Data from: Ice-cover is the principal driver of ecological change in High Arctic lakes and ponds

Recent climate change has been especially pronounced in the High Arctic, however, the responses of aquatic biota, such as diatoms, can be modified by site-specific environmental characteristics. To assess if climate-mediated ice cover changes affect the diatom response to climate, we used paleolimno...

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Main Authors: Griffiths, Katherine, Michelutti, Neal, Sugar, Madeline, Douglas, Marianne S.V., Smol, John P., Douglas, Marianne S. V.
Format: Dataset
Language:unknown
Published: 2017
Subjects:
Online Access:https://zenodo.org/record/5007428
https://doi.org/10.5061/dryad.g7h7n
id ftzenodo:oai:zenodo.org:5007428
record_format openpolar
spelling ftzenodo:oai:zenodo.org:5007428 2023-05-15T14:53:13+02:00 Data from: Ice-cover is the principal driver of ecological change in High Arctic lakes and ponds Griffiths, Katherine Michelutti, Neal Sugar, Madeline Douglas, Marianne S.V. Smol, John P. Douglas, Marianne S. V. 2017-03-30 https://zenodo.org/record/5007428 https://doi.org/10.5061/dryad.g7h7n unknown doi:10.1371/journal.pone.0172989 https://zenodo.org/communities/dryad https://zenodo.org/record/5007428 https://doi.org/10.5061/dryad.g7h7n oai:zenodo.org:5007428 info:eu-repo/semantics/openAccess https://creativecommons.org/publicdomain/zero/1.0/legalcode Anthropocene Ice cover paleolimnology Bacillariophyceae info:eu-repo/semantics/other dataset 2017 ftzenodo https://doi.org/10.5061/dryad.g7h7n10.1371/journal.pone.0172989 2023-03-11T03:02:57Z Recent climate change has been especially pronounced in the High Arctic, however, the responses of aquatic biota, such as diatoms, can be modified by site-specific environmental characteristics. To assess if climate-mediated ice cover changes affect the diatom response to climate, we used paleolimnological techniques to examine shifts in diatom assemblages from ten High Arctic lakes and ponds from Ellesmere Island and nearby Pim Island (Nunavut, Canada). The sites were divided a priori into four groups ("warm", "cool", "cold", and "oasis") based on local elevation and microclimatic differences that result in differing lengths of the ice-free season, as well as about three decades of personal observations. We characterized the species changes as a shift from Condition 1 (i.e. a generally low diversity, predominantly epipelic and epilithic diatom assemblage) to Condition 2 (i.e. a typically more diverse and ecologically complex assemblage with an increasing proportion of epiphytic species). This shift from Condition 1 to Condition 2 was a consistent pattern recorded across the sites that experienced a change in ice cover with warming. The "warm" sites are amongst the first to lose their ice covers in summer and recorded the earliest and highest magnitude changes. The "cool" sites also exhibited a shift from Condition 1 to Condition 2, but, as predicted, the timing of the response lagged the "warm" sites. Meanwhile some of the "cold" sites, which until recently still retained an ice raft in summer, only exhibited this shift in the upper-most sediments. The warmer "oasis" ponds likely supported aquatic vegetation throughout their records. Consequently, the diatoms of the "oasis" sites were characterized as high-diversity, Condition 2 assemblages throughout the record. Our results support the hypothesis that the length of the ice-free season is the principal driver of diatom assemblage responses to climate in the High Arctic, largely driven by the establishment of new aquatic habitats, resulting in increased ... Dataset Arctic Climate change Ellesmere Island Nunavut Zenodo Arctic Nunavut Ellesmere Island Canada Pim Island ENVELOPE(-74.430,-74.430,78.725,78.725)
institution Open Polar
collection Zenodo
op_collection_id ftzenodo
language unknown
topic Anthropocene
Ice cover
paleolimnology
Bacillariophyceae
spellingShingle Anthropocene
Ice cover
paleolimnology
Bacillariophyceae
Griffiths, Katherine
Michelutti, Neal
Sugar, Madeline
Douglas, Marianne S.V.
