Data

NERP TE Project 8.3 Significance of no-take marine protected areas to regional recruitment and population persistence on the GBR (JCU)

data.gov.au
School of Marine and Tropical Biology, James Cook University (JCU) (Owned by)
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ctx_ver=Z39.88-2004&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Adc&rfr_id=info%3Asid%2FANDS&rft_id=http://data.gov.au/data/dataset/9c170c0c-c793-4b71-828b-2dad016e5a2e&rft.title=NERP TE Project 8.3 Significance of no-take marine protected areas to regional recruitment and population persistence on the GBR (JCU)&rft.identifier=nerp-te-project-8-3-significance-of-no-take-marine-protected-areas-to-regional-recruitment-and-&rft.publisher=data.gov.au&rft.description=Point of truth URL of this metadata record - Project web site - QLD_NERP-TE_e-Atlas_Study-area:Project-8-3_2013_Polygons - This project uses genetic parentage analysis, biophysical modelling and information on coral trout larval behaviour to determine patterns of recruitment of coral trout larvae within and among inshore and offshore reefs in the southern Great Barrier Reef. The overall goal of this project will be to assess larval dispersal patterns, demographic connectivity and levels of recruitment subsidies from green zones at a regional scale. Tasks include:\n\n1. Collect tissue samples from adult and juvenile coral trout, develop a new set of hyper-variable microsatellite markers, conduct DNA genotyping analyses of all samples, carry out genetic parentage analysis to examine parent-offspring relationships.\n\n2. Refine the existing biophysical model and assess likely origins of larvae at key recruitment hot spots in the region.\n\n3. Undertake demographic metapopulation analyses using dispersal distances and trajectories derived from this study and available demographic data (growth, natural mortality, fishing mortality) to evaluate long-term persistence of green zone and blue zone populations under different levels of fishing pressure and habitat condition.&rft.creator=School of Marine and Tropical Biology, James Cook University (JCU)&rft.date=2023&rft.coverage=152.065,-23.585 150.211,-23.585 150.211,-21.462 152.065,-21.462 152.065,-23.585&rft.coverage=152.065,-23.585 150.211,-23.585 150.211,-21.462 152.065,-21.462 152.065,-23.585&rft.coverage=true&rft_rights=Creative Commons Attribution 2.5 Australia http://creativecommons.org/licenses/by/2.5/au/&rft_subject=marine&rft.type=dataset&rft.language=English Access the data

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Open Licence view details
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Creative Commons Attribution 2.5 Australia
http://creativecommons.org/licenses/by/2.5/au/

Brief description

This project uses genetic parentage analysis, biophysical modelling and information on coral trout larval behaviour to determine patterns of recruitment of coral trout larvae within and among inshore and offshore reefs in the southern Great Barrier Reef. The overall goal of this project will be to assess larval dispersal patterns, demographic connectivity and levels of recruitment subsidies from green zones at a regional scale. Tasks include:

1. Collect tissue samples from adult and juvenile coral trout, develop a new set of hyper-variable microsatellite markers, conduct DNA genotyping analyses of all samples, carry out genetic parentage analysis to examine parent-offspring relationships.

2. Refine the existing biophysical model and assess likely origins of larvae at key recruitment hot spots in the region.

3. Undertake demographic metapopulation analyses using dispersal distances and trajectories derived from this study and available demographic data (growth, natural mortality, fishing mortality) to evaluate long-term persistence of green zone and blue zone populations under different levels of fishing pressure and habitat condition.

Full description

Point of truth URL of this metadata record -
Project web site -
QLD_NERP-TE_e-Atlas_Study-area:Project-8-3_2013_Polygons -

This dataset is part of a larger collection

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152.065,-23.585 150.211,-23.585 150.211,-21.462 152.065,-21.462 152.065,-23.585

151.138,-22.5235

152.065,-23.585 150.211,-23.585 150.211,-21.462 152.065,-21.462 152.065,-23.585

151.138,-22.5235

text: true

Subjects
marine |

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Identifiers
ACN 633 798 857