Data

Oxygen uptake, ammonia and phosphate excretion and chemical composition of Antarctic zooplankton (RV Kaiyo Maru Cruise)

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/868e5236-b8d8-4d35-a586-f34f870b0711&rft.title=Oxygen uptake, ammonia and phosphate excretion and chemical composition of Antarctic zooplankton (RV Kaiyo Maru Cruise)&rft.identifier=https://apps.aims.gov.au/metadata/view/868e5236-b8d8-4d35-a586-f34f870b0711&rft.publisher=Australian Institute of Marine Science (AIMS)&rft.description=Zooplankton were collected from 15 stations in Antarctic waters, adjacent to Wilkes Land in January 1980. The location, type of net used and the sea surface temperature were recorded for each plankton tow. Water from each sampling site was collected and filtered for use in experiments. Undamaged animals were sorted by species and maintained separately until experiments commenced, usually between 8 to 24 hours later. Of the 14 species collected, the following were classified as herbivore filter-feeders: the pteropods, Limacina antarctica and Cleodora sulcata; the copepods, Calanus propinquus and Metridia gerlachei; the Euphausiids, Euphausia surperba and Euphausia triacantha; and the salps, Ihlea racovitzai and Salpa thompsoni. The remaining species, classified as carnivores were: the ctenophore, Beroe sp.; the pteropod, Clione antarctica; the polychaete, Tomopteris carpenteri; and the amphipods, Parathemisto gaudichaudii, Viblia antarctica and Hyperia gaudichaudii.Oxygen uptake, ammonia excretion and phosphate excretion measurements were made on board the RV Kaiyo Maru, using a water-bottle method. Zooplankton were placed in bottles of filtered seawater. The size of the bottle used ranged from 250 to 2000 ml, depending on the size of the animal. Larger individuals were incubated individually, while for smaller species, up to 30 individuals were placed in a bottle. Bottles were wrapped in aluminium foil to exclude light and placed in a water bath to maintain a constant temperature, which was slightly below the surface temperature at the sampling site. After incubation for 24 hours, duplicate water samples were drawn for dissolved oxygen, and ammonia and phosphate measurements. The animals remaining in the bottles were collected and frozen at -50°C for later determination of dry weight, by freeze drying, and elemental analysis.For elemental analyses of carbon (C), nitrogen (N) and Phosphorous (P), dried specimens were ground, pooled by experiment or body size group (when the range of body sizes was large) for each species. C and N were measured with a Perkin Elmer Model 240 elemental analyser, using acetanilide as a standard. P analysis required samples to be digested in 50% (v/v) sulphuric acid for 1 hour at close to 100°C and neutralized by KOH. P was then measured as phosphate using the molybdate method. Oxygen uptake has been routinely measured as a function or body weight in studies of the metabolic activities of zooplankton. This study was initiated to provide additional information on the metabolic functions of zooplankton by measuring other metabolic processes, such as nitrogen and phosphate excretion, as well as determining the chemical composition of the zooplankton. Live specimens of Antarctic krill (Euphausia superba) were maintained on board the vessel in an incubator at -0.5 ± 0.5°C and transported to the Australian Institute of Marine Science (AIMS) in February 1980 for use in longer term experiments.Maintenance and Update Frequency: notPlannedStatement: Statement: Collection methods:Most zooplankton collections were made with a 160 cm diameter, 750 cm length, 1 mm mesh net designed by Omori (1965), with a modified large cod-end (5-litre PVC cylinder). The net was towed for 10 to 15 min through subsurface water (Most specimens of krill used in this study were collected with a rectangular net (3x3 m mouth, 5.6 mm mesh aperture) fitted with an opening-closing cod-end (Foxton, 1963). The net was towed horizontally at depths in which swarms of krill had been located with an acoustic fish finder (general range: 20 to 50 m depth). Tows were made during both day and night. Additional tows were also made with