Distribution and ecology of Pseudo-nitzschia species (Bacillariophyceae) in surface waters of the Weddell Sea (Antarctica)

The distribution of six Pseudo-nitzschia species and their relationship with environmental conditions were studied for the first time in a vast zone of the Weddell Sea (∼61-77°S, Antarctica). Both qualitative and quantitative phytoplankton samples, collected during summer 2004, were examined using l...

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Language:unknown
Published: 2008
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Online Access:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_07224060_v31_n4_p429_Almandoz
https://hdl.handle.net/20.500.12110/paper_07224060_v31_n4_p429_Almandoz
id ftunibueairesbd:paper:paper_07224060_v31_n4_p429_Almandoz
record_format openpolar
spelling ftunibueairesbd:paper:paper_07224060_v31_n4_p429_Almandoz 2023-05-15T13:51:25+02:00 Distribution and ecology of Pseudo-nitzschia species (Bacillariophyceae) in surface waters of the Weddell Sea (Antarctica) 2008 https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_07224060_v31_n4_p429_Almandoz https://hdl.handle.net/20.500.12110/paper_07224060_v31_n4_p429_Almandoz unknown https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_07224060_v31_n4_p429_Almandoz http://hdl.handle.net/20.500.12110/paper_07224060_v31_n4_p429_Almandoz Antarctica Diatoms Phytoplankton distribution Pseudo-nitzschia Weddell Sea abundance community composition confluence diatom ecology environmental conditions flagellate ice cover morphology morphometry phytoplankton spatial distribution species-area relationship surface water Atlantic Ocean Scotia Sea Southern Ocean Bacillariophyceae Bacillariophyta Mastigophora (flagellates) 2008 ftunibueairesbd https://doi.org/20.500.12110/paper_07224060_v31_n4_p429_Almandoz 2023-02-16T02:14:48Z The distribution of six Pseudo-nitzschia species and their relationship with environmental conditions were studied for the first time in a vast zone of the Weddell Sea (∼61-77°S, Antarctica). Both qualitative and quantitative phytoplankton samples, collected during summer 2004, were examined using light and scanning electron microscopy. Phytoplankton abundance and composition showed great variability along our study area. Diatoms were the most conspicuous phytoplankton group in the northern area while small flagellates were generally dominant in the southern stations. The genus Pseudo-nitzschia was broadly distributed and significantly contributed to total diatom densities. A marked contrast in Pseudo-nitzschia species distribution was observed in three main zones divided by the Weddell Front (WF) and the Antarctic Slope Front (ASF). P. subcurvata and P. turgiduloides were the most abundant species in the neritic Weddell Sea zone, south of the ASF, mainly near the ice-edge in shallower waters and in conditions of long photoperiod. In contrast, P. prolongatoides and P. lineola dominated north of the ASF; the first was associated with deeper and nutrient-rich waters whereas the latter showed a weak relation with environmental variables examined. Finally, P. turgidula and P. heimii were mostly observed in the Weddell-Scotia Confluence Zone in the warmest and far from ice covered waters, north of the WF. A brief morphological Pseudo-nitzschia species description is given in the Appendix, including morphometrics and pictures. © 2007 Springer-Verlag. Other/Unknown Material Antarc* Antarctic Antarctica Scotia Sea Southern Ocean Weddell Sea ice covered waters Biblioteca Digital FCEN-UBA (Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires) Antarctic Scotia Sea Southern Ocean The Antarctic Weddell Weddell Sea
institution Open Polar
collection Biblioteca Digital FCEN-UBA (Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires)
op_collection_id ftunibueairesbd
language unknown
topic Antarctica
Diatoms
Phytoplankton distribution
Pseudo-nitzschia
Weddell Sea
abundance
community composition
confluence
diatom
ecology
environmental conditions
flagellate
ice cover
morphology
morphometry
phytoplankton
spatial distribution
species-area relationship
surface water
Atlantic Ocean
Scotia Sea
Southern Ocean
