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Article Dans Une Revue Proceedings of the Royal Society B: Biological Sciences Année : 2017

Primate energy input and the evolutionary transition to energy-dense diets in humans

Bruno Simmen
Shelly Masi
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Georgius J A Koppert
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Résumé

Humans and other large-brained hominins have been proposed to increase energy turnover during their evolutionary history. Such increased energy turnover is plausible, given the evolution of energy-rich diets, but requires empirical confirmation. Framing human energetics in a phylogenetic context, our meta-analysis of 17 wild non-human primate species shows that daily metabolizable energy input follows an allometric relationship with body mass where the allometric exponent for mass is 0.75 + 0.04, close to that reported for daily energy expenditure measured with doubly labelled water in primates. Human populations at subsistence level (n ¼ 6) largely fall within the variation of primate species in the scaling of energy intake and therefore do not consume significantly more energy than predicted for a non-human primate of equivalent mass. By contrast, humans ingest a conspicuously lower mass of food (264 + 6%) compared with primates and maintain their energy intake relatively more constantly across the year. We conclude that our hominin hunter-gatherer ancestors did not increase their energy turnover beyond the allometric relationship characterizing all primate species. The reduction in digestive costs due to consumption of a lower mass of high-quality food, as well as stabilization of energy supply, may have been important evolutionary steps enabling encephalization in the absence of significantly raised energy intakes.
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Dates et versions

hal-02170291 , version 1 (20-08-2019)

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Citer

Bruno Simmen, Patrick Pasquet, Shelly Masi, Georgius J A Koppert, Claude Marcel Hladik. Primate energy input and the evolutionary transition to energy-dense diets in humans. Proceedings of the Royal Society B: Biological Sciences, 2017, 284 (1856), pp.20170577. ⟨10.1098/rspb.2017.0577⟩. ⟨hal-02170291⟩
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