an Omori design net, which had no cod-end modification.Omori M (1965) A 160-cm opening-closing plankton net. J. oceanogr. Soc. Japan 21, 212-220.Foxton P (1963) An automatic opening-closing device for large plankton nets and mid-water trawls. J. mar. biol. Ass. U.K. 43, 295-308.The water-bottle method used for direct measurements of rates of oxygen uptake, ammonia excretion and phosphate excretion is described in:Ikeda T (1974) Nutritional ecology of marine zooplankton. Mem. Fac. Fish. Hokkaido Univ. 22, 1-97.The methods used to measure the concentration of dissolved oxygen (the Winkler titration method), the ammonia concentration (the phenol-hypochlorite method) and the inorganic phosphate concentration (the molybdate method) are described in: Strickland JDH and Parsons TR (1972) A practical handbook of seawater analysis. Bull. Fish Res. Board Can. 167, 1-310.&rft.creator=Australian Institute of Marine Science (AIMS) &rft.date=2026&rft.coverage=westlimit=120.023333; southlimit=-65.566667; eastlimit=120.023333; northlimit=-65.566667&rft.coverage=westlimit=120.023333; southlimit=-65.566667; eastlimit=120.023333; northlimit=-65.566667&rft.coverage=westlimit=99.948333; southlimit=-64.311667; eastlimit=99.948333; northlimit=-64.311667&rft.coverage=westlimit=99.948333; southlimit=-64.311667; eastlimit=99.948333; northlimit=-64.311667&rft.coverage=westlimit=101.821667; southlimit=-64.691667; eastlimit=101.821667; northlimit=-64.691667&rft.coverage=westlimit=101.821667; southlimit=-64.691667; eastlimit=101.821667; northlimit=-64.691667&rft.coverage=westlimit=109.998333; southlimit=-61.001667; eastlimit=109.998333; northlimit=-61.001667&rft.coverage=westlimit=109.998333; southlimit=-61.001667; eastlimit=109.998333; northlimit=-61.001667&rft.coverage=westlimit=105.013333; southlimit=-64.333333; eastlimit=105.013333; northlimit=-64.333333&rft.coverage=westlimit=105.013333; southlimit=-64.333333; eastlimit=105.013333; northlimit=-64.333333&rft.coverage=westlimit=104.94; southlimit=-62.306667; eastlimit=104.94; northlimit=-62.306667&rft.coverage=westlimit=104.94; southlimit=-62.306667; eastlimit=104.94; northlimit=-62.306667&rft.coverage=westlimit=99.97; southlimit=-61.656667; eastlimit=99.97; northlimit=-61.656667&rft.coverage=westlimit=99.97; southlimit=-61.656667; eastlimit=99.97; northlimit=-61.656667&rft.coverage=westlimit=119.971667; southlimit=-61.025; eastlimit=119.971667; northlimit=-61.025&rft.coverage=westlimit=119.971667; southlimit=-61.025; eastlimit=119.971667; northlimit=-61.025&rft.coverage=westlimit=115.0; southlimit=-63.66; eastlimit=115.0; northlimit=-63.66&rft.coverage=westlimit=115.0; southlimit=-63.66; eastlimit=115.0; northlimit=-63.66&rft.coverage=westlimit=105.046667; southlimit=-64.888333; eastlimit=105.046667; northlimit=-64.888333&rft.coverage=westlimit=105.046667; southlimit=-64.888333; eastlimit=105.046667; northlimit=-64.888333&rft.coverage=westlimit=114.51; southlimit=-64.471667; eastlimit=114.51; northlimit=-64.471667&rft.coverage=westlimit=114.51; southlimit=-64.471667; eastlimit=114.51; northlimit=-64.471667&rft.coverage=westlimit=114.406667; southlimit=-64.523333; eastlimit=114.406667; northlimit=-64.523333&rft.coverage=westlimit=114.406667; southlimit=-64.523333; eastlimit=114.406667; northlimit=-64.523333&rft.coverage=westlimit=115.563333; southlimit=-64.93; eastlimit=115.563333; northlimit=-64.93&rft.coverage=westlimit=115.563333; southlimit=-64.93; eastlimit=115.563333; northlimit=-64.93&rft.coverage=westlimit=120.005; southlimit=-63.718333; eastlimit=120.005; northlimit=-63.718333&rft.coverage=westlimit=120.005; southlimit=-63.718333; eastlimit=120.005; northlimit=-63.718333&rft.coverage=westlimit=115.003333; southlimit=-61.673333; eastlimit=115.003333; northlimit=-61.673333&rft.coverage=westlimit=115.003333; southlimit=-61.673333; eastlimit=115.003333; northlimit=-61.673333&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)(TBC). (2011). Oxygen uptake, ammonia and phosphate excretion and chemical composition of Antarctic zooplankton (RV Kaiyo Maru Cruise). https://apps.aims.gov.au/metadata/view/868e5236-b8d8-4d35-a586-f34f870b0711, 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

