Linking taxonomy and environmental 18S-rRNA-gene sequencing of Baltic Sea protists
Protists are unicellular eukaryotes. Some protistan species may be impossible to distinguish under the light or even electron microscope, and a complete balanced study of protistan taxonomy requires molecular analysis and light and electron microscopy. One of the main applications of taxonomic work...
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Other Authors: | , , , , , |
Format: | Doctoral or Postdoctoral Thesis |
Language: | English |
Published: |
Helsingin yliopisto
2013
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Subjects: | |
Online Access: | http://hdl.handle.net/10138/39062 |
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author | Majaneva, Markus |
author2 | Gabrielsen, Tove University of Helsinki, Faculty of Biological and Environmental Sciences, Department of Environmental Sciences Helsingin yliopisto, bio- ja ympäristötieteellinen tiedekunta, ympäristötieteiden laitos Helsingfors universitet, bio- och miljövetenskapliga fakulteten, miljövetenskapliga institutionen Blomster, Jaanika Kuosa, Harri |
author_facet | Majaneva, Markus |
author_sort | Majaneva, Markus |
collection | HELDA – University of Helsinki Open Repository |
description | Protists are unicellular eukaryotes. Some protistan species may be impossible to distinguish under the light or even electron microscope, and a complete balanced study of protistan taxonomy requires molecular analysis and light and electron microscopy. One of the main applications of taxonomic work is the assessment of diversity of organisms in an ecosystem. However, uncertainty in taxonomic precision undermines the diversity measures. DNA sequence data provide assistance since they are easily transformed to numbers that can be compared systematically and in a similar way throughout the eukaryotic domain, using sequence similarity to define operational taxonomic units (OTUs). DNA-based assessment of diversity is called environmental sequencing. The most commonly used gene in the environmental gene sequencing for eukaryotes and also in the protistan taxonomic studies has been the small subunit (18S) ribosomal RNA gene of the ribosomal operon. Also, internal transcribed spacers (ITS) are used. The studies in this thesis were conducted with Baltic Sea protists. The Baltic Sea is a subarctic brackish-water basin that partially freezes over every winter. If the salinity of parent water is higher than 0.6, the forming ice has a semi-solid structure with solid ice crystals and saline water (brine) channels. The brine channels offer habitats for small-sized organisms. Due to the low salinity of the Baltic Sea, the brine channels are small, and therefore, the Baltic Sea ice eukaryotic community is dominated by protists. Studies on Baltic sea-ice biology have been accumulating since the 1980 s, but there are still gaps on knowledge; for example, what protistan species and how many there are associated with sea ice. In this thesis, morphological, molecular and ecological information was combined to delineate species of a Baltic Sea cryptomonad, haptophyte and dinoflagellate. Protistan community composition in Baltic Sea ice was assessed with environmental sequencing, and diversity estimates were compared in different types ... |
format | Doctoral or Postdoctoral Thesis |
genre | Sea ice Subarctic |
genre_facet | Sea ice Subarctic |
id | ftunivhelsihelda:oai:helda.helsinki.fi:10138/39062 |
institution | Open Polar |
language | English |
op_collection_id | ftunivhelsihelda |
op_relation | URN:ISBN:978-952-67851-3-4 Helsinki: Walter and Andrée de Nottbeck Foundation, 2013, Walter and Andrée de Nottbeck Foundation Scientific Reports. 0358-6758 http://hdl.handle.net/10138/39062 URN:ISBN:978-952-67851-4-1 |
op_rights | Julkaisu on tekijänoikeussäännösten alainen. Teosta voi lukea ja tulostaa henkilökohtaista käyttöä varten. Käyttö kaupallisiin tarkoituksiin on kielletty. This publication is copyrighted. You may download, display and print it for Your own personal use. Commercial use is prohibited. Publikationen är skyddad av upphovsrätten. Den får läsas och skrivas ut för personligt bruk. Användning i kommersiellt syfte är förbjuden. |
publishDate | 2013 |
publisher | Helsingin yliopisto |
record_format | openpolar |
