Mesothermic fishes face high fuel demands and overheating risk in warming oceans
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Journal ISSN
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Publisher
American Association for the Advancement of Science
Abstract
Body size and temperature set metabolic rates and the pace of life, yet our understanding of the energetics of large fishes is uncertain, especially of warm-bodied mesotherms, which can heavily influence marine food webs. We developed an approach to estimate metabolic heat production in fishes, revealing how routine energy expenditure scales with size and temperature from 1-milligram larvae up to 3-tonne megaplanktivorous sharks. We found that mesotherms use approximately four times more energy than ectotherms use and identified a scaling mismatch in which rates of heat production increase faster than heat loss as body size increases, with larger fish becoming increasingly warm bodied. This scaling imbalance creates an overheating predicament for large mesotherms, helping to explain their cooler biogeographies. Contemporary mesotherms face high fuel demands and overheating risks, which is a concern given their disproportionate demise during prior climate shifts.
Description
DATA AND MATERIALS AVAILABILITY : All data are available in the manuscript or supplementary materials, and our code is available at https://github.com/AndrewLJackson/predictFishRMR.
SUPPLEMENTARY MATERIAL 1 : Materials and Methods; Figs. S1 to S7; Tables S1 and S2; References (57–64).
SUPPLEMENTARY MATERIAL 2 : MDAR Reproducibility Checklist.
SUPPLEMENTARY MATERIAL 3 : Data S1.
SUPPLEMENTARY MATERIAL 4 : Code S1.
Keywords
Fish, Body size, Temperature, Metabolic heat production, Climate change
Sustainable Development Goals
SDG-14: Life below water
SDG-13: Climate action
SDG-13: Climate action
Citation
Payne, N.L., Snelling, E.P., Peralta-Maraver, I., et al. 2026, 'Mesothermic fishes face high fuel demands and overheating risk in warming oceans', Science, vol. 392, no. 6795, pp. 301-302, doi : 10.1126/science.adt2981.
