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Abstract

Probing the In Vivo Physiology and Behaviour of the Atlantic Bluefin Tuna †

by
David J. McKenzie
UMR Marbec, Université de Montpellier, CNRS, Ifremer, IRD, INRAE, 34000 Montpellier, France
Presented at the XI Iberian Congress of Ichthyology, Vila Real, Portugal, 23–27 June 2026.
Presenting author (Keynote Presentation).
Proceedings 2026, 146(1), 10; https://doi.org/10.3390/proceedings2026146010
Published: 16 June 2026
(This article belongs to the Proceedings of The XI Iberian Congress of Ichthyology)

Abstract

Introduction: The Atlantic bluefin tuna Thunnus thynnus (ABFT) is a large pelagic apex predator with adaptations for a life of ceaseless swimming during long-distance oceanic migrations. The environmental physiology and energetics of tunas have interested researchers for many decades, but they are notoriously challenging to study because they are so difficult to keep in captivity. Adult ABFT are, however, now fattened in cages at various sites in the Mediterranean, while juveniles are reared from hatching every year at the Unique Scientific and Technological Infrastructure for ABFT aquaculture (ICAR-IEO), near Cartagena in Spain. These facilities provide access to animals, but the fish remain very problematic to study because of their highly active but physiologically delicate nature and, for adults, their very large sizes. Objective: To study the in vivo physiology and behaviour of ABFT. Methodology: We used heart rate biologging and high residency acoustic tracking to follow cardiac and swimming activity over a year in n = 24 adult ABFT (mass range 25 to 200 kg) held in a cage off the coast of Malta (Malta Fish Farming). We then performed swim tunnel respirometry on young of the year juveniles (500g) at ICRA-IEO, but subsequently took a ‘hands-off’ approach, using video analyses and group respirometry on free-swimming animals. Results: The descriptive approach on the caged adults provided understanding of how seasonal water temperatures (15 to 28 °C) affect tuna physiology and behaviour. The swimming respirometry on juveniles revealed that their performance was constrained by confinement in the tunnel, compared to when they were swimming at their spontaneous preferred speed in their rearing tank. Video analyses provided insights into the effects of size (25 to 200 cm bodylength) on spontaneous swimming speeds and coupled with tank respirometry, revealed how progressive hypoxia affects the metabolic rate and schooling behaviour of juveniles. Conclusions: These opportunistic and disparate pieces of information are nonetheless valuable for such a fascinating but data-deficient species, and can be useful in mechanistic models for management of an extremely valuable fishery in a context of global change.

Funding

This research was funded by the France Filière Pêche Enjeux d’avenir project PROMPT; by the European Union’s Horizon 2020 research and innovation programme under grant agreement No 871108 (AQUAEXCEL3.0 and AQUASERV), and by the I+D+i project TUNAWAVE, funded by the Ministerio de Ciencia, Innovación y Universidades, the Agencia Estatal de Investigación, and FEDER (Project PID2022-140403OB-I00 funded by MCIN/AEI/10.13039/501100011033/FEDER, EU). This article reflects only the authors’ views and the European Union cannot be held responsible for any use that may be made of the information contained therein.

Institutional Review Board Statement

The animal experimentation procedures were approved by the appropriate ethics committees in Malta and Spain.

Informed Consent Statement

Not applicable.

Data Availability Statement

No new data were created or analyzed in this study. Data sharing is not applicable to this article.

Conflicts of Interest

The author declares no conflicts of interest.
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Share and Cite

MDPI and ACS Style

McKenzie, D.J. Probing the In Vivo Physiology and Behaviour of the Atlantic Bluefin Tuna. Proceedings 2026, 146, 10. https://doi.org/10.3390/proceedings2026146010

AMA Style

McKenzie DJ. Probing the In Vivo Physiology and Behaviour of the Atlantic Bluefin Tuna. Proceedings. 2026; 146(1):10. https://doi.org/10.3390/proceedings2026146010

Chicago/Turabian Style

McKenzie, David J. 2026. "Probing the In Vivo Physiology and Behaviour of the Atlantic Bluefin Tuna" Proceedings 146, no. 1: 10. https://doi.org/10.3390/proceedings2026146010

APA Style

McKenzie, D. J. (2026). Probing the In Vivo Physiology and Behaviour of the Atlantic Bluefin Tuna. Proceedings, 146(1), 10. https://doi.org/10.3390/proceedings2026146010

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