct using the current age reading protocol with little to no bias.

Funder

WCPFC

Fisheries Agency of Japan

Publisher

Oxford University Press (OUP)

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