Literature DB >> 11574885

Photochemical cycling of iron in the surface ocean mediated by microbial iron(III)-binding ligands.

K Barbeau1, E L Rue, K W Bruland, A Butler.   

Abstract

Iron is a limiting nutrient for primary production in large areas of the oceans. Dissolved iron(III) in the upper oceans occurs almost entirely in the form of complexes with strong organic ligands presumed to be of biological origin. Although the importance of organic ligands to aquatic iron cycling is becoming clear, the mechanism by which they are involved in this process remains uncertain. Here we report observations of photochemical reactions involving Fe(III) bound to siderophores--high-affinity iron(III) ligands produced by bacteria to facilitate iron acquisition. We show that photolysis of Fe(III)-siderophore complexes leads to the formation of lower-affinity Fe(III) ligands and the reduction of Fe(III), increasing the availability of siderophore-bound iron for uptake by planktonic assemblages. These photochemical reactions are mediated by the alpha-hydroxy acid moiety, a group which has generally been found to be present in the marine siderophores that have been characterized. We suggest that Fe(III)-binding ligands can enhance the photolytic production of reactive iron species in the euphotic zone and so influence iron availability in aquatic systems.

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Year:  2001        PMID: 11574885     DOI: 10.1038/35096545

Source DB:  PubMed          Journal:  Nature        ISSN: 0028-0836            Impact factor:   49.962


  55 in total

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5.  Photolysis of iron-siderophore chelates promotes bacterial-algal mutualism.

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Review 8.  Microbial iron acquisition: marine and terrestrial siderophores.

Authors:  Moriah Sandy; Alison Butler
Journal:  Chem Rev       Date:  2009-10       Impact factor: 60.622

9.  Ferric stability constants of representative marine siderophores: marinobactins, aquachelins, and petrobactin.

Authors:  Guangping Zhang; Shady A Amin; Frithjof C Küpper; Pamela D Holt; Carl J Carrano; Alison Butler
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10.  Production of metabolites as bacterial responses to the marine environment.

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