Bacillariophyceae
Bacillariophyta
Mastigophora (flagellates)
spellingShingle Antarctica
Diatoms
Phytoplankton distribution
Pseudo-nitzschia
Weddell Sea
abundance
community composition
confluence
diatom
ecology
environmental conditions
flagellate
ice cover
morphology
morphometry
phytoplankton
spatial distribution
species-area relationship
surface water
Atlantic Ocean
Scotia Sea
Southern Ocean
Bacillariophyceae
Bacillariophyta
Mastigophora (flagellates)
Distribution and ecology of Pseudo-nitzschia species (Bacillariophyceae) in surface waters of the Weddell Sea (Antarctica)
topic_facet Antarctica
Diatoms
Phytoplankton distribution
Pseudo-nitzschia
Weddell Sea
abundance
community composition
confluence
diatom
ecology
environmental conditions
flagellate
ice cover
morphology
morphometry
phytoplankton
spatial distribution
species-area relationship
surface water
Atlantic Ocean
Scotia Sea
Southern Ocean
Bacillariophyceae
Bacillariophyta
Mastigophora (flagellates)
description The distribution of six Pseudo-nitzschia species and their relationship with environmental conditions were studied for the first time in a vast zone of the Weddell Sea (∼61-77°S, Antarctica). Both qualitative and quantitative phytoplankton samples, collected during summer 2004, were examined using light and scanning electron microscopy. Phytoplankton abundance and composition showed great variability along our study area. Diatoms were the most conspicuous phytoplankton group in the northern area while small flagellates were generally dominant in the southern stations. The genus Pseudo-nitzschia was broadly distributed and significantly contributed to total diatom densities. A marked contrast in Pseudo-nitzschia species distribution was observed in three main zones divided by the Weddell Front (WF) and the Antarctic Slope Front (ASF). P. subcurvata and P. turgiduloides were the most abundant species in the neritic Weddell Sea zone, south of the ASF, mainly near the ice-edge in shallower waters and in conditions of long photoperiod. In contrast, P. prolongatoides and P. lineola dominated north of the ASF; the first was associated with deeper and nutrient-rich waters whereas the latter showed a weak relation with environmental variables examined. Finally, P. turgidula and P. heimii were mostly observed in the Weddell-Scotia Confluence Zone in the warmest and far from ice covered waters, north of the WF. A brief morphological Pseudo-nitzschia species description is given in the Appendix, including morphometrics and pictures. © 2007 Springer-Verlag.
title Distribution and ecology of Pseudo-nitzschia species (Bacillariophyceae) in surface waters of the Weddell Sea (Antarctica)
title_short Distribution and ecology of Pseudo-nitzschia species (Bacillariophyceae) in surface waters of the Weddell Sea (Antarctica)
title_full Distribution and ecology of Pseudo-nitzschia species (Bacillariophyceae) in surface waters of the Weddell Sea (Antarctica)
title_fullStr Distribution and ecology of Pseudo-nitzschia species (Bacillariophyceae) in surface waters of the Weddell Sea (Antarctica)
title_full_unstemmed Distribution and ecology of Pseudo-nitzschia species (Bacillariophyceae) in surface waters of the Weddell Sea (Antarctica)
title_sort distribution and ecology of pseudo-nitzschia species (bacillariophyceae) in surface waters of the weddell sea (antarctica)
publishDate 2008
url https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_07224060_v31_n4_p429_Almandoz
https://hdl.handle.net/20.500.12110/paper_07224060_v31_n4_p429_Almandoz
geographic Antarctic
Scotia Sea
Southern Ocean
The Antarctic
Weddell
Weddell Sea
geographic_facet Antarctic
Scotia Sea
Southern Ocean
The Antarctic
Weddell
Weddell Sea
genre Antarc*
Antarctic
Antarctica
Scotia Sea
Southern Ocean
Weddell Sea
ice covered waters
genre_facet Antarc*
Antarctic
Antarctica
Scotia Sea
Southern Ocean
Weddell Sea
ice covered waters
op_relation https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_07224060_v31_n4_p429_Almandoz
http://hdl.handle.net/20.500.12110/paper_07224060_v31_n4_p429_Almandoz
op_doi https://doi.org/20.500.12110/paper_07224060_v31_n4_p429_Almandoz
_version_ 1766255269929549824