70,572 results

Review of fishery resource access and allocation arrangements across Australian jurisdictions

Project number: 2017-122
Project Status:
Completed
Budget expenditure: $106,640.00
Principal Investigator: Ian Knuckey
Organisation: Fishwell Consulting Pty Ltd
Project start/end date: 24 Sep 2017 - 15 Apr 2018
Contact:
FRDC

Need

In 2010, the Australian Fisheries Managers Forum (AFMF) listed fisheries access and allocation as one of the top priority policy issues to be addressed. Subsequently, FRDC formed a working group to examine possible approaches to access and allocation issues to assist fisheries managers as they undertook their associated policy development around allocation matters. They produced a report on the principles and guidelines for fisheries resource access and allocation, highlighting impediments to optimising fisheries resource access and allocation in Australia and the RD&E issues requiring investment.
Seven years on, there has been a lot of developments in this area in the various jurisdictions. To assist guide FRDC's future RD&E investment on these issues, the Board requested a review of the current state of fishery resouce access and allocation across the various jurisdictions.

Objectives

1. Define the elements (i.e. units to which resource access is allocated) of access and allocation
2. Review available information and provide examples of allocation and access in Australian fisheries jurisdictions and other industries
3. Describe the tools available for access and allocation and how they are implemented in each jurisdiction
4. Identify jurisdictional gaps and differences and recommend potential tools / options to fill those gaps

Final report

ISBN: 978-0-6480172-2-6
Authors: Knuckey I Sen S and McShane P.
Final Report • 2019-05-30 • 1.11 MB
2017-122-DLD.pdf

Summary

In 2010, the Australian Fisheries Managers Forum listed access and allocation as one of the top priority policy issues to be addressed in Australian fisheries. Subsequently, the Fisheries Research and Development Corporation (FRDC) formed a working group to examine possible approaches to access and allocation issues to assist fisheries managers as they undertook their associated policy development around allocation matters. From this, a report on the principles and guidelines for fisheries resource access and allocation was produced (Neville 2012 - FRDC project 2011-215).
Final Report • 2019-05-30 • 1.11 MB
2017-122-DLD.pdf

Summary

In 2010, the Australian Fisheries Managers Forum listed access and allocation as one of the top priority policy issues to be addressed in Australian fisheries. Subsequently, the Fisheries Research and Development Corporation (FRDC) formed a working group to examine possible approaches to access and allocation issues to assist fisheries managers as they undertook their associated policy development around allocation matters. From this, a report on the principles and guidelines for fisheries resource access and allocation was produced (Neville 2012 - FRDC project 2011-215).
Final Report • 2019-05-30 • 1.11 MB
2017-122-DLD.pdf

Summary

In 2010, the Australian Fisheries Managers Forum listed access and allocation as one of the top priority policy issues to be addressed in Australian fisheries. Subsequently, the Fisheries Research and Development Corporation (FRDC) formed a working group to examine possible approaches to access and allocation issues to assist fisheries managers as they undertook their associated policy development around allocation matters. From this, a report on the principles and guidelines for fisheries resource access and allocation was produced (Neville 2012 - FRDC project 2011-215).

Developing novel remote camera approaches to assess and monitor the population status of Australian sea lions

Project number: 2017-119
Project Status:
Completed
Budget expenditure: $184,631.00
Principal Investigator: Stephen M. Taylor
Organisation: Department of Primary Industries and Regional Development (DPIRD) WA
Project start/end date: 31 Dec 2017 - 30 Dec 2019
Contact:
FRDC

Need

The Australian sea lion (Neophoca cinerea) is the only endemic species of Australian pinniped and is listed as Vulnerable under the EPBC Act due to historical reduction in numbers, declining population trends, limited biological productivity and continued bycatch in various fisheries. Measures to mitigate sea lion mortality in the Commonwealth's Southern and Eastern Scalefish and Shark Fishery include extensive gillnet fishing closures that have led to significant displacement of fishing effort. Despite the measures to protect South Australian sea lion colonies, pup production has been estimated to have declined at most South Australian colonies and overall by 2.9% per year or 4.4% per breeding cycle between 2004-2008 and 2014-2015 (Goldsworthy et al., 2015).

Gillnet exclusion areas have also been proposed in the Western Australian Demersal Gillnet and Demersal Longline Fisheries, however these have not yet been implemented, in part due to uncertainties in the current status of most Western Australian sea lion colonies and risk of unintended consequences from displaced fishing effort. Despite the high level of conservation concern for this species and the severity of fishery management measures aimed at reducing their bycatch mortality, abundance has not been estimated for most WA colonies since the early-1990s (Gales 1993). Contemporary assessments of colony status are therefore required to identify the WA colonies that are most at risk from depletion (either through fisheries bycatch or other natural or anthropogenic processes) and guide effective conservation decisions.

