Abundance of Cnidaria and Ctenophora in the North Atlantic sampled during the G. O. Sars Cruise in May 2013
In recent years a global increase in jellyfish (i.e. Cnidarians and Ctenophores) abundance and a rise in the recurrence of jellyfish outbreak events have been largely debated, but a general consensus on this matter has not been achieved yet. Within this debate, it has been generally recognized that...
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ftpangaea:oai:pangaea.de:doi:10.1594/PANGAEA.828646 2023-05-15T17:06:15+02:00 Abundance of Cnidaria and Ctenophora in the North Atlantic sampled during the G. O. Sars Cruise in May 2013 Licandro, Priscilla Aino, Hosia MEDIAN LATITUDE: 64.431034 * MEDIAN LONGITUDE: -16.505585 * SOUTH-BOUND LATITUDE: 59.380000 * WEST-BOUND LONGITUDE: -46.193125 * NORTH-BOUND LATITUDE: 68.790000 * EAST-BOUND LONGITUDE: 5.070500 * DATE/TIME START: 2013-05-03T18:50:00 * DATE/TIME END: 2013-05-20T18:34:00 * MINIMUM DEPTH, water: 13 m * MAXIMUM DEPTH, water: 900 m 2014-02-05 text/tab-separated-values, 376 data points https://doi.pangaea.de/10.1594/PANGAEA.828646 https://doi.org/10.1594/PANGAEA.828646 en eng PANGAEA https://doi.org/10.1594/PANGAEA.835732 Licandro, Priscilla; Blackett, Michael; Fischer, Astrid; Hosia, Aino; Kennedy, Janelle; Kirby, Richard R; Raab, Kristina; Stern, Robert J; Tranter, Paul (2015): Biogeography of jellyfish in the North Atlantic, by traditional and genomic methods. Earth System Science Data, 7(2), 173-191, https://doi.org/10.5194/essd-7-173-2015 https://doi.pangaea.de/10.1594/PANGAEA.828646 https://doi.org/10.1594/PANGAEA.828646 CC-BY-3.0: Creative Commons Attribution 3.0 Unported Access constraints: unrestricted info:eu-repo/semantics/openAccess CC-BY Basin Scale Analysis Synthesis and Integration Cnidaria Ctenophora Date/Time of event Depth bottom/max top/min water EURO-BASIN Event label G. O. Sars (2003) GS13/107 GS13/107_152_JFN GS13/107_152_MOC GS13/107_154_MOC GS13/107_155_JFN GS13/107_155_MOC GS13/107_157_JFN GS13/107_157_MOC GS13/107_159_JFN GS13/107_160_JFN GS13/107_160_MOC GS13/107_160-2_JFN GS13/107_161_JFN GS13/107_161_MOC GS13/107_162_JFN GS13/107_162_MOC GS13/107_163_JFN GS13/107_163_MOC GS13/107_165_JFN GS13/107_166_JFN GS13/107_167_JFN GS13/107_167_MOC GS13/107_168_JFN GS13/107_168_MOC GS13/107_169_JFN GS13/107_169_MOC GS13/107_170_JFN GS13/107_170_MOC GS13/107_171_JFN GS13/107_171_MOC Jellyfish net JFN Labrador Sea Latitude of event Longitude of event Method/Device of event Dataset 2014 ftpangaea https://doi.org/10.1594/PANGAEA.828646 https://doi.org/10.1594/PANGAEA.835732 https://doi.org/10.5194/essd-7-173-2015 2023-01-20T09:49:12Z In recent years a global increase in jellyfish (i.e. Cnidarians and Ctenophores) abundance and a rise in the recurrence of jellyfish outbreak events have been largely debated, but a general consensus on this matter has not been achieved yet. Within this debate, it has been generally recognized that there is a lack of reliable data that could be analyzed and compared to clarify whether indeed jellyfish are increasing throughout the world ocean as a consequence of anthropogenic impact and hydroclimatic variability. During the G.O. Sars cruise jellyfish were collected at different depths in the 0-1000m layer using a standard 1 m**2 Multiple Opening/Closing Net and Environmental Sensing System (MOCNESS) (quantitative data), Harstad