Late-Holocene environmental change on the Nullarbor Plain, southwest Australia, based on speleothem pollen records

Author:

Matley Kia A1ORCID,Sniderman JM Kale2ORCID,Drinnan Andrew N1,Hellstrom John C2

Affiliation:

1. School of BioSciences, The University of Melbourne, Australia

2. School of Earth Sciences, The University of Melbourne, Australia

Abstract

Fossil pollen from two stalagmites is examined to reconstruct a c. 2400-year history of vegetation change on the Nullarbor Plain. Environmental changes are reflected by variation in chenopod species abundance, and by a peak in woody taxa between 1000 and 800 years ago which is interpreted as evidence of increased moisture conditions associated with a positive phase of the Southern Annular Mode. While no strong palynological signal is observed at the time of European colonization of Australia, a significant change occurs in the past 40 years, which is interpreted as a vegetation response to a recorded fire event. As speleothems (secondary cave carbonates including stalagmites, stalactites and flowstones) rarely contain enough fossil pollen for analysis, the taphonomic biases of speleothem archives remain poorly understood. This study, as well as being a high-resolution record of environmental change, presents an opportunity to examine these taphonomic filters. The record is shown to be sensitive to episodic deposition of presumably insect-borne pollen, but overall appears to provide a faithful representation of local and regional vegetation change. There is a need for greater research into taphonomic processes, if speleothem palynology is to be developed as a viable alternative to lacustrine sediments in the investigation of past environmental change.

Publisher

SAGE Publications

Subject

Paleontology,Earth-Surface Processes,Ecology,Archeology,Global and Planetary Change

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1. Climate-driven formation of mass movements across the Tibetan Plateau;CATENA;2024-03

2. The distribution of fossil pollen and charcoal in stalagmites;Quaternary Research;2023-05-16

3. Cave Minerals and Speleothems;Cave and Karst Systems of the World;2023

4. Nullarbor;Cave and Karst Systems of the World;2023

5. Palaeobotanical records from cave environments;Review of Palaeobotany and Palynology;2022-11

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