Group 2i Isochrysidales thrive in marine and lacustrine systems with ice cover

Karen J. Wang, Yongsong Huang, Tyler Kartzinel, Markus Majaneva, Nora Richter, Sian Liao, Camilla S. Andresen, Flor Vermassen

Research output: Contribution to journalArticleResearchpeer-review

Abstract

Global warming is causing rapid changes to the cryosphere. Predicting the future trajectory of the cryosphere requires quantitative reconstruction of its past variations. A recently identified sea-ice-associated haptophyte, known as Group 2i Isochrysidales, has given rise to a new sea-ice proxy with its characteristic alkenone distributions. However, apart from the occurrence of Group 2i Isochrysidales in regions with sea ice, and the empirical relationship between C37:4 alkenone abundance and sea-ice concentration, little is known about the ecology of these haptophyte species. Here, we systematically mapped the spatial and temporal occurrence of known Group 2i Isochrysidales based on environmental DNA in both marine and lacustrine environments. Our results indicate Group 2i is widely distributed in icy marine and lacustrine environments in both Northern and Southern Hemisphere, but is absent in warm environments. Temporally, Group 2i is part of the sea-ice algae bloom during the cold seasons, in contrast to other Isochrysidales that bloom in open waters during warm seasons. Our results indicate that ice is a prerequisite for the occurrence of the psychrophilic Group 2i haptophytes in marine and lacustrine ecosystems and further affirms its value for past ice reconstructions.
Original languageEnglish
Article number11449
Number of pages10
JournalScientific Reports
Volume14
DOIs
Publication statusPublished - 20 May 2024

Keywords

  • Alkenones
  • Biomarker proxy
  • Isochrysidales
  • Paleoclimate
  • Sea ice

Programme Area

  • Programme Area 5: Nature and Climate

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