Data

Formation of functional coral clones through natural embryo fragmentation of broadcast spawn from the Great Barrier Reef

Australian Institute of Marine Science
Australian Institute of Marine Science (AIMS)
Viewed: [[ro.stat.viewed]] Cited: [[ro.stat.cited]] Accessed: [[ro.stat.accessed]]
ctx_ver=Z39.88-2004&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Adc&rfr_id=info%3Asid%2FANDS&rft_id=https://apps.aims.gov.au/metadata/view/dec6a90f-1c7b-4041-85f2-378ff46591f0&rft.title=Formation of functional coral clones through natural embryo fragmentation of broadcast spawn from the Great Barrier Reef&rft.identifier=https://apps.aims.gov.au/metadata/view/dec6a90f-1c7b-4041-85f2-378ff46591f0&rft.publisher=Australian Institute of Marine Science (AIMS)&rft.description=Acropora millepora colonies were collected from Trunk Reef in early December 2009 and maintained in the aquarium system at the Australian Institute of Marine Science. Eggs from 7 colonies were fertilized and after 3 hours, when the majority of embryos were at the 2, 4 or 8 cell stage, the embryos were gently poured twice over a vertical distance of 30 cm from one 2 litre plastic container to another. This caused embryos to fragment, with the resulting separated cells or groups of cells continuing on through normal development, but at smaller sizes than the original embryos. Embryos were cultured in three 40 l polypropylene tanks and 80% of the water was changed daily with 1 µm filtered seawater.After 7 days, a random sample of 35 larvae were measured and classified into three size classes. Fifteen randomly selected larvae were transferred with 10 ml of seawater into each well of four 6 well cell culture plates and exposed to the crustose coralline algae, Porolithon onkodes, to initiate metamorphosis.After 48 hours, newly settled juveniles were measured and classified into three size classes and the larval success of each size class determined. Four day old juvenile corals were inoculated with 10^5 cells/ml Symbiodinium sp. and symbiont uptake was observed after 6 weeks. Wind speed data for the predicted nights of annual broadcast spawning, for the years 2000 - 2010 were obtained from the AIMS weather stations located at Davies Reef, Myrmidon Reef, Hardy Reef and Magnetic Island. This laboratory study was undertaken to examine the viability of larvae derived from embryos fragmented by turbulence. In most metazoan sexual reproduction, the fertilized egg or early embryo is protected by a capsule or membrane. However, coral embryos from a range of families are an exception and lack this protection. Vulnerability to fragmentation had been observed when culturing coral embryos from the families Acroporidae, Faviidae, Mussidae, Fungidae and Occulinidae.Maintenance and Update Frequency: notPlanned&rft.creator=Australian Institute of Marine Science (AIMS) &rft.date=2025&rft.coverage=westlimit=146.787222; southlimit=-18.367222; eastlimit=146.787222; northlimit=-18.367222&rft.coverage=westlimit=146.787222; southlimit=-18.367222; eastlimit=146.787222; northlimit=-18.367222&rft.coverage=westlimit=147.055396; southlimit=-19.267807; eastlimit=147.055396; northlimit=-19.267807&rft.coverage=westlimit=147.055396; southlimit=-19.267807; eastlimit=147.055396; northlimit=-19.267807&rft_rights=All AIMS data, products and services are provided as is and AIMS does not warrant their fitness for a particular purpose or non-infringement. While AIMS has made every reasonable effort to ensure high quality of the data, products and services, to the extent permitted by law the data, products and services are provided without any warranties of any kind, either expressed or implied, including without limitation any implied warranties of title, merchantability, and fitness for a particular purpose or non-infringement. AIMS make no representation or warranty that the data, products and services are accurate, complete, reliable or current. To the extent permitted by law, AIMS exclude all liability to any person arising directly or indirectly from the use of the data, products and services.&rft_rights=The data was collected under contract between AIMS and another party(s). Specific agreements for access and use of the data shall be negotiated separately. Contact the AIMS Data Centre ([email protected]) for further information&rft_rights=Resource Usage:The data is under exclusive access period. Contact AIMS for possible access to the data within this period.Access Constraint: restrictedSecurity classification code: unclassifiedMetadata Usage:Security classification code: unclassified&rft_subject=oceans&rft.type=dataset&rft.language=English Access the data

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All AIMS data, products and services are provided "as is" and AIMS does not warrant their fitness for a particular purpose or non-infringement. While AIMS has made every reasonable effort to ensure high quality of the data, products and services, to the extent permitted by law the data, products and services are provided without any warranties of any kind, either expressed or implied, including without limitation any implied warranties of title, merchantability, and fitness for a particular purpose or non-infringement. AIMS make no representation or warranty that the data, products and services are accurate, complete, reliable or current. To the extent permitted by law, AIMS exclude all liability to any person arising directly or indirectly from the use of the data, products and services.

The data was collected under contract between AIMS and another party(s). Specific agreements for access and use of the data shall be negotiated separately. Contact the AIMS Data Centre ([email protected]) for further information

Resource Usage:The data is under exclusive access period. Contact AIMS for possible access to the data within this period.Access Constraint: restrictedSecurity classification code: unclassifiedMetadata Usage:Security classification code: unclassified

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Acropora millepora colonies were collected from Trunk Reef in early December 2009 and maintained in the aquarium system at the Australian Institute of Marine Science. Eggs from 7 colonies were fertilized and after 3 hours, when the majority of embryos were at the 2, 4 or 8 cell stage, the embryos were gently poured twice over a vertical distance of 30 cm from one 2 litre plastic container to another. This caused embryos to fragment, with the resulting separated cells or groups of cells continuing on through normal development, but at smaller sizes than the original embryos. Embryos were cultured in three 40 l polypropylene tanks and 80% of the water was changed daily with 1 µm filtered seawater.After 7 days, a random sample of 35 larvae were measured and classified into three size classes. Fifteen randomly selected larvae were transferred with 10 ml of seawater into each well of four 6 well cell culture plates and exposed to the crustose coralline algae, Porolithon onkodes, to initiate metamorphosis.After 48 hours, newly settled juveniles were measured and classified into three size classes and the larval success of each size class determined. Four day old juvenile corals were inoculated with 10^5 cells/ml Symbiodinium sp. and symbiont uptake was observed after 6 weeks. Wind speed data for the predicted nights of annual broadcast spawning, for the years 2000 - 2010 were obtained from the AIMS weather stations located at Davies Reef, Myrmidon Reef, Hardy Reef and Magnetic Island.
This laboratory study was undertaken to examine the viability of larvae derived from embryos fragmented by turbulence.
In most metazoan sexual reproduction, the fertilized egg or early embryo is protected by a capsule or membrane. However, coral embryos from a range of families are an exception and lack this protection. Vulnerability to fragmentation had been observed when culturing coral embryos from the families Acroporidae, Faviidae, Mussidae, Fungidae and Occulinidae.

Lineage

Maintenance and Update Frequency: notPlanned

Notes

Credit
Heyward, Andrew J, Dr (Principal Investigator)

Modified: 19 09 2025

This dataset is part of a larger collection

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146.78722,-18.36722

146.787222,-18.367222

147.0554,-19.26781

147.055396,-19.267807

text: westlimit=146.787222; southlimit=-18.367222; eastlimit=146.787222; northlimit=-18.367222

text: westlimit=147.055396; southlimit=-19.267807; eastlimit=147.055396; northlimit=-19.267807

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oceans |

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Identifiers
  • global : dec6a90f-1c7b-4041-85f2-378ff46591f0
ACN 633 798 857