Zooplankton diel vertical migration during Antarctic summer

Zooplankton diel vertical migration (DVM) during summer in the polar oceans is presumed to be dampened due to near continuous daylight. We analyzed zooplankton diel vertical distribution patterns in a wide range of taxa along the Western Antarctic Peninsula (WAP) to assess if DVM occurs, and if so,...

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Main Authors: Conroy, John A., Steinberg, Deborah K., Thibodeau, Patrica S., Schofield, Oscar
Format: Text
Language:unknown
Published: W&M ScholarWorks 2020
Subjects:
Online Access:https://scholarworks.wm.edu/vimsarticles/1931
https://doi.org/10.1016/j.dsr.2020.103324;
https://scholarworks.wm.edu/context/vimsarticles/article/2930/viewcontent/Conroy_etal_DeepSeaResearch_Zooplankton_Diel_Vertical_Migration2020.pdf
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record_format openpolar
spelling ftwilliammarycol:oai:scholarworks.wm.edu:vimsarticles-2930 2023-06-11T04:06:25+02:00 Zooplankton diel vertical migration during Antarctic summer Conroy, John A. Steinberg, Deborah K. Thibodeau, Patrica S. Schofield, Oscar 2020-06-05T07:00:00Z application/pdf https://scholarworks.wm.edu/vimsarticles/1931 https://doi.org/10.1016/j.dsr.2020.103324; https://scholarworks.wm.edu/context/vimsarticles/article/2930/viewcontent/Conroy_etal_DeepSeaResearch_Zooplankton_Diel_Vertical_Migration2020.pdf unknown W&M ScholarWorks https://scholarworks.wm.edu/vimsarticles/1931 doi: https://doi.org/10.1016/j.dsr.2020.103324 https://scholarworks.wm.edu/context/vimsarticles/article/2930/viewcontent/Conroy_etal_DeepSeaResearch_Zooplankton_Diel_Vertical_Migration2020.pdf VIMS Articles Southern Ocean Mesopelagic zone Copepod Krill Salp Pteropod Biological Sciences Peer-Reviewed Articles Marine Biology Oceanography text 2020 ftwilliammarycol https://doi.org/10.1016/j.dsr.2020.103324;10.1016/j.dsr.2020.103324 2023-05-04T17:46:50Z Zooplankton diel vertical migration (DVM) during summer in the polar oceans is presumed to be dampened due to near continuous daylight. We analyzed zooplankton diel vertical distribution patterns in a wide range of taxa along the Western Antarctic Peninsula (WAP) to assess if DVM occurs, and if so, what environmental controls modulate DVM in the austral summer. Zooplankton were collected during January and February in paired day-night, depth-stratified tows through the mesopelagic zone along the WAP from 2009-2017, as well as in day and night epipelagic net tows from 1993-2017. The copepod Metridia gerlachei, salp Salpa thompsoni, pteropod Limacina helicina antarctica, and ostracods consistently conducted DVM between the mesopelagic and epipelagic zones. Migration distance for M. gerlachei and ostracods decreased as photoperiod increased from 17 to 22 h daylight. The copepods Calanoides acutus and Rhincalanus gigas, as well as euphausiids Thysanoessa macrura and Euphausia crystallorophias, conducted shallow (mostly within the epipelagic zone) DVMs into the upper 50 m at night. Rhincalanus gigas, T. macrura, and L. h. antarctica DVM behavior was modulated by chlorophyll a concentration, mixed layer depth, and depth of the subsurface chlorophyll a maximum, respectively. Carnivorous and detritivorous taxa – including the calanoid copepod Paraeuchaeta antarctica, ostracods, chaetognaths, and Tomopteris spp. polychaetes – as well as seasonally migrating copepods, were most abundant in the mesopelagic zone regardless of the diel cycle. Paraeuchaeta antarctica underwent reverse DVM within the top 100 m. The impacts of Antarctic zooplankton summer DVM and the resident mesopelagic assemblage on carbon export should be better quantified. Text Antarc* Antarctic Antarctic Peninsula Antarctica Limacina helicina Southern Ocean Thysanoessa macrura Copepods W&M ScholarWorks Antarctic Southern Ocean Antarctic Peninsula Austral
institution Open Polar
collection W&M ScholarWorks
op_collection_id ftwilliammarycol
language unknown
topic Southern Ocean
Mesopelagic zone
Copepod
Krill
Salp
Pteropod
Biological Sciences Peer-Reviewed Articles
Marine Biology
Oceanography
spellingShingle Southern Ocean
Mesopelagic zone
Copepod
Krill
Salp
Pteropod
Biological Sciences Peer-Reviewed Articles
Marine Biology
Oceanography
Conroy, John A.
