The Cretaceous-Tertiary biotic transition
- 1 March 1997
- journal article
- Published by Geological Society of London in Journal of the Geological Society
- Vol. 154 (2) , 265-292
- https://doi.org/10.1144/gsjgs.154.2.0265
Abstract
Mass extinctions are recognized through the study of fossil groups across event horizons, and from analyses of long-term trends in taxonomic richness and diversity. Both approaches have inherent flaws, and data that once seemed reliable can be readily superseded by the discovery of new fossils and/or the application of new analytical techniques. Herein the current state of the Cretaceous-Tertiary (K-T) biostratigraphical record is reviewed for most major fossil clades, including: calcareous nannoplankton, dinoflagellates, diatoms, radiolaria, foraminifera, ostracodes, scleractinian corals, bryozoans, brachio-pods, molluscs, echinoderms, fish, amphibians, reptiles and terrestrial plants (macrofossils and palynomorphs). These reviews take account of possible biasing factors in the fossil record in order to extract the most comprehensive picture of the K-T biotic crisis available. Results suggest that many faunal and floral groups (ostracodes, bryozoa, ammonite cephalopods, bivalves, archosaurs) were in decline throughout the latest Maastrichtian while others (diatoms, radiolaria, benthic foraminifera, brachiopods, gastropods, fish, amphibians, lepidosaurs, terrestrial plants) passed through the K-T event horizon with only minor taxonomic richness and/or diversity changes. A few microfossil groups (calcareous nannoplankton, dinoflagellates, planktonic foraminifera) did experience a turnover of varying magnitudes in the latest Maastrichtian-earliest Danian. However, many of these turnovers, along with changes in ecological dominance patterns among benthic foraminifera, began in the latest Maastrichtian. Improved taxonomic estimates of the overall pattern and magnitude of the K-T extinction event must await the development of more reliable systematic and phylogenetic data for all Upper Cretaceous clades.This publication has 111 references indexed in Scilit:
- Dinoflagellate cysts, sea level changes and planktonic foraminifers across the Cretaceous-Tertiary boundary at El Haria, northwest TunisiaPublished by Elsevier ,2003
- The Cretaceous-Tertiary boundary transition in the Antarctic Ocean and its global implicationsPublished by Elsevier ,2003
- Biogeography of cretaceous/tertiary (k/t) planktic foraminiferaHistorical Biology, 1995
- Latest Cretaceous to Late Paleocene radiolarian biostratigraphy: A new zonation from the New Zealand regionMarine Micropaleontology, 1993
- Cretaceous/Tertiary boundary extinction pattern and faunal turnover at Agost and Caravaca, S.E. SpainMarine Micropaleontology, 1991
- Stable isotope evidence for gradual environmental changes and species survivorship across the Cretaceous/Tertiary BoundaryPaleoceanography and Paleoclimatology, 1990
- Extended Cretaceous/Tertiary boundary extinctions and delayed population change in planktonic foraminifera from Brazos River, TexasPaleoceanography and Paleoclimatology, 1989
- Extinction, survivorship and evolution of planktic foraminifera across the Cretaceous/Tertiary boundary at El Kef, TunisiaMarine Micropaleontology, 1988
- Is the periodicity of extinctions a taxonomic artefact?Nature, 1987
- Depositional environment and development of Danian bryozoan biomicrite mounds (Karlby Klint, Denmark)Sedimentology, 1976