spelling | ftunivhelsihelda:oai:helda.helsinki.fi:10138/39062 2025-01-17T00:43:48+00:00 Linking taxonomy and environmental 18S-rRNA-gene sequencing of Baltic Sea protists Minkälaisia alkueliöitä Itämeren vedessä ja jäässä elää ja kuinka alkueliöiden lajirunsautta voidaan arvioida? Majaneva, Markus Gabrielsen, Tove University of Helsinki, Faculty of Biological and Environmental Sciences, Department of Environmental Sciences Helsingin yliopisto, bio- ja ympäristötieteellinen tiedekunta, ympäristötieteiden laitos Helsingfors universitet, bio- och miljövetenskapliga fakulteten, miljövetenskapliga institutionen Blomster, Jaanika Kuosa, Harri 2013-05-08T13:16:16Z application/pdf http://hdl.handle.net/10138/39062 eng eng Helsingin yliopisto Helsingfors universitet University of Helsinki URN:ISBN:978-952-67851-3-4 Helsinki: Walter and Andrée de Nottbeck Foundation, 2013, Walter and Andrée de Nottbeck Foundation Scientific Reports. 0358-6758 http://hdl.handle.net/10138/39062 URN:ISBN:978-952-67851-4-1 Julkaisu on tekijänoikeussäännösten alainen. Teosta voi lukea ja tulostaa henkilökohtaista käyttöä varten. Käyttö kaupallisiin tarkoituksiin on kielletty. This publication is copyrighted. You may download, display and print it for Your own personal use. Commercial use is prohibited. Publikationen är skyddad av upphovsrätten. Den får läsas och skrivas ut för personligt bruk. Användning i kommersiellt syfte är förbjuden. akvaattiset tieteet Text Doctoral dissertation (article-based) Artikkeliväitöskirja Artikelavhandling doctoralThesis 2013 ftunivhelsihelda 2023-07-28T06:29:29Z Protists are unicellular eukaryotes. Some protistan species may be impossible to distinguish under the light or even electron microscope, and a complete balanced study of protistan taxonomy requires molecular analysis and light and electron microscopy. One of the main applications of taxonomic work is the assessment of diversity of organisms in an ecosystem. However, uncertainty in taxonomic precision undermines the diversity measures. DNA sequence data provide assistance since they are easily transformed to numbers that can be compared systematically and in a similar way throughout the eukaryotic domain, using sequence similarity to define operational taxonomic units (OTUs). DNA-based assessment of diversity is called environmental sequencing. The most commonly used gene in the environmental gene sequencing for eukaryotes and also in the protistan taxonomic studies has been the small subunit (18S) ribosomal RNA gene of the ribosomal operon. Also, internal transcribed spacers (ITS) are used. The studies in this thesis were conducted with Baltic Sea protists. The Baltic Sea is a subarctic brackish-water basin that partially freezes over every winter. If the salinity of parent water is higher than 0.6, the forming ice has a semi-solid structure with solid ice crystals and saline water (brine) channels. The brine channels offer habitats for small-sized organisms. Due to the low salinity of the Baltic Sea, the brine channels are small, and therefore, the Baltic Sea ice eukaryotic community is dominated by protists. Studies on Baltic sea-ice biology have been accumulating since the 1980 s, but there are still gaps on knowledge; for example, what protistan species and how many there are associated with sea ice. In this thesis, morphological, molecular and ecological information was combined to delineate species of a Baltic Sea cryptomonad, haptophyte and dinoflagellate. Protistan community composition in Baltic Sea ice was assessed with environmental sequencing, and diversity estimates were compared in different types ... Doctoral or Postdoctoral Thesis Sea ice Subarctic HELDA – University of Helsinki Open Repository |
spellingShingle | akvaattiset tieteet Majaneva, Markus Linking taxonomy and environmental 18S-rRNA-gene sequencing of Baltic Sea protists |
title | Linking taxonomy and environmental 18S-rRNA-gene sequencing of Baltic Sea protists |
title_full | Linking taxonomy and environmental 18S-rRNA-gene sequencing of Baltic Sea protists |
title_fullStr | Linking taxonomy and environmental 18S-rRNA-gene sequencing of Baltic Sea protists |
title_full_unstemmed | Linking taxonomy and environmental 18S-rRNA-gene sequencing of Baltic Sea protists |
title_short | Linking taxonomy and environmental 18S-rRNA-gene sequencing of Baltic Sea protists |
title_sort | linking taxonomy and environmental 18s-rrna-gene sequencing of baltic sea protists |
topic | akvaattiset tieteet |
topic_facet | akvaattiset tieteet |
url | http://hdl.handle.net/10138/39062 |