Soil fauna communities and microbial respiration in high Arctic tundra soils at Zackenberg, Northeast Greenland

Udgivelsesdato: February, 2006 The soil fauna communities were described for three dominant vegetation types in a high arctic site at Zackenberg, Northeast Greenland. Soil samples were extracted to quantify the densities of mites, collembolans, enchytraeids, diptera larvae, nematodes and protozoa. R...

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Published in:Polar Biology
Main Authors: Sørensen, Louise I., Holmstrup, Martin, Maraldo, Kristine, Christensen, Søren, Christensen, Bent
Format: Article in Journal/Newspaper
Language:English
Published: 2006
Subjects:
Online Access:https://curis.ku.dk/portal/da/publications/soil-fauna-communities-and-microbial-respiration-in-high-arctic-tundra-soils-at-zackenberg-northeast-greenland(b7f0f160-74c2-11db-bee9-02004c4f4f50).html
https://doi.org/10.1007/s00300-005-0038-9
id ftcopenhagenunip:oai:pure.atira.dk:publications/b7f0f160-74c2-11db-bee9-02004c4f4f50
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spelling ftcopenhagenunip:oai:pure.atira.dk:publications/b7f0f160-74c2-11db-bee9-02004c4f4f50 2023-07-23T04:16:26+02:00 Soil fauna communities and microbial respiration in high Arctic tundra soils at Zackenberg, Northeast Greenland Sørensen, Louise I. Holmstrup, Martin Maraldo, Kristine Christensen, Søren Christensen, Bent 2006 https://curis.ku.dk/portal/da/publications/soil-fauna-communities-and-microbial-respiration-in-high-arctic-tundra-soils-at-zackenberg-northeast-greenland(b7f0f160-74c2-11db-bee9-02004c4f4f50).html https://doi.org/10.1007/s00300-005-0038-9 eng eng info:eu-repo/semantics/restrictedAccess Sørensen , L I , Holmstrup , M , Maraldo , K , Christensen , S & Christensen , B 2006 , ' Soil fauna communities and microbial respiration in high Arctic tundra soils at Zackenberg, Northeast Greenland ' , Polar Biology , vol. 29 , no. 3 , pp. 189-195 . https://doi.org/10.1007/s00300-005-0038-9 article 2006 ftcopenhagenunip https://doi.org/10.1007/s00300-005-0038-9 2023-07-05T22:56:55Z Udgivelsesdato: February, 2006 The soil fauna communities were described for three dominant vegetation types in a high arctic site at Zackenberg, Northeast Greenland. Soil samples were extracted to quantify the densities of mites, collembolans, enchytraeids, diptera larvae, nematodes and protozoa. Rates of microbial respiration were also assessed. Collembolans were found in highest densities in dry heath soil, about 130,000 individuals m -2 , more than twice as high as in mesic heath soils. Enchytraeids, diptera larvae and nematodes were also more abundant in the dry heath soil than in mesic heath soils, whereas protozoan densities (naked amoeba and heterotrophic flagellates) were equal. Respiration rate of unamended soil was similar in soil from the three plots. However, a higher respiration rate increase in carbon + nutrient amended soil and the higher densities of soil fauna (with the exception of mites and protozoa) in dry heath compared to the mesic heath soils indicated a higher decomposition rate here. Article in Journal/Newspaper Arctic Arctic Greenland Polar Biology Tundra Zackenberg University of Copenhagen: Research Arctic Greenland Polar Biology 29 3 189 195
institution Open Polar
collection University of Copenhagen: Research
op_collection_id ftcopenhagenunip
language English
description Udgivelsesdato: February, 2006 The soil fauna communities were described for three dominant vegetation types in a high arctic site at Zackenberg, Northeast Greenland. Soil samples were extracted to quantify the densities of mites, collembolans, enchytraeids, diptera larvae, nematodes and protozoa. Rates of microbial respiration were also assessed. Collembolans were found in highest densities in dry heath soil, about 130,000 individuals m -2 , more than twice as high as in mesic heath soils. Enchytraeids, diptera larvae and nematodes were also more abundant in the dry heath soil than in mesic heath soils, whereas protozoan densities (naked amoeba and heterotrophic flagellates) were equal. Respiration rate of unamended soil was similar in soil from the three plots. However, a higher respiration rate increase in carbon + nutrient amended soil and the higher densities of soil fauna (with the exception of mites and protozoa) in dry heath compared to the mesic heath soils indicated a higher decomposition rate here.
format Article in Journal/Newspaper
author Sørensen, Louise I.
Holmstrup, Martin
Maraldo, Kristine
Christensen, Søren
Christensen, Bent
spellingShingle Sørensen, Louise I.
Holmstrup, Martin
Maraldo, Kristine
Christensen, Søren
Christensen, Bent
Soil fauna communities and microbial respiration in high Arctic tundra soils at Zackenberg, Northeast Greenland
author_facet Sørensen, Louise I.
Holmstrup, Martin
Maraldo, Kristine
Christensen, Søren
Christensen, Bent
author_sort Sørensen, Louise I.
title Soil fauna communities and microbial respiration in high Arctic tundra soils at Zackenberg, Northeast Greenland
title_short Soil fauna communities and microbial respiration in high Arctic tundra soils at Zackenberg, Northeast Greenland
title_full Soil fauna communities and microbial respiration in high Arctic tundra soils at Zackenberg, Northeast Greenland
title_fullStr Soil fauna communities and microbial respiration in high Arctic tundra soils at Zackenberg, Northeast Greenland
title_full_unstemmed Soil fauna communities and microbial respiration in high Arctic tundra soils at Zackenberg, Northeast Greenland
title_sort soil fauna communities and microbial respiration in high arctic tundra soils at zackenberg, northeast greenland
publishDate 2006
url https://curis.ku.dk/portal/da/publications/soil-fauna-communities-and-microbial-respiration-in-high-arctic-tundra-soils-at-zackenberg-northeast-greenland(b7f0f160-74c2-11db-bee9-02004c4f4f50).html
https://doi.org/10.1007/s00300-005-0038-9
geographic Arctic
Greenland
geographic_facet Arctic
Greenland
genre Arctic
Arctic
Greenland
Polar Biology
Tundra
Zackenberg
genre_facet Arctic
Arctic
Greenland
Polar Biology
Tundra
Zackenberg
op_source Sørensen , L I , Holmstrup , M , Maraldo , K , Christensen , S & Christensen , B 2006 , ' Soil fauna communities and microbial respiration in high Arctic tundra soils at Zackenberg, Northeast Greenland ' , Polar Biology , vol. 29 , no. 3 , pp. 189-195 . https://doi.org/10.1007/s00300-005-0038-9
op_rights info:eu-repo/semantics/restrictedAccess
op_doi https://doi.org/10.1007/s00300-005-0038-9
container_title Polar Biology
container_volume 29
container_issue 3
container_start_page 189
op_container_end_page 195
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