and macroplankton trawls (qualitative data). The comparison of records collected with different nets during the G.O. Sars transatlantic cruise shows that different sampling gears might provide very different information on jellyfish diversity. Indeed, the big trawls mostly collect relatively large scyphozoan and hydrozoan species such as Atolla, Pelagia, Praya, Vogtia, while small hydrozoans (e.g. Clytia, Gilia, Muggiaea) and early stages of ctenophora are only caught by the smaller nets. Dataset Labrador Sea North Atlantic PANGAEA - Data Publisher for Earth & Environmental Science ENVELOPE(-46.193125,5.070500,68.790000,59.380000) |
institution |
Open Polar |
collection |
PANGAEA - Data Publisher for Earth & Environmental Science |
op_collection_id |
ftpangaea |
language |
English |
topic |
Basin Scale Analysis Synthesis and Integration Cnidaria Ctenophora Date/Time of event Depth bottom/max top/min water EURO-BASIN Event label G. O. Sars (2003) GS13/107 GS13/107_152_JFN GS13/107_152_MOC GS13/107_154_MOC GS13/107_155_JFN GS13/107_155_MOC GS13/107_157_JFN GS13/107_157_MOC GS13/107_159_JFN GS13/107_160_JFN GS13/107_160_MOC GS13/107_160-2_JFN GS13/107_161_JFN GS13/107_161_MOC GS13/107_162_JFN GS13/107_162_MOC GS13/107_163_JFN GS13/107_163_MOC GS13/107_165_JFN GS13/107_166_JFN GS13/107_167_JFN GS13/107_167_MOC GS13/107_168_JFN GS13/107_168_MOC GS13/107_169_JFN GS13/107_169_MOC GS13/107_170_JFN GS13/107_170_MOC GS13/107_171_JFN GS13/107_171_MOC Jellyfish net JFN Labrador Sea Latitude of event Longitude of event Method/Device of event |
spellingShingle |
Basin Scale Analysis Synthesis and Integration Cnidaria Ctenophora Date/Time of event Depth bottom/max top/min water EURO-BASIN Event label G. O. Sars (2003) GS13/107 GS13/107_152_JFN GS13/107_152_MOC GS13/107_154_MOC GS13/107_155_JFN GS13/107_155_MOC GS13/107_157_JFN GS13/107_157_MOC GS13/107_159_JFN GS13/107_160_JFN GS13/107_160_MOC GS13/107_160-2_JFN GS13/107_161_JFN GS13/107_161_MOC GS13/107_162_JFN GS13/107_162_MOC GS13/107_163_JFN GS13/107_163_MOC GS13/107_165_JFN GS13/107_166_JFN GS13/107_167_JFN GS13/107_167_MOC GS13/107_168_JFN GS13/107_168_MOC GS13/107_169_JFN GS13/107_169_MOC GS13/107_170_JFN GS13/107_170_MOC GS13/107_171_JFN GS13/107_171_MOC Jellyfish net JFN Labrador Sea Latitude of event Longitude of event Method/Device of event Licandro, Priscilla Aino, Hosia Abundance of Cnidaria and Ctenophora in the North Atlantic sampled during the G. O. Sars Cruise in May 2013 |
topic_facet |
Basin Scale Analysis Synthesis and Integration Cnidaria Ctenophora Date/Time of event Depth bottom/max top/min water EURO-BASIN Event label G. O. Sars (2003) GS13/107 GS13/107_152_JFN GS13/107_152_MOC GS13/107_154_MOC GS13/107_155_JFN GS13/107_155_MOC GS13/107_157_JFN GS13/107_157_MOC GS13/107_159_JFN GS13/107_160_JFN GS13/107_160_MOC GS13/107_160-2_JFN GS13/107_161_JFN GS13/107_161_MOC GS13/107_162_JFN GS13/107_162_MOC GS13/107_163_JFN GS13/107_163_MOC GS13/107_165_JFN GS13/107_166_JFN GS13/107_167_JFN GS13/107_167_MOC GS13/107_168_JFN GS13/107_168_MOC GS13/107_169_JFN GS13/107_169_MOC GS13/107_170_JFN GS13/107_170_MOC GS13/107_171_JFN GS13/107_171_MOC Jellyfish net JFN Labrador Sea Latitude of event Longitude of event Method/Device of event |
description |
