Data

Luminescent lines in massive Porites corals from the Great Barrier Reef as proxies for mainland runoff

Australian Institute of Marine Science
Australian Institute of Marine Science (AIMS)
Viewed: [[ro.stat.viewed]] Cited: [[ro.stat.cited]] Accessed: [[ro.stat.accessed]]
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The reefs were located within the following regions: Northern Coral Sea (Ashmore Reef); Northern GBR (Lagoon Reef, Eel Reef, Portland Roads, Rocky Island, Night Island, Reef No. 13-055 and Reef No. 13-050); Cairns to Cape Melville (Tydeman Reef, Pipon Island, Flinders Island, Watson Island, South Petherbridge Island, Two Isles, Boulder Reef, East Hope Island, Undine Reef, Snapper Island, Batt Reef, and Double Island); Mission Beach (Stephens Island and Bedarra Island); Central GBR (Myrmidon Reef, Rib Reef and Pandora Reef); Southern GBR (Shaw Island, Reef No. 20-200, Credlin Reef, Reef No. 21-141 and Middle Percy Island). All colonies were between 0.2 and 0.5 m in height and were selected from similar environments towards the rear of the windward reef flat or on sheltered parts of fringing reefs in the lee of the islands at depths between 3 and 5 m relative to mean low water spring tide levels. Between six and 15 colonies were collected from each site and 232 similar sized colonies were used for luminescence analysis. The species of coral colonies analysed were: Porites lutea, Porites lobata, Porites australensis, Porites solida and Porites mayeri.Colonies were cut in half vertically and at least 2 slices, approximately 7mm thick, were cut from the centre of each colony. Coral growth characteristics had been recorded from these slices using X-ray and densitometry in a previous study and slices were dated using the annual density banding patterns and gamma density traces. Each dated year represents the time between successive density peaks.Slices were viewed under UV light in a darkened room. Luminescence was assessed along 2 tracks close to the vertical growth axis and 1 horizontal track. For each slice and year the appearance of the luminescent lines was graded visually into one of four categories: 0 = no visible line, 1 = faint luminescent line, 2 = moderate luminescent line and 3 = intense luminescent line. A luminescence index was derived for each year that 2 or more colonies from the same reef were analysed. The index for a particular year and reef was the sum of the number of luminescent lines in each category multiplied by the value of that category, divided by the total number of colonies.Daily river flows were obtained from the Queensland Department of Natural Resources for the 9 major rivers that drain into the GBR lagoon: Normanby River, Daintree River, Barron River, North Johnstone River, South Johnstone River, Tully River, Herbert River, Burdekin River and Fitzroy River.A 3-D hydrodynamic model of the movement of freshwater river plumes from the Burdekin River was used to provide daily salinity variations at Rib and Pandora Reefs for the period 1966-1986. Measures of salinity derived for each reef were: average annual salinity; minimum daily salinity; number of days with salinity < 35 ppt; sum of daily salinity values < 35 ppt; and average of daily salinities < 35 ppt. Reefs were classified as inshore, midshelf and offshore. In addition, the linear distance (km) between each reef and the nearest mainland was estimated and expressed as a percentage of the shelf width at that latitude. The average water depth between each reef and the nearest point on the mainland was calculated from depths at taken at approximately 225 m intervals from a bathymetry data model for the GBR. This study was undertaken to determine:1. if luminescent signals in corals are reproducible2. how far offshore luminescent lines are evident and if there is a relationship between intensity of luminescence and distance from shore3. how often are reefs affected by freshwater4. if past flows for rivers other than the Burdekin can be reconstructed from luminescent lines in massive corals5. if luminescent lines in corals from the central GBR match 3-D modeling of salinities associated with the Burdekin River plume. These colonies (with the exception of those collected from Ashmore Reef) were initially collected to determine variations in growth characteristics in massive corals with environmental gradients.See Metadata Record: Environmental controls on growth of massive Porites corals from the Great Barrier ReefMaintenance and Update Frequency: notPlannedStatement: Statement: The procedures used to determine growth parameters are described in:Lough JM, Barnes DJ, Devereux MJ, Tobin BJ and Tobin S (1999) Variability in growth characteristics of massive Porites on the Great Barrier Reef. CRC Reef Research Technical Report No. 28. 28. CRC Reef Research Centre. 95 p.The technique for visual assessment of luminescent lines is discussed in: Hendy EJ, Gagan MK and Lough JM (2003) Chronological control of coral records using luminescent lines and evidence for non-stationary ENSO teleconnections in northeast Australia. The Holocene 13: 187-199.The hydrodynamic model used to provide salinity data is described in:King BA, McAllister FA, Wolanski EJ, Done TJ and Spagnol SB (2001) River plume dynamics in the central Great Barrier Reef. Chapter 10. pp. 145-160. In: Wolanski EJ (ed) Oceanographic Processes of Coral Reefs: Physical and Biological Links in the Great Barrier Reef. CRC Press. 356 p.The bathymetry data model for the GBR is described in:Lewis A (2001) Great Barrier Reef depth and elevation model: GBRDEM. Tech Rep 33. 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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). (2012). Luminescent lines in massive Porites corals from the Great Barrier Reef as proxies for mainland runoff. https://apps.aims.gov.au/metadata/view/caaeb453-d6e8-49b1-8e4b-58ed425e4d5a, 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). (2012). Luminescent lines in massive Porites corals from the Great Barrier Reef as proxies for mainland runoff. https://apps.aims.gov.au/metadata/view/caaeb453-d6e8-49b1-8e4b-58ed425e4d5a, 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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Full description

