An evolving view on biogeochemical cycling of iron
Author:
Publisher
Springer Science and Business Media LLC
Subject
General Immunology and Microbiology,Microbiology,Infectious Diseases
Link
http://www.nature.com/articles/s41579-020-00502-7.pdf
Reference206 articles.
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2. Chan, C. S. et al. The architecture of iron microbial mats reflects the adaptation of chemolithotrophic iron oxidation in freshwater and marine environments. Front. Microbiol. https://doi.org/10.3389/fmicb.2016.00796 (2016). Microscopic analysis indicates how the morphology of iron-oxidizing bacteria in microbial mats responds to environmental conditions.
3. Melton, E. D., Swanner, E. D., Behrens, S., Schmidt, C. & Kappler, A. The interplay of microbially mediated and abiotic reactions in the biogeochemical Fe cycle. Nat. Rev. Microbiol. 12, 797–808 (2014).
4. Ehrlich, H. L., Newman, D. K. & Kappler, A. Ehrlich’s Geomicrobiology. (CRC Press, 2015).
5. Byrne, J. M. et al. Redox cycling of Fe(II) and Fe(III) in magnetite by Fe-metabolizing bacteria. Science 347, 1473–1476 (2015). First article to demonstrate magnetite could support complete microbial iron cycling; that is, Fe(ii) in magnetite can be used as an electron source by Fe(ii) oxidizers and Fe(iii) can be used by Fe(iii) reducers as an electron acceptor in a cycling fashion.
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