Sediment accumulation rate predicts the temporal resolution of marine fossil assemblages
Abstract
Time averaging (TA), the mixing of noncontemporaneous organisms in fossil assemblages, governs the resolution of paleontological data and determines which biological and environmental processes are recorded in the geological record. To assess variation in TA and its dependence on external drivers, we used amino acid and radiocarbon methods to individually date 7,593 specimens across 384 samples from late Quaternary marine assemblages of calcifying organisms. Bivalve mollusks dominated the data, but 65 samples represented other taxa. Estimates of TA, measured by dispersion of specimen ages within samples, ranged from decades to millennia and scaled proportionally ( r 2 = 0.77) with sediment accumulation time (SAT), an inverse of sediment accumulation rate (SAR) that accounts for the stratigraphic span of samples. In agreement with numerical modeling, the observed TA estimates were an order-of-magnitude higher than SAT and modulated by SAT-dependent effects of vertical mixing and skeletal disintegration. When SAT is short, effective disintegration rates are too slow to suppress the amplifying role of mixing but increase in importance when SAT is long. The strong dependency of TA on SAT points to the overriding role of SAR in controlling the temporal resolution of fossil assemblages, notwithstanding other interacting drivers known to influence TA. These results demonstrate a long-suspected paleontological rule: The temporal resolution of fossil assemblages scales predictably with SAR. This straightforward relationship provides a quantitative guideline for determining the temporal adequacy of sedimentary records as archives of Earth system processes.
Article Details
Journal Info
Proceedings of the National Academy of Sciences
National Academy of Sciences
Authors (21)
Michał Kowalewski
Florida Museum of Natural History, Invertebrate Paleontology
Adam Tomašových
Earth Science Institute, Slovak Academy of Sciences
Rafał Nawrot
Department of Palaeontology, University of Vienna
Daniele Scarponi
Department of Biological, Geological and Environmental Sciences, University of Bologna
Martin Zuschin
Department of Palaeontology, University of Vienna
Paolo G. Albano
Department of Marine Animal Conservation and Public Engagement, Stazione Zoologica Anton Dohrn
Quan Hua
Australian Nuclear Science and Technology Organisation
Darrell S. Kaufman
School of Earth and Sustainability, Northern Arizona University
Susan M. Kidwell
Department of the Geophysical Sciences, University of Chicago
Matias Ritter
Centro de Estudos Costeiros, Limnológicos e Marinhos, Campus Litoral Norte, Universidade Federal do Rio Grande do Sul
Marcello G. Simões
Instituto de Biociências, Universidade Estadual Paulista
Luis Torres
Florida Museum of Natural History, University of Florida
Bettina Bachmann
Department of Palaeontology, University of Vienna
Michaela Berensmeier
Department of Palaeontology, University of Vienna
Troy A. Dexter
The Gerace Research Centre, University of Bahamas
Alexandra Haselmair
Department of Palaeontology, University of Vienna
Ivo Gallmetzer
Third Zoological Department, Natural History Museum Vienna
Claudio Pellegrini
Lukas Schweigl
Department of Biological, Geological and Environmental Sciences, University of Bologna
Jan Steger
Department of Palaeontology, University of Vienna
Matthew A. Kosnik
School of Natural Sciences, Macquarie University