Data

Oxygen production in the hydrozoan, Millepora on the Great Barrier Reef

Australian Institute of Marine Science
Australian Institute of Marine Science (AIMS)
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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=https://apps.aims.gov.au/metadata/view/23ded394-09bb-498a-8878-a174863f58bb&rft.title=Oxygen production in the hydrozoan, Millepora on the Great Barrier Reef&rft.identifier=https://apps.aims.gov.au/metadata/view/23ded394-09bb-498a-8878-a174863f58bb&rft.publisher=Australian Institute of Marine Science (AIMS)&rft.description=Samples of gas from freshly broken branches of the hydrozoan, Millepora tenella were collected from Britomart Reef. The gas was collected underwater by breaking branches under an inverted glass funnel connected to a separatory funnel. The gas was then transferred underwater to pre-rinsed 5 ml Teflon septum glass vials with only minute amounts of seawater included in the sample. Samples were refrigerated immediately after extraction.Analyses were carried out at the Queensland Government Chemical Laboratories in Brisbane using a Hewlett-Packard 5840 gas chromatograph fitted with a thermal-conductivity detector. The gas analysed contained oxygen, nitrogen, carbon monoxide, carbon dioxide and methane.Millepora fronds covering a vertical projection area of about 50 cm² were broken out of larger colonies and placed inside plastic bags. At the same depth, the bagged corals were placed on a plywood board and hammered to break up the coral and release trapped gases. Gas was extracted from the bags with a hypodermic syringe and gas volumes read underwater. Thin sections of Millepora tenella skeleton were produced to examine the internal structure of the coral. Scanning electron micrographs were also taken to examine the extent and location of algal borings within the skeleton of Millepora tenella. Data on algal boring were compared with data for Stylophora pistillata, a scleractinian coral with a similar branching habit. This research was initiated to investigate the source and composition of gases released from freshly broken branches of several species of the hydrozoan, Millepora.Maintenance and Update Frequency: notPlanned&rft.creator=Australian Institute of Marine Science (AIMS) &rft.date=2026&rft.coverage=westlimit=146.628062; southlimit=-18.275417; eastlimit=146.850358; northlimit=-18.180832&rft.coverage=westlimit=146.628062; southlimit=-18.275417; eastlimit=146.850358; northlimit=-18.180832&rft_rights=Creative Commons Attribution-NonCommercial 3.0 Australia License http://creativecommons.org/licenses/by-nc/3.0/au/&rft_rights=Use Limitation: 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=Attribution: Format for citation of metadata sourced from Australian Institute of Marine Science (AIMS) in a list of reference is as follows: Australian Institute of Marine Science (AIMS). (2010). Oxygen production in the hydrozoan, Millepora on the Great Barrier Reef. https://apps.aims.gov.au/metadata/view/23ded394-09bb-498a-8878-a174863f58bb, accessed[date-of-access].&rft_rights=Resource Usage:Use of the AIMS data is for not-for-profit applications only. All other users shall seek permission for use by contacting AIMS. Acknowledgements as prescribed must be clearly set out in the user's formal communications or publications.&rft_subject=oceans&rft.type=dataset&rft.language=English Access the data

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Creative Commons Attribution-NonCommercial 3.0 Australia License
http://creativecommons.org/licenses/by-nc/3.0/au/

Use Limitation: 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.

Attribution: Format for citation of metadata sourced from Australian Institute of Marine Science (AIMS) in a list of reference is as follows: "Australian Institute of Marine Science (AIMS). (2010). Oxygen production in the hydrozoan, Millepora on the Great Barrier Reef. https://apps.aims.gov.au/metadata/view/23ded394-09bb-498a-8878-a174863f58bb, accessed[date-of-access]".

Resource Usage:Use of the AIMS data is for not-for-profit applications only. All other users shall seek permission for use by contacting AIMS. Acknowledgements as prescribed must be clearly set out in the user's formal communications or publications.

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Samples of gas from freshly broken branches of the hydrozoan, Millepora tenella were collected from Britomart Reef. The gas was collected underwater by breaking branches under an inverted glass funnel connected to a separatory funnel. The gas was then transferred underwater to pre-rinsed 5 ml Teflon septum glass vials with only minute amounts of seawater included in the sample. Samples were refrigerated immediately after extraction.Analyses were carried out at the Queensland Government Chemical Laboratories in Brisbane using a Hewlett-Packard 5840 gas chromatograph fitted with a thermal-conductivity detector. The gas analysed contained oxygen, nitrogen, carbon monoxide, carbon dioxide and methane.Millepora fronds covering a vertical projection area of about 50 cm² were broken out of larger colonies and placed inside plastic bags. At the same depth, the bagged corals were placed on a plywood board and hammered to break up the coral and release trapped gases. Gas was extracted from the bags with a hypodermic syringe and gas volumes read underwater. Thin sections of Millepora tenella skeleton were produced to examine the internal structure of the coral. Scanning electron micrographs were also taken to examine the extent and location of algal borings within the skeleton of Millepora tenella. Data on algal boring were compared with data for Stylophora pistillata, a scleractinian coral with a similar branching habit.
This research was initiated to investigate the source and composition of gases released from freshly broken branches of several species of the hydrozoan, Millepora.

Lineage

Maintenance and Update Frequency: notPlanned

Notes

Credit
Bellamy, Nigel F, Mr (Principal Investigator)

Modified: 18 09 2026

This dataset is part of a larger collection

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146.85036,-18.18083 146.85036,-18.27542 146.62806,-18.27542 146.62806,-18.18083 146.85036,-18.18083

146.73921,-18.2281245

text: westlimit=146.628062; southlimit=-18.275417; eastlimit=146.850358; northlimit=-18.180832

Subjects
oceans |

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Other Information
Coral gas: oxygen production in Millepora on the Great Barrier Reef: Bellamy N and Risk MJ (1982) Coral gas: oxygen production in Millepora on the Great Barrier Reef. Science 215: 1618-1619.

local : articleId=8522

Identifiers
  • global : 23ded394-09bb-498a-8878-a174863f58bb
ACN 633 798 857