4.7 Article

Ice-Associated Amphipods in a Pan-Arctic Scenario of Declining Sea Ice

期刊

FRONTIERS IN MARINE SCIENCE
卷 8, 期 -, 页码 -

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fmars.2021.743152

关键词

ice amphipods; sympagic; time-series; climate change; Arctic Ocean

资金

  1. Ministry of Foreign Affairs, Norway [Arctic]
  2. RF [0149-2018-0009]
  3. RFBR [18-05-00099]
  4. Research Council of Norway [244646, 268286]
  5. Arctic SIZE project
  6. Tromso Research Foundation [01vm/h15]
  7. UiT -The Arctic University of Norway
  8. CBMP-Marine project
  9. CBMP
  10. RFBR/RGS [17-05-41197]

向作者/读者索取更多资源

Recent research shows that the sea-ice macrofauna in the Arctic has changed over the past decades, with a decline in ice amphipods and benthic amphipods and variations in species composition among different locations. The disappearance of multiyear sea ice has led to a reduction in important species, while benthic amphipods have higher abundance near land.
Sea-ice macrofauna includes ice amphipods and benthic amphipods, as well as mysids. Amphipods are important components of the sympagic food web, which is fuelled by the production of ice algae. Data on the diversity of sea-ice biota have been collected as a part of scientific expeditions over decades, and here we present a pan-Arctic analysis of data on ice-associated amphipods and mysids assimilated over 35 years (1977-2012). The composition of species differed among the 13 locations around the Arctic, with main differences between basins and shelves and also between communities in drift ice and landfast sea ice. The sea ice has been dramatically reduced in extent and thickness during the recorded period, which has resulted in reduced abundance of ice amphipods as well as benthic amphipods in sea ice from the 1980's to the 2010's. The decline mainly involved Gammarus wilkitzkii coinciding with the disappearance of much of the multiyear sea ice, which is an important habitat for this long-lived species. Benthic amphipods were most diverse, and also showed a decline over the time-span. They had higher abundance closer to land where they are associated with landfast ice. However, they also occurred in the Central Arctic Ocean, which is likely related to the origin of sea ice over shallow water and subsequent transport in the transpolar ice drift. Recent sampling in the waters east and north of Svalbard has found continued presence of Apherusa glacialis, but almost no G. wilkitzkii. Monitoring by standardized methods is needed to detect further changes in community composition of ice amphipods related to reductions in sea-ice cover and ice type.

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