Influences of size structure and post-bloom supply of phytoplankton on body size variations in a common Pacific Arctic bivalve (Macoma calcarea)

The substantial loss of Arctic sea ice will alter marine ecosystems in many ways. Recent studies have reported a distributional shift in benthic macrofaunal biomass in the Pacific Arctic, likely caused by changes in food availability for benthic organisms. Here, we assessed the influence of differen...

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Published in:Polar Science
Format: Article in Journal/Newspaper
Language:English
Published: 2021
Subjects:
Online Access:https://nipr.repo.nii.ac.jp/?action=repository_uri&item_id=16413
http://id.nii.ac.jp/1291/00016291/
id ftnipr:oai:nipr.repo.nii.ac.jp:00016413
record_format openpolar
spelling ftnipr:oai:nipr.repo.nii.ac.jp:00016413 2023-05-15T14:43:53+02:00 Influences of size structure and post-bloom supply of phytoplankton on body size variations in a common Pacific Arctic bivalve (Macoma calcarea) 2021-03 https://nipr.repo.nii.ac.jp/?action=repository_uri&item_id=16413 http://id.nii.ac.jp/1291/00016291/ en eng https://doi.org/10.1016/j.polar.2020.100554 https://nipr.repo.nii.ac.jp/?action=repository_uri&item_id=16413 http://id.nii.ac.jp/1291/00016291/ Polar Science, 100554(2021-03) 18739652 Arctic ocean Bivalve Phytoplankton size structure Remote sensing Laboratory experiment Journal Article 2021 ftnipr https://doi.org/10.1016/j.polar.2020.100554 2022-12-03T19:43:21Z The substantial loss of Arctic sea ice will alter marine ecosystems in many ways. Recent studies have reported a distributional shift in benthic macrofaunal biomass in the Pacific Arctic, likely caused by changes in food availability for benthic organisms. Here, we assessed the influence of differences in post-bloom supply of phytoplankton to the sediment on the growth of a common Pacific Arctic bivalve (Macoma calcarea) based on field and satellite observations, and feeding experiments. Among the sampling stations examined, the spatial distribution of M. calcarea body size showed clear variations and was associated with phytoplankton size structure during the post-bloom period. In addition, our feeding experiment exposing M. calcarea to different feeding treatments suggest that the continuous settlement of fresh phytoplankton is more important for the bivalve's growth than the total amount of phytoplankton settlement. This could explain the significant linkage between M. calcarea body size and phytoplankton size structure during the post-bloom period, because the larger phytoplankton represent an influx of fresh phytoplankton to the sediment and hereby support better growth and/or longevity of bivalves. Our study provides novel insights into a variety of processes related to the growth of M. calcarea and its relationship with the phytoplankton community. Article in Journal/Newspaper Arctic Arctic Ocean Pacific Arctic Phytoplankton Polar Science Polar Science Sea ice National Institute of Polar Research Repository, Japan Arctic Arctic Ocean Pacific Polar Science 27 100554
institution Open Polar
collection National Institute of Polar Research Repository, Japan
op_collection_id ftnipr
language English
topic Arctic ocean
Bivalve
Phytoplankton size structure
Remote sensing
Laboratory experiment
spellingShingle Arctic ocean
Bivalve
Phytoplankton size structure
Remote sensing
Laboratory experiment
Influences of size structure and post-bloom supply of phytoplankton on body size variations in a common Pacific Arctic bivalve (Macoma calcarea)
topic_facet Arctic ocean
Bivalve
Phytoplankton size structure
Remote sensing
Laboratory experiment
description The substantial loss of Arctic sea ice will alter marine ecosystems in many ways. Recent studies have reported a distributional shift in benthic macrofaunal biomass in the Pacific Arctic, likely caused by changes in food availability for benthic organisms. Here, we assessed the influence of differences in post-bloom supply of phytoplankton to the sediment on the growth of a common Pacific Arctic bivalve (Macoma calcarea) based on field and satellite observations, and feeding experiments. Among the sampling stations examined, the spatial distribution of M. calcarea body size showed clear variations and was associated with phytoplankton size structure during the post-bloom period. In addition, our feeding experiment exposing M. calcarea to different feeding treatments suggest that the continuous settlement of fresh phytoplankton is more important for the bivalve's growth than the total amount of phytoplankton settlement. This could explain the significant linkage between M. calcarea body size and phytoplankton size structure during the post-bloom period, because the larger phytoplankton represent an influx of fresh phytoplankton to the sediment and hereby support better growth and/or longevity of bivalves. Our study provides novel insights into a variety of processes related to the growth of M. calcarea and its relationship with the phytoplankton community.
format Article in Journal/Newspaper
title Influences of size structure and post-bloom supply of phytoplankton on body size variations in a common Pacific Arctic bivalve (Macoma calcarea)
title_short Influences of size structure and post-bloom supply of phytoplankton on body size variations in a common Pacific Arctic bivalve (Macoma calcarea)
title_full Influences of size structure and post-bloom supply of phytoplankton on body size variations in a common Pacific Arctic bivalve (Macoma calcarea)
title_fullStr Influences of size structure and post-bloom supply of phytoplankton on body size variations in a common Pacific Arctic bivalve (Macoma calcarea)
title_full_unstemmed Influences of size structure and post-bloom supply of phytoplankton on body size variations in a common Pacific Arctic bivalve (Macoma calcarea)
title_sort influences of size structure and post-bloom supply of phytoplankton on body size variations in a common pacific arctic bivalve (macoma calcarea)
publishDate 2021
url https://nipr.repo.nii.ac.jp/?action=repository_uri&item_id=16413
http://id.nii.ac.jp/1291/00016291/
geographic Arctic
Arctic Ocean
Pacific
geographic_facet Arctic
Arctic Ocean
Pacific
genre Arctic
Arctic Ocean
Pacific Arctic
Phytoplankton
Polar Science
Polar Science
Sea ice
genre_facet Arctic
Arctic Ocean
Pacific Arctic
Phytoplankton
Polar Science
Polar Science
Sea ice
op_relation https://doi.org/10.1016/j.polar.2020.100554
https://nipr.repo.nii.ac.jp/?action=repository_uri&item_id=16413
http://id.nii.ac.jp/1291/00016291/
Polar Science, 100554(2021-03)
18739652
op_doi https://doi.org/10.1016/j.polar.2020.100554
container_title Polar Science
container_volume 27
container_start_page 100554
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