Literature DB >> 20724644

Nonreductive iron uptake mechanism in the marine alveolate Chromera velia.

Robert Sutak1, Jan Slapeta, Mabel San Roman, Jean-Michel Camadro, Emmanuel Lesuisse.   

Abstract

Chromera velia is a newly cultured photosynthetic marine alveolate. This microalga has a high iron requirement for respiration and photosynthesis, although its natural environment contains less than 1 nm of this metal. We found that this organism uses a novel mechanism of iron uptake, differing from the classic reductive and siderophore-mediated iron uptake systems characterized in the model yeast Saccharomyces cerevisiae and present in most yeasts and terrestrial plants. C. velia has no trans-plasma membrane electron transfer system, and thus cannot reduce extracellular ferric chelates. It is also unable to use hydroxamate siderophores as iron sources. Iron uptake from ferric citrate by C. velia is not inhibited by a ferrous chelator, but the rate of uptake is strongly decreased by increasing the ferric ligand (citrate) concentration. The cell wall contains a large number of iron binding sites, allowing the cells to concentrate iron in the vicinity of the transport sites. We describe a model of iron uptake in which aqueous ferric ions are first concentrated in the cell wall before being taken up by the cells without prior reduction. We discuss our results in relation to the strategies used by the phytoplankton to take up iron in the oceans.

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Year:  2010        PMID: 20724644      PMCID: PMC2949016          DOI: 10.1104/pp.110.159947

Source DB:  PubMed          Journal:  Plant Physiol        ISSN: 0032-0889            Impact factor:   8.340


  35 in total

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  9 in total

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Review 2.  A quick journey into the diversity of iron uptake strategies in photosynthetic organisms.

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3.  A comparative study of iron uptake mechanisms in marine microalgae: iron binding at the cell surface is a critical step.

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5.  Disassembling iron availability to phytoplankton.

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7.  Atypical iron storage in marine brown algae: a multidisciplinary study of iron transport and storage in Ectocarpus siliculosus.

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8.  Surface-bound iron: a metal ion buffer in the marine brown alga Ectocarpus siliculosus?

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9.  Different iron sources to study the physiology and biochemistry of iron metabolism in marine micro-algae.

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  9 in total

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