2 resultados para Fossil plant

em Deakin Research Online - Australia


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This paper explores the palaeoclimatic significance of a fossil plant and insect record from Yarra Creek, on King Island, between Tasmania and the Australian mainland. The record dates, based upon a thermoluminescence chronology and other evidence, to Marine Isotope Stage 5 (MIS 5); the exact timing is impossible to ascertain given the resolution of the thermoluminescence results and the presence of an unconformity in the dated section. The presence of a cool-temperate rainforest flora, outside its modern range, and other independent evidence, suggest the sequence may represent the last interglacial (MIS 5e) rather than a later MIS 5 substage. Using coexistence methods that compare modern climatic ranges of the taxa in the assemblage we reconstruct independent beetle and plant based annual and seasonal temperate and precipitation parameters. The results imply the assemblage was deposited under a wetter summer climate and suggest conditions of enhanced temperature seasonality. It is probable that enhanced temperature seasonality is a methodological artefact reflecting the rarity of extremely equable climates (like King Island) in modern climate space. This would indicate a limitation of most methods of palaeoclimatic reconstruction that rely on modern datasets – it is only possible to reconstruct past climates as being within the range of values in that currently exist in modern climate space.

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The ‘Seeds of South-Western Victoria’ database is presented here. The database is a digital collection of seed information that can be searched based on a range of seed morphological characters. Additionally it provides colour photographs of seeds and ecological detail of the plant species. It aims to facilitate plant macrofossil studies in Australia by aiding the identification of unknown sub-fossil seed material. It contains descriptions of 156 commonly occurring species of the Victorian Volcanic Plain, but design allows for continual addition of species from this region and elsewhere. The application of the database system to plant macrofossil identification, from both surface and fossil samples allows, for the first time, comparability of fossil assemblages and modern vegetation at a resolution of relevance to ecologists and conservationists. The taxonomic refinement of the pollen data provided by the macrofossils adds to a better understanding of recent vegetation dynamics and management, demonstrating the applicability of the technique to palaeoenvironmental analyses. A current application is to better understand the past environments and activities of Indigenous people on the Mt Eccles lava flow and assist in landscape restoration for potential World Heritage listing.