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Photosynthetic light requirement near the theoretical minimum detected in Arctic microalgae

  • Clara J. M. Hoppe
  • , Niels Fuchs
  • , Dirk Notz
  • , Philip Anderson
  • , Philipp Assmy
  • , Jorgen Berge
  • , Gunnar Bratbak
  • , Gael Guillou
  • , Alexandra Kraberg
  • , Aud Larsen
  • , Benoit Lebreton
  • , Eva Leu
  • , Magnus Lucassen
  • , Oliver Mueller
  • , Laurent Oziel
  • , Bjoern Rost
  • , Bernhard Schartmueller
  • , Anders Torstensson
  • , Jonas Wloka

Publication: Contribution to journalJournal articlepeer-review

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Abstract

Photosynthesis is one of the most important biological processes on Earth, providing the main source of bioavailable energy, carbon, and oxygen via the use of sunlight. Despite this importance, the minimum light level sustaining photosynthesis and net growth of primary producers in the global ocean is still unknown. Here, we present measurements from the MOSAiC field campaign in the central Arctic Ocean that reveal the resumption of photosynthetic growth and algal biomass buildup under the ice pack at a daily average irradiance of not more than 0.04 +/- 0.02 mu mol photons m-2 s-1 in late March. This is at least one order of magnitude lower than previous estimates (0.3-5 mu mol photons m-2 s-1) and near the theoretical minimum light requirement of photosynthesis (0.01 mu mol photons m-2 s-1). Our findings are based on measurements of the temporal development of the under-ice light field and concurrent measurements of both chlorophyll a concentrations and potential net primary production underneath the sea ice at 86 degrees N. Such low light requirements suggest that euphotic zones where photosynthesis can occur in the world's oceans may extend further in depth and time, with major implications for global productivity estimates.This study shows that photosynthesis in the Arctic Ocean can occur at lower light levels than previously thought. This finding is based on unique measurements made on microalgae underneath sea ice in the high Arctic at the end of the polar night.
Original languageEnglish
Article number7385
Number of pages10
JournalNature Communications
Volume15
Issue number1
DOIs
Publication statusPublished - 2024

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