Massive Porites colonies were collected from 1 reef in the Coral Sea and 29 reefs located along the length and across the width of the Great Barrier Reef (GBR), between November 1987 and May 1992. The reefs were located within the following regions: Northern Coral Sea (Ashmore Reef); Northern GBR (Lagoon Reef, Eel Reef, Portland Roads, Rocky Island, Night Island, Reef No. 13-055 and Reef No. 13-050); Cairns to Cape Melville (Tydeman Reef, Pipon Island, Flinders Island, Watson Island, South Petherbridge Island, Two Isles, Boulder Reef, East Hope Island, Undine Reef, Snapper Island, Batt Reef, and Double Island); Mission Beach (Stephens Island and Bedarra Island); Central GBR (Myrmidon Reef, Rib Reef and Pandora Reef); Southern GBR (Shaw Island, Reef No. 20-200, Credlin Reef, Reef No. 21-141 and Middle Percy Island). All colonies were between 0.2 and 0.5 m in height and were selected from similar environments towards the rear of the windward reef flat or on sheltered parts of fringing reefs in the lee of the islands at depths between 3 and 5 m relative to mean low water spring tide levels. Between six and 15 colonies were collected from each site and 232 similar sized colonies were used for luminescence analysis. The species of coral colonies analysed were: Porites lutea, Porites lobata, Porites australensis, Porites solida and Porites mayeri.Colonies were cut in half vertically and at least 2 slices, approximately 7mm thick, were cut from the centre of each colony. Coral growth characteristics had been recorded from these slices using X-ray and densitometry in a previous study and slices were dated using the annual density banding patterns and gamma density traces. Each dated year represents the time between successive density peaks.Slices were viewed under UV light in a darkened room. Luminescence was assessed along 2 tracks close to the vertical growth axis and 1 horizontal track. For each slice and year the appearance of the luminescent lines was graded visually into one of four categories: 0 = no visible line, 1 = faint luminescent line, 2 = moderate luminescent line and 3 = intense luminescent line. A luminescence index was derived for each year that 2 or more colonies from the same reef were analysed. The index for a particular year and reef was the sum of the number of luminescent lines in each category multiplied by the value of that category, divided by the total number of colonies.Daily river flows were obtained from the Queensland Department of Natural Resources for the 9 major rivers that drain into the GBR lagoon: Normanby River, Daintree River, Barron River, North Johnstone River, South Johnstone River, Tully River, Herbert River, Burdekin River and Fitzroy River.A 3-D hydrodynamic model of the movement of freshwater river plumes from the Burdekin River was used to provide daily salinity variations at Rib and Pandora Reefs for the period 1966-1986. Measures of salinity derived for each reef were: average annual salinity; minimum daily salinity; number of days with salinity < 35 ppt; sum of daily salinity values < 35 ppt; and average of daily salinities < 35 ppt. Reefs were classified as inshore, midshelf and offshore. In addition, the linear distance (km) between each reef and the nearest mainland was estimated and expressed as a percentage of the shelf width at that latitude. The average water depth between each reef and the nearest point on the mainland was calculated from depths at taken at approximately 225 m intervals from a bathymetry data model for the GBR.
This study was undertaken to determine:1. if luminescent signals in corals are reproducible2. how far offshore luminescent lines are evident and if there is a relationship between intensity of luminescence and distance from shore3. how often are reefs affected by freshwater4. if past flows for rivers other than the Burdekin can be reconstructed from luminescent lines in massive corals5. if luminescent lines in corals from the central GBR match 3-D modeling of salinities associated with the Burdekin River plume.
These colonies (with the exception of those collected from Ashmore Reef) were initially collected to determine variations in growth characteristics in massive corals with environmental gradients.See Metadata Record: Environmental controls on growth of massive Porites corals from the Great Barrier Reef

