190 results
Industry
Environment
PROJECT NUMBER • 1994-037
PROJECT STATUS:
COMPLETED

Assessment of inshore habitats around Tasmania for life history stages of commercial finfish species

In Tasmania, there is a paucity of information on the life-history, population parameters and habitat requirements of fish associated with inshore soft-sediment habitats, particularly seagrasses. Clearly, such information is needed before stock assessment models can be developed, recruitment...
ORGANISATION:
University of Tasmania (UTAS)
Environment
Environment
Environment
PROJECT NUMBER • 2007-045
PROJECT STATUS:
COMPLETED

Rebuilding Ecosystem Resilience: assessment of management options to minimise formation of ‘barrens’ habitat by the long-spined sea urchin (Centrostephanus rodgersii) in Tasmania

By overgrazing seaweeds and sessile invertebrates, essentially back to bare rock, the advent of the long‐spined sea urchin Centrostephanus rodgersii in eastern Tasmanian waters poses a significant threat to the integrity, productivity and biodiversity of shallow (<40 m) rocky reef systems and the...
ORGANISATION:
University of Tasmania (UTAS)
Environment
Environment
PROJECT NUMBER • 1999-164
PROJECT STATUS:
COMPLETED

Application of molecular genetics to the Australian abalone fisheries: forensic protocols for species identification and blacklip stock structure

Of the nineteen abalone (Haliotidae) species recognised in Australian waters (Geiger 1999), ten are endemic and two dominate the commercial, recreational and illegal harvests in southern States: the blacklip abalone Haliotis rubra Leach and the greenlip abalone H. laevigata Donovan. A third species,...
ORGANISATION:
University of Tasmania (UTAS)
Blank
PROJECT NUMBER • 2011-703
PROJECT STATUS:
COMPLETED

SCRC: PhD: Tracking methyl mercury contamination pathways in key commercially and recreationally fished species.

Estuarine systems that are exposed to industrial pollutants often retain a high loading of contaminants, including mercury (Hg), due to prevailing physical, chemical and biological conditions. Estuarine biota are principally exposed to Hg through dietary uptake, which can lead to higher order...
ORGANISATION:
University of Tasmania (UTAS)
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