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Morphology, diet, and stable carbon isotopes

On the diet of Theropithecus and some limits of uniformitarianism in paleoecology

Bibliographic Data

ID8311541
AuthorsAntoine Souron (0000-0001-7384-4974, PACEA, UMR 5199, Université de Bordeaux, Bâtiment B18, Allée Geoffroy Saint Hilaire, CS 50023 Pessac, 33615 France, corresponding author)
Year2018
Volume166
Issue1
Pages261-267
Publication date2018-05-01
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueAmerican Journal of Physical Anthropology (JOURNAL)
Journal identifiersISSN: 0002-9483 • E-ISSN: 1096-8644
PublisherWiley (PUBLISHER • GB)
DOI10.1002/ajpa.23414
PMID29369346
OpenAlexW2790619553
LanguageEN
Citations received6
References cited29

Geladas were long supposed to be the only living primates feeding almost entirely on graminoids and accordingly display dramatic dental and manual adaptive traits. A recent study of Theropithecus gelada , the first in a relatively undisturbed habitat, revealed a more diverse diet, also incorporating large quantities of forbs. The peculiar adaptive traits of T. gelada are also observed in extinct Theropithecus as early as 3.7 Ma. Stable carbon isotopic data of extinct Theropithecus from eastern Africa indicate that specimens older than 3 Ma consumed a significant proportion of C 3 plants (on average ca. 40% of total food intake) whereas specimens younger than 2 Ma consumed more C 4 plants (on average ca. 80%). Recent paleobotanical evidence suggests that C 3 herbaceous plants were still present in non‐negligible proportions in Plio‐Pleistocene lowland tropical ecosystems. Together, the shared morphological adaptive traits of extant and extinct Theropithecus and the varied diets of extant T. gelada suggest that the paleodiets of Theropithecus may have been dominated by herbaceous plants, comprising both C 3 forbs and graminoids and C 4 graminoids. The changes in stable carbon isotopes could correspond to a replacement of C 3 plants by C 4 plants within the herbaceous strata rather than a shift from C 3 woody vegetation to C 4 graminoids. This synthesis highlights the need for a more exhaustive knowledge of the ecology of extant species to achieve meaningful paleodietary and paleoenvironmental reconstructions. A strong selectivity for food resources that are rare in the landscapes (as in T . gelada) should also be considered when interpreting stable carbon isotopes of extinct African mammals (and notably hominids)

Biology · Forb · Grassland · Habitat · Herbaceous plant · Vegetation (pathology) · Ecology · Evolution and Paleontology Studies · Pleistocene-Era Hominins and Archaeology · Primate Behavior and Ecology

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Unique citing works6
Citations per year0,86
Citation span2019 - 2025 (7)
Citation velocityrecent
Highly citedNo
Citation typesNeutral: 6

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