Lineage

Maintenance and Update Frequency: notPlanned
Statement: Statement: The procedures used to determine growth parameters are described in:Lough JM, Barnes DJ, Devereux MJ, Tobin BJ and Tobin S (1999) Variability in growth characteristics of massive Porites on the Great Barrier Reef. CRC Reef Research Technical Report No. 28. 28. CRC Reef Research Centre. 95 p.The technique for visual assessment of luminescent lines is discussed in: Hendy EJ, Gagan MK and Lough JM (2003) Chronological control of coral records using luminescent lines and evidence for non-stationary ENSO teleconnections in northeast Australia. The Holocene 13: 187-199.The hydrodynamic model used to provide salinity data is described in:King BA, McAllister FA, Wolanski EJ, Done TJ and Spagnol SB (2001) River plume dynamics in the central Great Barrier Reef. Chapter 10. pp. 145-160. In: Wolanski EJ (ed) Oceanographic Processes of Coral Reefs: Physical and Biological Links in the Great Barrier Reef. CRC Press. 356 p.The bathymetry data model for the GBR is described in:Lewis A (2001) Great Barrier Reef depth and elevation model: GBRDEM. Tech Rep 33. CRC Reef Research Centre, Townsville, 58 pp.

Notes

Credit
Lough, Janice M, Dr (Principal Investigator)

Modified: 18 09 2026

This dataset is part of a larger collection

Click to explore relationships graph

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Other Information
Luminescent lines in corals from the Great Barrier Reef provide spatial and temporal records of reefs affected by land runoff: Lough JM, Barnes DJ and McAllister FA (2002) Luminescent lines in corals from the Great Barrier Reef provide spatial and temporal records of reefs affected by land runoff. Coral Reefs 21: 333-343.

local : articleId=6271

Variability in growth characteristics of massive Porites on the Great Barrier Reef. CRC Reef Research Technical Report No. 28: Lough JM, Barnes DJ, Devereux MJ, Tobin BJ and Tobin S (1999) Variability in growth characteristics of massive Porites on the Great Barrier Reef. CRC Reef Research Technical Report No. 28. CRC Reef Research Centre. 95 p.

local : articleId=1502

Map

url : https://data.aims.gov.au/mestmapkml/caaeb453-d6e8-49b1-8e4b-58ed425e4d5a.kml

Identifiers
  • global : caaeb453-d6e8-49b1-8e4b-58ed425e4d5a
ACN 633 798 857