In recent years a global increase in jellyfish (i.e. Cnidarians and Ctenophores) abundance and a rise in the recurrence of jellyfish outbreak events have been largely debated, but a general consensus on this matter has not been achieved yet. Within this debate, it has been generally recognized that there is a lack of reliable data that could be analyzed and compared to clarify whether indeed jellyfish are increasing throughout the world ocean as a consequence of anthropogenic impact and hydroclimatic variability. During the G.O. Sars cruise jellyfish were collected at different depths in the 0-1000m layer using a standard 1 m**2 Multiple Opening/Closing Net and Environmental Sensing System (MOCNESS) (quantitative data), Harstad and macroplankton trawls (qualitative data). The comparison of records collected with different nets during the G.O. Sars transatlantic cruise shows that different sampling gears might provide very different information on jellyfish diversity. Indeed, the big trawls mostly collect relatively large scyphozoan and hydrozoan species such as Atolla, Pelagia, Praya, Vogtia, while small hydrozoans (e.g. Clytia, Gilia, Muggiaea) and early stages of ctenophora are only caught by the smaller nets. |
format |
Dataset |
author |
Licandro, Priscilla Aino, Hosia |
author_facet |
Licandro, Priscilla Aino, Hosia |
author_sort |
Licandro, Priscilla |
title |
Abundance of Cnidaria and Ctenophora in the North Atlantic sampled during the G. O. Sars Cruise in May 2013 |
title_short |
Abundance of Cnidaria and Ctenophora in the North Atlantic sampled during the G. O. Sars Cruise in May 2013 |
title_full |
Abundance of Cnidaria and Ctenophora in the North Atlantic sampled during the G. O. Sars Cruise in May 2013 |
title_fullStr |
Abundance of Cnidaria and Ctenophora in the North Atlantic sampled during the G. O. Sars Cruise in May 2013 |
title_full_unstemmed |
Abundance of Cnidaria and Ctenophora in the North Atlantic sampled during the G. O. Sars Cruise in May 2013 |
title_sort |
abundance of cnidaria and ctenophora in the north atlantic sampled during the g. o. sars cruise in may 2013 |
publisher |
PANGAEA |
publishDate |
2014 |
url |
https://doi.pangaea.de/10.1594/PANGAEA.828646 https://doi.org/10.1594/PANGAEA.828646 |
op_coverage |
MEDIAN LATITUDE: 64.431034 * MEDIAN LONGITUDE: -16.505585 * SOUTH-BOUND LATITUDE: 59.380000 * WEST-BOUND LONGITUDE: -46.193125 * NORTH-BOUND LATITUDE: 68.790000 * EAST-BOUND LONGITUDE: 5.070500 * DATE/TIME START: 2013-05-03T18:50:00 * DATE/TIME END: 2013-05-20T18:34:00 * MINIMUM DEPTH, water: 13 m * MAXIMUM DEPTH, water: 900 m |
long_lat |
ENVELOPE(-46.193125,5.070500,68.790000,59.380000) |
genre |
Labrador Sea North Atlantic |
genre_facet |
Labrador Sea North Atlantic |
op_relation |
https://doi.org/10.1594/PANGAEA.835732 Licandro, Priscilla; Blackett, Michael; Fischer, Astrid; Hosia, Aino; Kennedy, Janelle; Kirby, Richard R; Raab, Kristina; Stern, Robert J; Tranter, Paul (2015): Biogeography of jellyfish in the North Atlantic, by traditional and genomic methods. Earth System Science Data, 7(2), 173-191, https://doi.org/10.5194/essd-7-173-2015 https://doi.pangaea.de/10.1594/PANGAEA.828646 https://doi.org/10.1594/PANGAEA.828646 |
op_rights |
CC-BY-3.0: Creative Commons Attribution 3.0 Unported Access constraints: unrestricted info:eu-repo/semantics/openAccess |
op_rightsnorm |
CC-BY |
op_doi |
https://doi.org/10.1594/PANGAEA.828646 https://doi.org/10.1594/PANGAEA.835732 https://doi.org/10.5194/essd-7-173-2015 |
_version_ |
1766061285486624768 |