EDITORIAL article

Front. Microbiol., 25 April 2013

Sec. Microbiological Chemistry and Geomicrobiology

Volume 4 - 2013 | https://doi.org/10.3389/fmicb.2013.00100

The environmental bioinorganic chemistry of aquatic microbial organisms

  • MG

    Martha Gledhill 1*

  • CS

    Christel S. Hassler 2

  • VS

    Veronique Schoemann 3

  • 1. National Oceanography Centre, School of Ocean and Earth Science, University of Southampton Southampton, UK

  • 2. Plant Functional Biology and Climate Change Cluster, University of Technology Sydney Broadway, NSW, Australia

  • 3. Department of Biological Oceanography, Royal Netherlands Institute for Sea Research AB Den Burg, Texel, Netherlands

A few key inorganic elements, many of them metals, are essential for life. Approximately 40% of all proteins are metalloproteins which are at the center of the fundamental biological processes that drive biogeochemical cycles. Metalloproteins split water, acquire carbon, reduce carbon, and reoxidize carbon. They are also integral to the nitrogen and oxygen cycles.

In aquatic systems, metals are present at an extraordinarily wide range of concentrations from metal rich hydrothermal systems to the extremely metal poor Southern Ocean. Moreover, the relative abundance of metals to each other is not universal. Such differences are primarily a result of the metal source, input rate, and the major ion (S, O, Cl) composition of their environment. Transition metals, in particular, exhibit diverse environmental behaviors and biological availability, with changes in oxidation state and affinity for non-metals combining to create a rich chemistry and diversity of uses.

It is thus not surprising that this diversity results in a plethora of metal geomes and metal biomes, with organisms exploiting and altering their metallo-environments. A research topic exploring current research themes in environmental aquatic bioinorganic chemistry should thus incorporate articles on a diverse range of subjects. We have been honored to include both reviews and original research articles that taken together, reflect the interdisciplinary nature of the subject area and the diversity of geomes and biomes in which inorganic elements, particularly metals, play a fundamental role.

We have thus been able to include articles on metals, their speciation, and interactions with phytoplankton (Cuss and Gueguen, 2012; Hassler et al., 2012; Shaked and Lis, 2012; Sunda, 2012), on metal acquisition and use by microbes (Barnett et al., 2012; Desai et al., 2012; Glass and Orphan, 2012; Morrissey and Bowler, 2012; Nuester et al., 2012; Scheidegger et al., 2012) and on the effect of inorganic ions in the environment on organism interactions and community structure (Boyd et al., 2012; Gledhill et al., 2012).

References

  • 1

    BarnettJ. P.MillardA.KsibeA.ScanlanD. J.SchmidR.BlindauerC. A. (2012). Mining genomes of cyanobacteria for elements of zinc homeostasis. Front. Microbiol. 3:142. 10.3389/fmicb.2012.00142

  • 2

    BoydE.FecteauK.HavigJ.ShockE.PetersJ. W. (2012). Modeling the habitat range of phototrophic microorganisms in Yellowstone National Park: toward the development of a comprehensive fitness landscape. Front. Microbiol. 3:221. 10.3389/fmicb.2012.00221

  • 3

    CussC.GueguenC. (2012). Impacts of microbial activity on the optical and copper-binding properties of leaf-litter leachate. Front. Microbiol. 3:166. 10.3389/fmicb.2012.00166

  • 4

    DesaiD. K.DesaiF.LarocheJ. (2012). Factors influencing the diversity of iron uptake systems in aquatic microorganisms. Front. Microbiol. 3:362. 10.3389/fmicb.2012.00362

  • 5

    GlassJ.OrphanV. J. (2012). Trace metal requirements for microbial enzymes involved in the production and consumption of methane and nitrous oxide. Front. Microbiol. 3:61. 10.3389/fmicb.2012.00061

  • 6

    GledhillM.DevezA.HighfieldA.SingletonC.AchterbergE. P.SchroederD. (2012). Effect of metals on the lytic cycle of the coccolithovirus, EhV86. Front. Microbiol. 3:155. 10.3389/fmicb.2012.00155

  • 7

    HasslerC.SinoirM.ClementsonL.ButlerE. C. V. (2012). Exploring the link between micro-nutrients and phytoplankton in the Southern Ocean during the 2007 austral summer. Front. Microbiol. 3:202. 10.3389/fmicb.2012.00202

  • 8

    MorrisseyJ.BowlerC. (2012). Iron utilization in marine cyanobacteria and eukaryotic algae. Front. Microbiol. 3:43. 10.3389/fmicb.2012.00043

  • 9

    NuesterJ.VogtS.NewvilleM.KustkaA. B.TwiningB. S. (2012). The unique biogeochemical signature of the marine diazotroph Trichodesmium. Front. Microbiol. 3:150. 10.3389/fmicb.2012.00150

  • 10

    ScheideggerC.SuterM. J.-F.BehraR.SiggL. (2012). Characterization of lead-phytochelatin complexes by nano-electrospray ionization mass spectrometry. Front. Microbiol. 3:41. 10.3389/fmicb.2012.00041

  • 11

    ShakedY.LisH. (2012). Disassembling iron availability to phytoplankton. Front. Microbiol. 3:123. 10.3389/fmicb.2012.00123

  • 12

    SundaW. (2012). Feedback interactions between trace metal nutrients and phytoplankton in the ocean. Front. Microbiol. 3:204. 10.3389/fmicb.2012.00204

Summary

Keywords

Oceans and Seas, Phytoplankton, Iron, Metals, Copper, Bacteria, Viruses, hydrothermal

Citation

Gledhill M, Hassler CS and Schoemann V (2013) The environmental bioinorganic chemistry of aquatic microbial organisms. Front. Microbiol. 4:100. doi: 10.3389/fmicb.2013.00100

Received

28 March 2013

Accepted

08 April 2013

Published

25 April 2013

Volume

4 - 2013

Edited by

Bradley M. Tebo, Oregon Health & Science University, USA

Reviewed by

Bradley M. Tebo, Oregon Health & Science University, USA

Copyright

*Correspondence:

This article was submitted to Frontiers in Microbiological Chemistry, a specialty of Frontiers in Microbiology.

Disclaimer

All claims expressed in this article are solely those of the authors and do not necessarily represent those of their affiliated organizations, or those of the publisher, the editors and the reviewers. Any product that may be evaluated in this article or claim that may be made by its manufacturer is not guaranteed or endorsed by the publisher.

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