Paleosol (organic matter and pedogenic carbonates) and paleontological d13C records applied to the paleoecology of late Pleistocene–Holocene in Mexico


Por: Cruz-Y-Cruz, T., Perez-Crespo, V. A., Pustovoytov, K., Sedov, S., Morales-Puente, P., Tovar-Liceaga, R. E., Arroyo-Cabrales, J., Terrazas-Mata, A., Sanchez-Miranda, G.

Publicada: 5 oct 2016
Categoría: Earth-Surface Processes

Resumen:
Stable isotopes of carbon (d13C) in terrestrial geological materials (paleosol humus and carbonates) as well as fossil bones (collagen and tooth enamel) are established as highly specific records on paleoenvironmental characteristics. It was assumed that comparing the results of different types of materials on regional or local scales provides more accurate and reliable reconstructions and even opens new aspects of interpretation. This was tested by the comparison of the data obtained from the late Pleistocene paleosols and/or remains of Pleistocene megafauna in various locations in Northwestern Mexico: Sonora (paleosols formed in MIS3, MIS2 and MIS1); Central-Northern Mexico: San Luis Potosi (teeth, corresponding to MIS2 and MIS1); and Central-Southern Mexico: Puebla (paleosols corresponding to MIS3 and MIS2, and teeth associated with these paleosols), and State of Mexico (teeth, corresponding to MIS2). The results of isotopic studies are complemented with other paleoenvironmental proxies. The d13C values of paleosols of Sonora is -19.8 to -16.95‰ in organic matter, and shows little difference between paleosols and Holocene soils; d13C values of pedogenic carbonates are -6.4 to -4.52‰. In San Luis Potosí, the d13C values of paleosol are -12.16‰ in organic matter. In Puebla, they vary from -24.6‰ in paleosols to -15.16‰ in the modern surface soil, pointing to contrasting vegetation change. The d13C values in fossils range from -10.7 to 1.2‰ in SLP; of -2.73 and -2.93‰ in Puebla; and -6.5 to -1.3‰ in State of Mexico. The d13C values of paleosols and analysis of megafauna in Northwest and Central-Northern Mexico matched each other, indicating mixed C3–C4 vegetation; while for Central-Southern Mexico, paleosols indicated predominance of C3 plants and megafauna indicated mixed C3–C4 composition. In general, the results indicate that in northern Mexico environmental conditions were slightly wetter than at present, while for the central area there was a large change in the environmental conditions of high humidity in MIS3 and MIS2, with a trend to drier climates in MIS1. © 2016 Elsevier Ltd and INQUA

Filiaciones:
Univ Nacl Autonoma Mexico, Posgrado Ciencias Tierra, Ciudad Univ, Mexico City 04510, DF, Mexico
Univ Nacl Autonoma Mexico, Inst Geol, Ciudad Univ, Mexico City 04510, DF, Mexico
Univ Hohenheim, Inst Soil Sci & Land Evaluat, Stuttgart, Germany
INAH, Lab Arqueozool Subdirecc Lab & Apoyo, Mexico City, DF, Mexico
Univ Nacl Autonoma Mexico, Inst Invest Antropol, Ciudad Univ, Mexico City 04510, DF, Mexico
UNAM, Inst Geol, Estn Reg Noroeste, Hermosillo, Sonora, Mexico
ISSN: 10406182
Editorial
Elsevier Ltd, THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, ENGLAND, Reino Unido
Tipo de documento: Article
Volumen: 418 Número:
Páginas: 147-164
WOS Id: 000389098400015

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