Licence & Rights:

Other view details
Unknown

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)(TBC). (2011). Oxygen uptake, ammonia and phosphate excretion and chemical composition of Antarctic zooplankton (RV Kaiyo Maru Cruise). https://apps.aims.gov.au/metadata/view/868e5236-b8d8-4d35-a586-f34f870b0711, 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.

Access:

Other

Full description

Zooplankton were collected from 15 stations in Antarctic waters, adjacent to Wilkes Land in January 1980. The location, type of net used and the sea surface temperature were recorded for each plankton tow. Water from each sampling site was collected and filtered for use in experiments. Undamaged animals were sorted by species and maintained separately until experiments commenced, usually between 8 to 24 hours later. Of the 14 species collected, the following were classified as herbivore filter-feeders: the pteropods, Limacina antarctica and Cleodora sulcata; the copepods, Calanus propinquus and Metridia gerlachei; the Euphausiids, Euphausia surperba and Euphausia triacantha; and the salps, Ihlea racovitzai and Salpa thompsoni. The remaining species, classified as carnivores were: the ctenophore, Beroe sp.; the pteropod, Clione antarctica; the polychaete, Tomopteris carpenteri; and the amphipods, Parathemisto gaudichaudii, Viblia antarctica and Hyperia gaudichaudii.Oxygen uptake, ammonia excretion and phosphate excretion measurements were made on board the RV Kaiyo Maru, using a water-bottle method. Zooplankton were placed in bottles of filtered seawater. The size of the bottle used ranged from 250 to 2000 ml, depending on the size of the animal. Larger individuals were incubated individually, while for smaller species, up to 30 individuals were placed in a bottle. Bottles were wrapped in aluminium foil to exclude light and placed in a water bath to maintain a constant temperature, which was slightly below the surface temperature at the sampling site. After incubation for 24 hours, duplicate water samples were drawn for dissolved oxygen, and ammonia and phosphate measurements. The animals remaining in the bottles were collected and frozen at -50°C for later determination of dry weight, by freeze drying, and elemental analysis.For elemental analyses of carbon (C), nitrogen (N) and Phosphorous (P), dried specimens were ground, pooled by experiment or body size group (when the range of body sizes was large) for each species. C and N were measured with a Perkin Elmer Model 240 elemental analyser, using acetanilide as a standard. P analysis required samples to be digested in 50% (v/v) sulphuric acid for 1 hour at close to 100°C and neutralized by KOH. P was then measured as phosphate using the molybdate method.
Oxygen uptake has been routinely measured as a function or body weight in studies of the metabolic activities of zooplankton. This study was initiated to provide additional information on the metabolic functions of zooplankton by measuring other metabolic processes, such as nitrogen and phosphate excretion, as well as determining the chemical composition of the zooplankton.
Live specimens of Antarctic krill (Euphausia superba) were maintained on board the vessel in an incubator at -0.5 ± 0.5°C and transported to the Australian Institute of Marine Science (AIMS) in February 1980 for use in longer term experiments.