Smol, John P.
Douglas, Marianne S. V.
Data from: Ice-cover is the principal driver of ecological change in High Arctic lakes and ponds
topic_facet Anthropocene
Ice cover
paleolimnology
Bacillariophyceae
description Recent climate change has been especially pronounced in the High Arctic, however, the responses of aquatic biota, such as diatoms, can be modified by site-specific environmental characteristics. To assess if climate-mediated ice cover changes affect the diatom response to climate, we used paleolimnological techniques to examine shifts in diatom assemblages from ten High Arctic lakes and ponds from Ellesmere Island and nearby Pim Island (Nunavut, Canada). The sites were divided a priori into four groups ("warm", "cool", "cold", and "oasis") based on local elevation and microclimatic differences that result in differing lengths of the ice-free season, as well as about three decades of personal observations. We characterized the species changes as a shift from Condition 1 (i.e. a generally low diversity, predominantly epipelic and epilithic diatom assemblage) to Condition 2 (i.e. a typically more diverse and ecologically complex assemblage with an increasing proportion of epiphytic species). This shift from Condition 1 to Condition 2 was a consistent pattern recorded across the sites that experienced a change in ice cover with warming. The "warm" sites are amongst the first to lose their ice covers in summer and recorded the earliest and highest magnitude changes. The "cool" sites also exhibited a shift from Condition 1 to Condition 2, but, as predicted, the timing of the response lagged the "warm" sites. Meanwhile some of the "cold" sites, which until recently still retained an ice raft in summer, only exhibited this shift in the upper-most sediments. The warmer "oasis" ponds likely supported aquatic vegetation throughout their records. Consequently, the diatoms of the "oasis" sites were characterized as high-diversity, Condition 2 assemblages throughout the record. Our results support the hypothesis that the length of the ice-free season is the principal driver of diatom assemblage responses to climate in the High Arctic, largely driven by the establishment of new aquatic habitats, resulting in increased ...
format Dataset
author Griffiths, Katherine
Michelutti, Neal
Sugar, Madeline
Douglas, Marianne S.V.
Smol, John P.
Douglas, Marianne S. V.
author_facet Griffiths, Katherine
Michelutti, Neal
Sugar, Madeline
Douglas, Marianne S.V.
Smol, John P.
Douglas, Marianne S. V.
author_sort Griffiths, Katherine
title Data from: Ice-cover is the principal driver of ecological change in High Arctic lakes and ponds
title_short Data from: Ice-cover is the principal driver of ecological change in High Arctic lakes and ponds
title_full Data from: Ice-cover is the principal driver of ecological change in High Arctic lakes and ponds
title_fullStr Data from: Ice-cover is the principal driver of ecological change in High Arctic lakes and ponds
title_full_unstemmed Data from: Ice-cover is the principal driver of ecological change in High Arctic lakes and ponds
title_sort data from: ice-cover is the principal driver of ecological change in high arctic lakes and ponds
publishDate 2017
url https://zenodo.org/record/5007428
https://doi.org/10.5061/dryad.g7h7n
long_lat ENVELOPE(-74.430,-74.430,78.725,78.725)
geographic Arctic
Nunavut
Ellesmere Island
Canada
Pim Island
geographic_facet Arctic
Nunavut
Ellesmere Island
Canada
Pim Island
genre Arctic
Climate change
Ellesmere Island
Nunavut
genre_facet Arctic
Climate change
Ellesmere Island
Nunavut
op_relation doi:10.1371/journal.pone.0172989
https://zenodo.org/communities/dryad
https://zenodo.org/record/5007428
https://doi.org/10.5061/dryad.g7h7n
oai:zenodo.org:5007428
op_rights info:eu-repo/semantics/openAccess
https://creativecommons.org/publicdomain/zero/1.0/legalcode
op_doi https://doi.org/10.5061/dryad.g7h7n10.1371/journal.pone.0172989
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