Historically, monitoring has involved a 'boots-on-the-ground' approach to count the numbers of pups being born. However, this approach is expensive, logistically difficult, hazardous and entirely dependent on accurate estimation of the timing of colony-specific pupping seasons. It is therefore proposed to evaluate the feasibility and cost-effectiveness of remote camera methods to collect alternative sea lion abundance estimates.

Objectives

1. Evaluate the feasibility of using remote cameras as a method for monitoring the status of Australian sea lion colonies
2. Collect sea lion abundance estimates from study colonies over an 18 month period (full breeding cycle) to update understanding of their conservation status
3. Provide continuous time-series of vision and ancillary in-situ data for other ecological or behavioural research into dynamics of WA sea lion colonies

Final report

ISBN: 978-1-921845-32-1
Authors: Mat Hourston Daniela Waltrick Stuart Blight Ainslie Denham Alex Hesp Stephen Taylor
Final Report • 2022-12-01 • 4.54 MB
2017-119-DLD.pdf

Summary

This project trialled the use of remote cameras to monitor the relative abundance of Australian sea lions (ASLs, Neophoca cinerea) at three Western Australian (WA) breeding colonies. The research was undertaken by the Department of Primary Industries and Regional Development (DPIRD) to assess whether the analysis of camera footage could be used to estimate ASL relative abundance, providing an alternative to the traditional “boots on the ground” approach (hereon in “BoG”) of visiting colonies to count animals. This report outlines the strengths and limitations of this novel approach rather than providing an update on the population status of ASLs.
Final Report • 2022-12-01 • 4.54 MB
2017-119-DLD.pdf

Summary

This project trialled the use of remote cameras to monitor the relative abundance of Australian sea lions (ASLs, Neophoca cinerea) at three Western Australian (WA) breeding colonies. The research was undertaken by the Department of Primary Industries and Regional Development (DPIRD) to assess whether the analysis of camera footage could be used to estimate ASL relative abundance, providing an alternative to the traditional “boots on the ground” approach (hereon in “BoG”) of visiting colonies to count animals. This report outlines the strengths and limitations of this novel approach rather than providing an update on the population status of ASLs.
Final Report • 2022-12-01 • 4.54 MB
2017-119-DLD.pdf

Summary

This project trialled the use of remote cameras to monitor the relative abundance of Australian sea lions (ASLs, Neophoca cinerea) at three Western Australian (WA) breeding colonies. The research was undertaken by the Department of Primary Industries and Regional Development (DPIRD) to assess whether the analysis of camera footage could be used to estimate ASL relative abundance, providing an alternative to the traditional “boots on the ground” approach (hereon in “BoG”) of visiting colonies to count animals. This report outlines the strengths and limitations of this novel approach rather than providing an update on the population status of ASLs.
Industry
PROJECT NUMBER • 2017-117
PROJECT STATUS:
COMPLETED

Identification of differentially expressed innate immune genes in the New Zealand paua (Haliotis iris) and the Australian hybrid abalone (H. laevigata X H. rubra) upon immersion challenge with the abalone herpesvirus-1 (HaHV)

This project was carried out by scientists from AAHL CSIRO (Dr Serge Corbeil) and from LaTrobe University (Drs Karla Helbig and Subir Sarker). After discovering the existence of an abalone species (Päua - Haliotis iris) resistant to AVG our research team based in Geelong and Melbourne...
ORGANISATION:
CSIRO Australian Animal Health Laboratory

Fisheries managers workshop

Project number: 2017-116
Project Status:
Completed
Budget expenditure: $16,000.00
Principal Investigator: Claire Andersen
Organisation: Department of Primary Industries (QLD)
Project start/end date: 17 Sep 2017 - 28 Feb 2018
Contact:
FRDC

Need

Given increasing complexity in fisheries management and additional scrutiny on managers, there is a need for fisheries managers from the different jurisdictions to meet as a group to exchange ideas and initiatives and build networks. The Australian Fisheries Management Forum (AFMF), comprised of the respective heads of Commonwealth and State/Territory management agencies, supports the need for such a forum.

Similar cross-fertilisation forums exist between researchers through the Australian Society for Fish Biology (ASFB) and the National Compliance Committee for compliance officers.

It has been a considerable period since fisheries managers workshops were last held. Previous workshops occurred in the 1980s and early 1990s. In March 2014, a two-day national fisheries management workshop was held in Adelaide at the South Australian Aquatic Sciences Centre. This workshop was overseen by the AFMF’s Fisheries Management Sub-Committee (FMSC), with funding support from the Fisheries Research and Development Corporation (FRDC). Recommendations arising from this workshop included convening a subsequent fisheries managers workshop in 12-24 months and the formation of an Australian Professional Fisheries Management Society.