Lineage

Maintenance and Update Frequency: notPlanned
Statement: Statement: Collection methods:Most zooplankton collections were made with a 160 cm diameter, 750 cm length, 1 mm mesh net designed by Omori (1965), with a modified large cod-end (5-litre PVC cylinder). The net was towed for 10 to 15 min through subsurface water (Most specimens of krill used in this study were collected with a rectangular net (3x3 m mouth, 5.6 mm mesh aperture) fitted with an opening-closing cod-end (Foxton, 1963). The net was towed horizontally at depths in which swarms of krill had been located with an acoustic fish finder (general range: 20 to 50 m depth). Tows were made during both day and night. Additional tows were also made with an Omori design net, which had no cod-end modification.Omori M (1965) A 160-cm opening-closing plankton net. J. oceanogr. Soc. Japan 21, 212-220.Foxton P (1963) An automatic opening-closing device for large plankton nets and mid-water trawls. J. mar. biol. Ass. U.K. 43, 295-308.The water-bottle method used for direct measurements of rates of oxygen uptake, ammonia excretion and phosphate excretion is described in:Ikeda T (1974) Nutritional ecology of marine zooplankton. Mem. Fac. Fish. Hokkaido Univ. 22, 1-97.The methods used to measure the concentration of dissolved oxygen (the Winkler titration method), the ammonia concentration (the phenol-hypochlorite method) and the inorganic phosphate concentration (the molybdate method) are described in: Strickland JDH and Parsons TR (1972) A practical handbook of seawater analysis. Bull. Fish Res. Board Can. 167, 1-310.

Notes

Credit
Ikeda, Tsutomu, Dr (Principal Investigator)

Modified: 25 09 2026

This dataset is part of a larger collection

Click to explore relationships graph

120.02333,-65.56667

120.023333,-65.566667

99.94833,-64.31167

99.948333,-64.311667

101.82167,-64.69167

101.821667,-64.691667

109.99833,-61.00167

109.998333,-61.001667

105.01333,-64.33333

105.013333,-64.333333

104.94,-62.30667

104.94,-62.306667

99.97,-61.65667

99.97,-61.656667

119.97167,-61.025

119.971667,-61.025

115,-63.66

115,-63.66

105.04667,-64.88833

105.046667,-64.888333

114.51,-64.47167

114.51,-64.471667

114.40667,-64.52333

114.406667,-64.523333

115.56333,-64.93

115.563333,-64.93

120.005,-63.71833

120.005,-63.718333

115.00333,-61.67333

115.003333,-61.673333

text: westlimit=120.023333; southlimit=-65.566667; eastlimit=120.023333; northlimit=-65.566667

text: westlimit=99.948333; southlimit=-64.311667; eastlimit=99.948333; northlimit=-64.311667

text: westlimit=101.821667; southlimit=-64.691667; eastlimit=101.821667; northlimit=-64.691667

text: westlimit=109.998333; southlimit=-61.001667; eastlimit=109.998333; northlimit=-61.001667

text: westlimit=105.013333; southlimit=-64.333333; eastlimit=105.013333; northlimit=-64.333333

text: westlimit=104.94; southlimit=-62.306667; eastlimit=104.94; northlimit=-62.306667

text: westlimit=99.97; southlimit=-61.656667; eastlimit=99.97; northlimit=-61.656667

text: westlimit=119.971667; southlimit=-61.025; eastlimit=119.971667; northlimit=-61.025

text: westlimit=115.0; southlimit=-63.66; eastlimit=115.0; northlimit=-63.66

text: westlimit=105.046667; southlimit=-64.888333; eastlimit=105.046667; northlimit=-64.888333

text: westlimit=114.51; southlimit=-64.471667; eastlimit=114.51; northlimit=-64.471667

text: westlimit=114.406667; southlimit=-64.523333; eastlimit=114.406667; northlimit=-64.523333

text: westlimit=115.563333; southlimit=-64.93; eastlimit=115.563333; northlimit=-64.93

text: westlimit=120.005; southlimit=-63.718333; eastlimit=120.005; northlimit=-63.718333

text: westlimit=115.003333; southlimit=-61.673333; eastlimit=115.003333; northlimit=-61.673333

Subjects
oceans |

User Contributed Tags    

Login to tag this record with meaningful keywords to make it easier to discover

Other Information
Oxygen uptake, ammonia excretion and phosphate excretion by krill and other antarctic zooplankton in relation to their body size and chemical composition: Ikeda T and Mitchell AW (1982) Oxygen uptake, ammonia excretion and phosphate excretion by krill and other antarctic zooplankton in relation to their body size and chemical composition. Marine Biology 71: 283-298.

local : articleId=2348

Identifiers
  • global : 868e5236-b8d8-4d35-a586-f34f870b0711
ACN 633 798 857