Enhancement of the reactive iron pool by marine diatoms

Micha J. A. Rijkenberg*, Loes J. A. Gerringa, Klaas R. Timmermans, Astrid C. Fischer, Koos J. Kroon, Anita G. J. Buma, Bert Th. Wolterbeek, Hein J. W. de Baar

*Corresponding author for this work

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Abstract

Short term (2 days) laboratory experiments were performed to study the change in irradiance induced production of Fe(II) in seawater in the presence of two open oceanic Southern Ocean diatom species, Thalassiosira sp. and Chaetoceros brevis. Three irradiance conditions were applied: 1) UVB+UVA+VIS, 2) UVA+ VIS, and 3) VIS, and Fe concentrations of 0 and 5 nM Fe were added to natural Southern Ocean seawater (containing 0.32 nM dissolved Fe and 1.69 equivalents of nM L(-1) Fe dissolved organic ligands, log K'=22.03). The photoproduced concentration of Fe(II) showed no relationship with the concentration of total dissolved Fe or the concentration of strongly chelated iron. During incubations with the diatoms an increase in the Fe(II) concentration during the second day suggested a modification of the Fe speciation. In the presence of Thalassiosira sp. photoreduction of Fe(III) was observed, whereas in the presence of C brevis irradiance independent Fe(III) reduction played an important role in the Fe(II) production. Furthermore, a decrease in the strongly chelated Fe concentration, in concert with a decrease in the conditional stability constant, suggested a modification of the strongly chelated Fe fraction in the experiments with C brevis. The chelated Fe fraction did not change in cultures with Thalassiosira sp. Overall, the presence of diatoms appeared to enhance the reactive Fe pool improving the biological availability of Fe. (c) 2007 Elsevier B.V. All rights reserved.

Original languageEnglish
Pages (from-to)29-44
Number of pages16
JournalMarine Chemistry
Volume109
Issue number1-2
DOIs
Publication statusPublished - 16-Feb-2008

Keywords

  • photoreduction
  • phytoplankton
  • diatoms
  • iron limitation
  • bioavailability
  • climate change
  • southern ocean
  • CATHODIC STRIPPING VOLTAMMETRY
  • DISSOLVED ORGANIC-MATTER
  • DIFFERENT SIZE FRACTIONS
  • OPEN SOUTHERN-OCEAN
  • COMPLEXING LIGANDS
  • PHOTOCHEMICAL DEGRADATION
  • THALASSIOSIRA-OCEANICA
  • SIDEROPHORE PRODUCTION
  • PHYTOPLANKTON GROWTH
  • ATLANTIC-OCEAN

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