Simulation of the impacts of diagenesis or low-grade metamorphism on neutrophilic microaerobic Fe(II)-oxidizing biofilm
Author:
Publisher
Springer Science and Business Media LLC
Subject
General Earth and Planetary Sciences
Link
http://link.springer.com/content/pdf/10.1007/s11430-013-4730-2.pdf
Reference53 articles.
1. Banfield J F, Welch S A, Zhang H, et al. 2000. Aggregation-based crystal growth and microstructure development in natural iron oxyhydroxide biomineralization products. Science, 289: 751–754
2. Battistuzzi F U, Feijao A, Hedges B. 2004. A genomic timescale of prokaryote evolution: Insights into the origin of methanogenesis, phototrophy, and the colonization of land. BMC Evol Biol, 4: 44, doi: 10.1186/1471-2148-4-44
3. Bekker A, Slack J F, Planavsky N, et al. 2010. Iron formation: The sedimentary product of a complex interplay among mantle, tectonic, oceanic, and biospheric processes. Econ Geol, 105: 467–508
4. Bird L J, Bonnefoy V, Newman D K. 2011. Bioenergetic challenges of microbial iron metabolisms. Trends Microbiol, 19: 330–340
5. Brocks J J, Buick R, Summons R E, et al. 2003. A reconstruction of Archean biological diversity based on molecular fossils from the 2.78 to 2.45 billion-year-old Mount Bruce Supergroup, Hamersley Basin, Western Australia. Geochim Cosmochim Acta, 67: 4321–4335
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