As an interim arrangement pending the potential formation of a professional fisheries managers society as a chapter of ASFB, the FMSC has agreed to hold another fisheries managers workshop, which Queensland will host in October 2017.

Future workshops will be held to coincide with ASFB annually (starting in 2018).

Objectives

1. Hold workshop to solidify the fisheries management working group as part of AFMF

An assessment of the non-market value of landed fish from the Southern Bluefin Tuna (SBT) recreational fishery

Project number: 2017-115
Project Status:
Completed
Budget expenditure: $68,536.36
Principal Investigator: Kasia Mazur
Organisation: Department of Agriculture, Fisheries and Forestry (DAFF) ABARES
Project start/end date: 28 Sep 2017 - 14 Apr 2019
Contact:
FRDC
SPECIES

Need

Commercial in confidence. To know more about this project please contact FRDC.

Objectives

Commercial in confidence

Elucidating the nutritional requirements of farmed hybrid abalone

Project number: 2017-113
Project Status:
Completed
Budget expenditure: $282,544.00
Principal Investigator: David S. Francis
Organisation: Deakin University Warrnambool Campus
Project start/end date: 14 Oct 2017 - 14 Oct 2020
Contact:
FRDC
SPECIES

Need

The farming of quality Australian abalone is a profitable industry, producing an estimated total ~1,000 tonnes live weight with a value of $35 million in the financial year ending July 2017. Notably, over the next 10 years, abalone production is forecast to increase by >300% to ~3,600 tonnes with an estimated total value of ~$120 million based on current day market prices. However, in order to facilitate this growth, detailed knowledge pertaining to the nutritional requirements of farmed abalone species is paramount. Currently, hybrid abalone culture is carried out via the provision of feeds developed specifically for greenlip abalone. While these feeds promote good growth and survival in both species, it is considered that the ideal protein ratio requirements of abalone may vary in relation to temperature (season), age (stage of growth) and species, (greenlip vs. hybrid). The issue is further exacerbated by varying, and site specific environmental conditions; especially high summer temperatures causing incidents of elevated mortality; and low winter temperatures suppressing growth. As such, on-farm performance of hybrid abalone has significant scope for improvement via nutritional intervention. Carefully planned and targeted RD&E effort that builds on the nutritional knowledge amassed for greenlip abalone therefore has the capacity to make rapid steps in relation to the productivity of the hybrid abalone aquaculture industry. Those gains are in turn expected to be transferable back to greenlip aquaculture.

The Australian Abalone Growers Association has identified ‘Nutrition’ as an RD&E investment priority in its 2015-2020 Strategic Plan, with a Strategic Goal to ‘Implement a Nutrition Program for Health, Survivorship and Meat Weight Gain’. This project will assist industry in achieving its projected growth within the time-frame of AAGA’s Strategic Plan by developing formulated feeds that are tailored to the major seasonal trends experienced by the abalone farming industry. Depending on the differences found in nutritional requirements this may result in the development of age/size-specific, temperature/season-specific and/or species-specific diets.

Objectives

1. To elucidate the key nutritional requirements of farmed hybrid abalone (Haliotis laevigata x rubra) with respect to stage of growth and environmental rearing temperature.
2. Profile the nutritional characteristics of commercially available abalone aquafeeds towards improved hybrid abalone feed formulations
3. Understand the impacts of nutritional conditioning on the survival of abalone in response to adverse temperature conditions
4. Development of rapid screening assays for diet digestibility and on-farm performance assessment

Final report

ISBN: 9780730009030
Author: David Francis
Final Report • 2022-04-14 • 6.16 MB
2017-113 DLD.pdf

Summary

The Australian Abalone aquaculture industry continues to search for performance improvements in farmed hybrid Abalone (Haliotis laevigata x H. rubra) to satisfy increasing consumer demand. This project was the first in 25 years to comprehensively profile existing commercial feeds and found large differences in their nutritional composition. These results informed the experimental diets that were manufactured and trialled under the project.  

Growth trials on sub-adult and juvenile hybrid Abalone showed that efficiencies in growth can be achieved by increasing protein to more than 40 per cent. In depth metabolic assessments overwhelmingly showed that increasing this level does not increase oxygen consumption in hybrid Abalone or reduce tolerance to oxidative stress caused by high water temperatures. 

This project provides clear evidence to hybrid Abalone producers and feed manufacturers that increases in growth can be achieved by changing the composition of current diets and that implementing these changes does not compromise Abalone health during stressful summer growing conditions.

