Spatio‐temporal distribution of sedimentary Cladocera (Crustacea: Branchiopoda) in relation to climate
Abstract Aim Spatial and temporal variations in the composition of freshwater invertebrate assemblages may be useful indicators of past climate change and help us to predict species responses to future climate change. The objective of this study was to understand the relationship between climate var...
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crwiley:10.1111/jbi.12101 2024-10-13T14:11:00+00:00 Spatio‐temporal distribution of sedimentary Cladocera (Crustacea: Branchiopoda) in relation to climate Nevalainen, Liisa Luoto, Tomi P. Kultti, Seija Sarmaja‐Korjonen, Kaarina Williams, Jack EPHIPPIUM Academy of Finland ILMAVEIVI EGGER Kone Foundation 2013 http://dx.doi.org/10.1111/jbi.12101 https://api.wiley.com/onlinelibrary/tdm/v1/articles/10.1111%2Fjbi.12101 https://onlinelibrary.wiley.com/doi/pdf/10.1111/jbi.12101 en eng Wiley http://onlinelibrary.wiley.com/termsAndConditions#vor Journal of Biogeography volume 40, issue 8, page 1548-1559 ISSN 0305-0270 1365-2699 journal-article 2013 crwiley https://doi.org/10.1111/jbi.12101 2024-09-17T04:51:48Z Abstract Aim Spatial and temporal variations in the composition of freshwater invertebrate assemblages may be useful indicators of past climate change and help us to predict species responses to future climate change. The objective of this study was to understand the relationship between climate variables and fossil Cladocera assemblages in lake sediments along a contemporary climate gradient from hemiboreal to subarctic ecoregions in Finland and throughout the Holocene climate succession. Location Seventy‐three small shallow lakes across a climate gradient from hemiboreal (60° N) to subarctic (70° N) Finland and a case study lake, Lake Arapisto, in south boreal Finland. Methods Fossil cladoceran assemblages were analysed from the surface sediments of 73 lakes to investigate their association with climate, using ordination techniques (detrended correspondence analysis and redundancy analysis) and generalized linear modelling ( GLM ). The long‐term variation of the abundance of specific climate‐sensitive cladoceran species was then analysed in a sediment core from a boreal lake and compared with a chironomid‐based Holocene temperature reconstruction from an adjacent lake. Results Mean July air temperature was identified as a significant variable in explaining species distribution across the spatial climate gradient. This result, together with GLM s that recognized several climate‐sensitive species, indicates that certain cladoceran taxa may be useful indicators of climate. For example, the planktonic Bosmina longirostris and the phytophilous Graptoleberis testudinaria were more abundant in the warm southern lakes, in contrast to the benthic Alona affinis and Alona intermedia , which were typical for the cold northern lakes. The surface‐sediment inferences were supported by the core analysis from Lake Arapisto, because species associated with cold lakes increased in abundance during the cold early Holocene, and species associated with warm lakes thrived during the Holocene Thermal Maximum and Anthropocene. Main ... Article in Journal/Newspaper Subarctic Wiley Online Library Boreal Lake ENVELOPE(-127.670,-127.670,58.802,58.802) Journal of Biogeography 40 8 1548 1559 |
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Open Polar |
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Wiley Online Library |
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crwiley |
language |
English |
description |
Abstract Aim Spatial and temporal variations in the composition of freshwater invertebrate assemblages may be useful indicators of past climate change and help us to predict species responses to future climate change. The objective of this study was to understand the relationship between climate variables and fossil Cladocera assemblages in lake sediments along a contemporary climate gradient from hemiboreal to subarctic ecoregions in Finland and throughout the Holocene climate succession. Location Seventy‐three small shallow lakes across a climate gradient from hemiboreal (60° N) to subarctic (70° N) Finland and a case study lake, Lake Arapisto, in south boreal Finland. Methods Fossil cladoceran assemblages were analysed from the surface sediments of 73 lakes to investigate their association with climate, using ordination techniques (detrended correspondence analysis and redundancy analysis) and generalized linear modelling ( GLM ). The long‐term variation of the abundance of specific climate‐sensitive cladoceran species was then analysed in a sediment core from a boreal lake and compared with a chironomid‐based Holocene temperature reconstruction from an adjacent lake. Results Mean July air temperature was identified as a significant variable in explaining species distribution across the spatial climate gradient. This result, together with GLM s that recognized several climate‐sensitive species, indicates that certain cladoceran taxa may be useful indicators of climate. For example, the planktonic Bosmina longirostris and the phytophilous Graptoleberis testudinaria were more abundant in the warm southern lakes, in contrast to the benthic Alona affinis and Alona intermedia , which were typical for the cold northern lakes. The surface‐sediment inferences were supported by the core analysis from Lake Arapisto, because species associated with cold lakes increased in abundance during the cold early Holocene, and species associated with warm lakes thrived during the Holocene Thermal Maximum and Anthropocene. Main ... |
author2 |
Williams, Jack EPHIPPIUM Academy of Finland ILMAVEIVI EGGER Kone Foundation |
format |
Article in Journal/Newspaper |
author |
Nevalainen, Liisa Luoto, Tomi P. Kultti, Seija Sarmaja‐Korjonen, Kaarina |
spellingShingle |
Nevalainen, Liisa Luoto, Tomi P. Kultti, Seija Sarmaja‐Korjonen, Kaarina Spatio‐temporal distribution of sedimentary Cladocera (Crustacea: Branchiopoda) in relation to climate |
author_facet |
Nevalainen, Liisa Luoto, Tomi P. Kultti, Seija Sarmaja‐Korjonen, Kaarina |
author_sort |
Nevalainen, Liisa |
title |
Spatio‐temporal distribution of sedimentary Cladocera (Crustacea: Branchiopoda) in relation to climate |
title_short |
Spatio‐temporal distribution of sedimentary Cladocera (Crustacea: Branchiopoda) in relation to climate |
title_full |
Spatio‐temporal distribution of sedimentary Cladocera (Crustacea: Branchiopoda) in relation to climate |
title_fullStr |
Spatio‐temporal distribution of sedimentary Cladocera (Crustacea: Branchiopoda) in relation to climate |
title_full_unstemmed |
Spatio‐temporal distribution of sedimentary Cladocera (Crustacea: Branchiopoda) in relation to climate |
title_sort |
spatio‐temporal distribution of sedimentary cladocera (crustacea: branchiopoda) in relation to climate |
publisher |
Wiley |
publishDate |
2013 |
url |
http://dx.doi.org/10.1111/jbi.12101 https://api.wiley.com/onlinelibrary/tdm/v1/articles/10.1111%2Fjbi.12101 https://onlinelibrary.wiley.com/doi/pdf/10.1111/jbi.12101 |
long_lat |
ENVELOPE(-127.670,-127.670,58.802,58.802) |
geographic |
Boreal Lake |
geographic_facet |
Boreal Lake |
genre |
Subarctic |
genre_facet |
Subarctic |
op_source |
Journal of Biogeography volume 40, issue 8, page 1548-1559 ISSN 0305-0270 1365-2699 |
op_rights |
http://onlinelibrary.wiley.com/termsAndConditions#vor |
op_doi |
https://doi.org/10.1111/jbi.12101 |
container_title |
Journal of Biogeography |
container_volume |
40 |
container_issue |
8 |
container_start_page |
1548 |
op_container_end_page |
1559 |
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1812818576780820480 |