Diversity, abundance and fate of ice algae and phytoplankton in the Bering Sea

Thesis (M.S.) University of Alaska Fairbanks, 2014 Sea ice algae are an essential part of Arctic and subarctic ecosystems. They significantly contribute to total algal primary production, serve as an early spring food source for both pelagic and benthic biota, and can seed the spring phytoplankton b...

Full description

Bibliographic Details
Main Author: Szymanski, Anna
Other Authors: Gradinger, Rolf, Iken, Katrin, Collins, R. Eric
Format: Thesis
Language:English
Published: 2014
Subjects:
Online Access:http://hdl.handle.net/11122/4824
id ftunivalaska:oai:scholarworks.alaska.edu:11122/4824
record_format openpolar
spelling ftunivalaska:oai:scholarworks.alaska.edu:11122/4824 2023-05-15T15:02:18+02:00 Diversity, abundance and fate of ice algae and phytoplankton in the Bering Sea Szymanski, Anna Gradinger, Rolf Iken, Katrin Collins, R. Eric 2014-12 http://hdl.handle.net/11122/4824 en_US eng http://hdl.handle.net/11122/4824 Marine Science and Limnology Thesis ms 2014 ftunivalaska 2023-02-23T21:36:17Z Thesis (M.S.) University of Alaska Fairbanks, 2014 Sea ice algae are an essential part of Arctic and subarctic ecosystems. They significantly contribute to total algal primary production, serve as an early spring food source for both pelagic and benthic biota, and can seed the spring phytoplankton bloom during periods of ice melt. In the subarctic Bering Sea, virtually nothing has been known about the composition of the ice algal community, its magnitude, and its connection to pelagic and benthic ecosystems. This study, therefore, focused on the diversity, abundance, and ultimate fate of ice algae in the Bering Sea using sea ice, water and sub-ice sediment trap samples collected during two spring periods: ice growth (March to mid-April) and ice melt (mid-April to May) in 2008 and 2009. Ice algal species composition was comparable to those in Arctic regions. The phytoplankton species inventory was similar to that found in the overlying ice, suggesting that the spring phytoplankton were seeded from the ice algae. Algal abundance in the ice was on average three orders of magnitude higher than in the water column throughout both periods, as the extensive Bering Sea ice cover in 2008-2009 delayed the phytoplankton bloom. There was a substantial increase in the vertical flux of algal cells beneath the ice during the period of ice melt, but measurable amounts appeared as early as mid-March. The majority of this flux was composed of healthy algal cells, making it a rich food source for benthic organisms. Differences in the relative species composition between ice and trap samples indicate that algal fate was influenced by the species specific sinking rate of algal cells, among other factors, in the water column. In conclusion, ice algae in the Bering Sea are diverse and abundant, and contribute to both pelagic and benthic systems. Thesis Arctic Bering Sea ice algae Phytoplankton Sea ice Subarctic Alaska University of Alaska: ScholarWorks@UA Arctic Bering Sea Fairbanks
institution Open Polar
collection University of Alaska: ScholarWorks@UA
op_collection_id ftunivalaska
language English
description Thesis (M.S.) University of Alaska Fairbanks, 2014 Sea ice algae are an essential part of Arctic and subarctic ecosystems. They significantly contribute to total algal primary production, serve as an early spring food source for both pelagic and benthic biota, and can seed the spring phytoplankton bloom during periods of ice melt. In the subarctic Bering Sea, virtually nothing has been known about the composition of the ice algal community, its magnitude, and its connection to pelagic and benthic ecosystems. This study, therefore, focused on the diversity, abundance, and ultimate fate of ice algae in the Bering Sea using sea ice, water and sub-ice sediment trap samples collected during two spring periods: ice growth (March to mid-April) and ice melt (mid-April to May) in 2008 and 2009. Ice algal species composition was comparable to those in Arctic regions. The phytoplankton species inventory was similar to that found in the overlying ice, suggesting that the spring phytoplankton were seeded from the ice algae. Algal abundance in the ice was on average three orders of magnitude higher than in the water column throughout both periods, as the extensive Bering Sea ice cover in 2008-2009 delayed the phytoplankton bloom. There was a substantial increase in the vertical flux of algal cells beneath the ice during the period of ice melt, but measurable amounts appeared as early as mid-March. The majority of this flux was composed of healthy algal cells, making it a rich food source for benthic organisms. Differences in the relative species composition between ice and trap samples indicate that algal fate was influenced by the species specific sinking rate of algal cells, among other factors, in the water column. In conclusion, ice algae in the Bering Sea are diverse and abundant, and contribute to both pelagic and benthic systems.
author2 Gradinger, Rolf
Iken, Katrin
Collins, R. Eric
format Thesis
author Szymanski, Anna
spellingShingle Szymanski, Anna
Diversity, abundance and fate of ice algae and phytoplankton in the Bering Sea
author_facet Szymanski, Anna
author_sort Szymanski, Anna
title Diversity, abundance and fate of ice algae and phytoplankton in the Bering Sea
title_short Diversity, abundance and fate of ice algae and phytoplankton in the Bering Sea
title_full Diversity, abundance and fate of ice algae and phytoplankton in the Bering Sea
title_fullStr Diversity, abundance and fate of ice algae and phytoplankton in the Bering Sea
title_full_unstemmed Diversity, abundance and fate of ice algae and phytoplankton in the Bering Sea
title_sort diversity, abundance and fate of ice algae and phytoplankton in the bering sea
publishDate 2014
url http://hdl.handle.net/11122/4824
geographic Arctic
Bering Sea
Fairbanks
geographic_facet Arctic
Bering Sea
Fairbanks
genre Arctic
Bering Sea
ice algae
Phytoplankton
Sea ice
Subarctic
Alaska
genre_facet Arctic
Bering Sea
ice algae
Phytoplankton
Sea ice
Subarctic
Alaska
op_relation http://hdl.handle.net/11122/4824
Marine Science and Limnology
_version_ 1766334274782363648