Upper Triassic nannofossils from Wombat Plateau, Northwest Australia

A taxonomic and biostratigraphic investigation has been carried out on Upper Triassic (Carnian-Rhaetian) nannofossils from Sites 759, 760, 761 and 764 drilled on the Wombat Plateau during ODP Leg 122. The recovery of continuous sequences containing well preserved nannofossils has enabled us to refine the previous taxonomy and biostratigraphy of this interval. Fossil assemblages are of two major types: (1) previously described calcareous taxa were recovered at Sites 761 and 764; and (2) sideritic forms, which may represent diagenetic replacement of calcareous nannofossils, were observed in material from Sites 759 and 760. The sideritic forms proved difficult to study taxonomically due to inadequate optical properties. Calcareous nannofossil assemblages in the Upper Triassic are dominated by Prinsiosphaera triassica. We show that the multitude of identities of this species in the light microscope are the result of selective etching on a layered structure. We propose an evolutionary lineage for the earliest known coccoliths, with Crucirhabdus primulus as the ancestor. This species gave rise to C. minutus and Archaeozygodiscus koessenensis. The Upper Triassic can be subdivided based on the sequential first occurrences of C. primulus and Eoconusphaera zlambachensis in the upper Norian. The late Norian and Rhaetian were times of slow evolution of calcareous nannofossils. However, we noted three morphometric changes in this time-interval which possess biostratigraphic utility: (1) P. triassica increases in diameter from an average of 6 µm to over 9 µm; (2) E. zlambachensis evolves from a stubby to an elongated shape; and (3) C. primulus increases in size. Upper Triassic assemblages from the Wombat Plateau are similar in composition and diversity to those which have been described in detail from the Alps. In both areas, nannofossiliferous sediments interfinger with massive limestones deposited in reef and peri-platform environments. Stable isotopic analyses of Wombat Plateau nannofossil assemblages indicate that they thrived in open ocean conditions. Biostratigraphy allows sequence chronostratigraphic interpretation of ODP Site 761 and supports the chronostratigraphic cycle charts of Haq et al. (1987).

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Bralower, Timothy J, Bown, Paul R, Siesser, William G (1991). Dataset: Upper Triassic nannofossils from Wombat Plateau, Northwest Australia. https://doi.org/10.1594/PANGAEA.685591

DOI retrieved: 1991

Additional Info

Field Value
Imported on November 30, 2024
Last update November 30, 2024
License CC-BY-3.0
Source https://doi.org/10.1594/PANGAEA.685591
Author Bralower, Timothy J
Given Name Timothy J
Family Name Bralower
More Authors
Bown, Paul R
Siesser, William G
Source Creation 1991
Publication Year 1991
Resource Type application/zip - filename: Bralower_nannofossil
Subject Areas
Name: Paleontology

Related Identifiers
Title: Significance of Upper Triassic nannofossils from the Southern Hemisphere (ODP Leg 122, Wombat Plateau, N.W. Australia)
Identifier: https://doi.org/10.1016/0377-8398(91)90025-2
Type: DOI
Relation: IsSupplementTo
Year: 1991
Source: Marine Micropaleontology
Authors: Bralower Timothy J , Bown Paul R , Siesser William G .

Title: Upper Triassic calcareous nannoplankton biostratigraphy, Wombat Plateau, Northwest Australia
Identifier: https://doi.org/10.2973/odp.proc.sr.122.501.1992
Type: DOI
Relation: References
Year: 1992
Source: In: von Rad, U; Haq, BU; et al. (eds.), Proceedings of the Ocean Drilling Program, Scientific Results, College Station, TX (Ocean Drilling Program)
Authors: Bralower Timothy J , Bown Paul R , Siesser William G .