Loss of sea ice alters light spectra for aquatic photosynthesis

M Monika Soja-Woźniak T Tadzio Holtrop S Sander Woutersen H Hendrik Jan van der Woerd L Lars Chresten Lund-Hansen J Jef Huisman

Abstract

Abstract The dramatic loss of sea ice due to global warming is changing light conditions for marine primary production, but exactly how is not well understood. Previous studies revealed that small peaks in the absorption spectrum of liquid water, due to molecular vibrations of H2O, delineate a series of spectral niches for aquatic photosynthesis. Ice, however, has a smoother absorption spectrum and scatters light much more strongly than liquid water. Here, we show with a radiative transfer model that the loss of sea ice causes a pronounced blue shift, narrowing light spectra in the euphotic zone to shorter wavelengths. Furthermore, ice cover yields a smooth continuum of light spectra, whereas open water creates distinct spectral niches selecting for phytoplankton species with different photosynthetic pigments. These results indicate that the loss of sea ice will cause major changes in both the pigment and species composition of primary producers in polar ecosystems.

Article Details

Volume / Issue Vol. 16, Issue 1
Published April 30, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (6)

M

Monika Soja-Woźniak

T

Tadzio Holtrop

S

Sander Woutersen

H

Hendrik Jan van der Woerd

L

Lars Chresten Lund-Hansen

J

Jef Huisman