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The Great American Biotic Interchange revisited: a new perspective from the stable isotope record of Argentine Pampas fossil mammals

2020/01/31 by Laura Domingo, Rodrigo L. Tomassini, Claudia I. Montalvo +2 · 2 citations
Earth and Planetary Sciences · Environmental Science · #Evolution and Paleontology Studies #Isotope Analysis in Ecology #Wildlife Ecology and Conservation #Ecology #Trophic level #Isotope analysis #Taxon #Stable isotope ratio #Vegetation (pathology) #Habitat #Competition (biology) #Fauna #Niche #Predation #Ecological niche #Range (aeronautics) #Geography #Biology

paper · pdf · doi:10.1038/s41598-020-58575-6

openalex publication_date 2020/01/31 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/31

Abstract

Abstract This study aims at assessing resource and habitat use, niche occupation and trophic interactions from a stable isotope perspective on fossil mammals from the Argentine Pampas during the Great American Biotic Interchange (GABI). We present stable isotope data of more than 400 samples belonging to 10 mammalian orders and spanning a temporal range from ~9.5 Ma to ~12 ky. Rodents, notoungulates and pilosians record an increase in the consumption of C 4 plants, whereas litopterns and cingulates show δ 13 C values that remain mostly within a C 3 -dominated diet. Our stable isotope data indicates that the expansion of C 4 vegetation opened up new niche opportunities, probably alleviating resource competition among endemic taxa. Gomphothere, equid and camelid δ 13 C records show a broad variability pointing to consumption of C 3 and mixed C 3 -C 4 vegetation. This flexible dietary behavior may have facilitated the successful settlement of immigrant groups in South America. In the case of carnivorous taxa, Late Miocene pre-GABI endemic sparassodonts consumed prey from C 3 environments, whereas immigrant carnivorans preferred prey from mixed C 3 -C 4 areas. Our research contributes to the study of the GABI from a different perspective as stable isotope records permit to characterize, from a (semi)quantitative standpoint, ecological traits within extinct fauna.

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