More information: David Francis dfrancis@deakin.edu.au
Final Report • 2022-04-14 • 6.16 MB
2017-113 DLD.pdf

Summary

The Australian Abalone aquaculture industry continues to search for performance improvements in farmed hybrid Abalone (Haliotis laevigata x H. rubra) to satisfy increasing consumer demand. This project was the first in 25 years to comprehensively profile existing commercial feeds and found large differences in their nutritional composition. These results informed the experimental diets that were manufactured and trialled under the project.  

Growth trials on sub-adult and juvenile hybrid Abalone showed that efficiencies in growth can be achieved by increasing protein to more than 40 per cent. In depth metabolic assessments overwhelmingly showed that increasing this level does not increase oxygen consumption in hybrid Abalone or reduce tolerance to oxidative stress caused by high water temperatures. 

This project provides clear evidence to hybrid Abalone producers and feed manufacturers that increases in growth can be achieved by changing the composition of current diets and that implementing these changes does not compromise Abalone health during stressful summer growing conditions.

More information: David Francis dfrancis@deakin.edu.au
Final Report • 2022-04-14 • 6.16 MB
2017-113 DLD.pdf

Summary

The Australian Abalone aquaculture industry continues to search for performance improvements in farmed hybrid Abalone (Haliotis laevigata x H. rubra) to satisfy increasing consumer demand. This project was the first in 25 years to comprehensively profile existing commercial feeds and found large differences in their nutritional composition. These results informed the experimental diets that were manufactured and trialled under the project.  

Growth trials on sub-adult and juvenile hybrid Abalone showed that efficiencies in growth can be achieved by increasing protein to more than 40 per cent. In depth metabolic assessments overwhelmingly showed that increasing this level does not increase oxygen consumption in hybrid Abalone or reduce tolerance to oxidative stress caused by high water temperatures. 

This project provides clear evidence to hybrid Abalone producers and feed manufacturers that increases in growth can be achieved by changing the composition of current diets and that implementing these changes does not compromise Abalone health during stressful summer growing conditions.

More information: David Francis dfrancis@deakin.edu.au
Environment
PROJECT NUMBER • 2017-109
PROJECT STATUS:
COMPLETED

Development of Fish Health Indicators for the Gladstone Harbour Report Card

As the link between land and sea environments, estuaries are complex ecosystems vulnerable to human impacts, which directly and indirectly affect plants and animals, including fish. Fish are key biological indicators of environmental contamination, as they are water breathers, common in aquatic...
ORGANISATION:
CQUniversity (CQU) Gladstone

Revision of the AQUAVETPLAN Operational Procedures Manuals for Disposal and Decontamination

Project number: 2017-108
Project Status:
Completed
Budget expenditure: $31,500.00
Principal Investigator: Ben Diggles
Organisation: DigsFish Services Pty Ltd
Project start/end date: 30 Sep 2017 - 29 Jun 2018
Contact:
FRDC

Need

The Department of Agriculture and Water Resources is seeking expressions of interest for the revision of the following AQUAVETPLAN Operational Procedures manuals:
1. Decontamination
2. Disposal
The Australian Aquatic Veterinary Emergency Plan (AQUAVETPLAN) is a series of manuals that outline Australia’s approach to national disease preparedness and propose the technical response and control strategies to be activated in a national aquatic animal disease emergency.

The Decontamination manual was first published in 2008, and the second version of the Disposal manual was published in 2009. Both manuals require revision to reflect new scientific knowledge, and to ensure that decontamination and disposal procedures used for disease control purposes reflect current ‘best-practice’ approaches.

Objectives

1. Review and deliver updated AQUAVETPLAN Operatinal Procedures Manuals for decontamination and disposal.

Guide

Author: Digfish Services
Guide • 2019-02-01
Watch a video on - Revision of the AQUAVETPLAN Operational Procedures Manuals for Disposal and Decontamination

Summary

Australian aquatic veterinary emergency plan (AQUAVETPLAN) for Operational Procedures Manuals for Disposal and Decontamination can be accessed from the federal Department of Agriculture

Project products

Guide • 2019-02-01

Summary

Australian aquatic veterinary emergency plan (AQUAVETPLAN) for Operational Procedures Manuals for Disposal and Decontamination can be accessed from the federal Department of Agriculture

Guide • 2019-02-01

Summary

Australian aquatic veterinary emergency plan (AQUAVETPLAN) for Operational Procedures Manuals for Disposal and Decontamination can be accessed from the federal Department of Agriculture

Adoption
PROJECT NUMBER • 2017-106
PROJECT STATUS:
COMPLETED

Communicating the research, management and performance of Tasmanian marine resource industries by video

This project involved the production of videos that summarised the research and industry activities for fisheries and aquaculture in Tasmania. The six sector fisheries and aquaculture groups represented in the videos are rock lobster fisheries, abalone fisheries, recreational fisheries, small scale...
ORGANISATION:
University of Tasmania
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