Rock Lobster Enhancement and Aquaculture Subprogram: investigation of tail fan damage in live-held adult rock lobsters
Spencer Gulf Research Initiative: development of an ecosystem model for fisheries and aquaculture
Spencer Gulf represents an area of significant economic significance to the fisheries and aquaculture sectors of South Australia. The region is also experiencing considerable industrial growth. This year alone in Spencer Gulf, there has been the release of BHP-Billiton’s supplementary Environmental Impact Statement for the massive Olympic Dam expansion including a coastal desalination plant, the State government has recently revived plans for a deep water port at Port Bonython (in Upper Spencer Gulf) which is predicted to be a major hub for the export of mineral resources, and IronClad mining has announced plans for a floating harbor south of Port Bonython. Given this level of proposed development it is imperative that the fisheries and aquaculture sectors have a better understanding of how future developments may impact their industries.
This project is needed to provide a whole of Spencer Gulf ecosystem model to the fisheries and aquaculture sectors with the capability to address “what if” scenarios. A suite of linked habitat, biophysical, trophodynamic and economic models will be developed that can be used to assess and optimize the future ecological and economic performance of the seafood industry in Spencer Gulf.
A Spencer Gulf Ecosystem model is needed for various scenario studies to provide fisheries and aquaculture managers with sound, evidenced-based information on the impacts of current and future developments in Spencer Gulf.
Aquafin CRC - SBT Aquaculture Subprogram: activity metabolism in live-held southern bluefin tuna (Thunnus maccoyii), Phase 2
Minor use permit for erythromycin in finfish
There are no antimicrobials permitted or registered for use in finfish in Australia effective against gram positive bacteria (e.g. Streptococcus and Lactococcus). In finfish aquaculture, erythromycin (ERYC) is the best antimicrobial against gram positive organisms. The aquaculture industry and the Subcommittee for Aquatic Animal Health identified access to this product for finfinfish as a priority. Bacterial diseases are increasingly managed by eradication, maintenance of animals of specified health status, vaccination, and good hygiene, but antimicrobial therapy remains vital for treating bacterial diseases in finfish aquaculture. Appropriate use of antimicrobials can alleviate illness and suffering, improve welfare, increase speed of recovery, reduce spread of infection. Use of ERYC is not intended for prophylactic treatment, but as a tool for veterinarians to manage disease outbreaks. Use in South Australia, for example, is sporadic (~1 to 2 times per 3-5 years for a sector). The Aquaculture industry is committed to Australia's antimicrobial strategy, and as required by APVMA this proposal includes an antimicrobial resistance risk assessment. Available data for ERYC can satisfy the APVMA module requirements for efficacy, chemistry and manufacture, toxicology, trade and occupational health and safety. These are available in published literature, a range of industry studies of animals treated off-label and laboratory studies. There is a lack of data to satisfy the requirements mainly in the environment modules and the antimicrobial resistance risk assessment.
ERYC was ranked low by the Expert Advisory Group on Antimicrobial Assessment (EAGAR) as an antimicrobial for which there are a reasonable number of alternative agents in different classes available to treat most infections. Although it is listed on the WHO list of essential medicines, it is registered for use in cattle, pigs and sheep (APVMA #84160) and poultry (APVMA #50742) in Australia and the WHO list can be modified locally to suit the availability and sophistication of the animal and human health systems in WHO member countries. The APVMA PAA assessed ERYC as suitable for assessment for use in finfish.