Steinberg, Deborah K.
Thibodeau, Patrica S.
Schofield, Oscar
Zooplankton diel vertical migration during Antarctic summer
topic_facet Southern Ocean
Mesopelagic zone
Copepod
Krill
Salp
Pteropod
Biological Sciences Peer-Reviewed Articles
Marine Biology
Oceanography
description Zooplankton diel vertical migration (DVM) during summer in the polar oceans is presumed to be dampened due to near continuous daylight. We analyzed zooplankton diel vertical distribution patterns in a wide range of taxa along the Western Antarctic Peninsula (WAP) to assess if DVM occurs, and if so, what environmental controls modulate DVM in the austral summer. Zooplankton were collected during January and February in paired day-night, depth-stratified tows through the mesopelagic zone along the WAP from 2009-2017, as well as in day and night epipelagic net tows from 1993-2017. The copepod Metridia gerlachei, salp Salpa thompsoni, pteropod Limacina helicina antarctica, and ostracods consistently conducted DVM between the mesopelagic and epipelagic zones. Migration distance for M. gerlachei and ostracods decreased as photoperiod increased from 17 to 22 h daylight. The copepods Calanoides acutus and Rhincalanus gigas, as well as euphausiids Thysanoessa macrura and Euphausia crystallorophias, conducted shallow (mostly within the epipelagic zone) DVMs into the upper 50 m at night. Rhincalanus gigas, T. macrura, and L. h. antarctica DVM behavior was modulated by chlorophyll a concentration, mixed layer depth, and depth of the subsurface chlorophyll a maximum, respectively. Carnivorous and detritivorous taxa – including the calanoid copepod Paraeuchaeta antarctica, ostracods, chaetognaths, and Tomopteris spp. polychaetes – as well as seasonally migrating copepods, were most abundant in the mesopelagic zone regardless of the diel cycle. Paraeuchaeta antarctica underwent reverse DVM within the top 100 m. The impacts of Antarctic zooplankton summer DVM and the resident mesopelagic assemblage on carbon export should be better quantified.
format Text
author Conroy, John A.
Steinberg, Deborah K.
Thibodeau, Patrica S.
Schofield, Oscar
author_facet Conroy, John A.
Steinberg, Deborah K.
Thibodeau, Patrica S.
Schofield, Oscar
author_sort Conroy, John A.
title Zooplankton diel vertical migration during Antarctic summer
title_short Zooplankton diel vertical migration during Antarctic summer
title_full Zooplankton diel vertical migration during Antarctic summer
title_fullStr Zooplankton diel vertical migration during Antarctic summer
title_full_unstemmed Zooplankton diel vertical migration during Antarctic summer
title_sort zooplankton diel vertical migration during antarctic summer
publisher W&M ScholarWorks
publishDate 2020
url https://scholarworks.wm.edu/vimsarticles/1931
https://doi.org/10.1016/j.dsr.2020.103324;
https://scholarworks.wm.edu/context/vimsarticles/article/2930/viewcontent/Conroy_etal_DeepSeaResearch_Zooplankton_Diel_Vertical_Migration2020.pdf
geographic Antarctic
Southern Ocean
Antarctic Peninsula
Austral
geographic_facet Antarctic
Southern Ocean
Antarctic Peninsula
Austral
genre Antarc*
Antarctic
Antarctic Peninsula
Antarctica
Limacina helicina
Southern Ocean
Thysanoessa macrura
Copepods
genre_facet Antarc*
Antarctic
Antarctic Peninsula
Antarctica
Limacina helicina
Southern Ocean
Thysanoessa macrura
Copepods
op_source VIMS Articles
op_relation https://scholarworks.wm.edu/vimsarticles/1931
doi: https://doi.org/10.1016/j.dsr.2020.103324
https://scholarworks.wm.edu/context/vimsarticles/article/2930/viewcontent/Conroy_etal_DeepSeaResearch_Zooplankton_Diel_Vertical_Migration2020.pdf
op_doi https://doi.org/10.1016/j.dsr.2020.103324;10.1016/j.dsr.2020.103324
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