Nitrogen Fixation in Thermophilic Chemosynthetic Microbial Communities Depending on Hydrogen, Sulfate, and Carbon Dioxide

Author:

Nishihara Arisa1,Haruta Shin1,McGlynn Shawn E.1234,Thiel Vera1,Matsuura Katsumi1

Affiliation:

1. Department of Biological Sciences, Tokyo Metropolitan University

2. Earth-Life Science Institute, Tokyo Institute of Technology

3. Biofunctional Catalyst Research Team, RIKEN Center for Sustainable Resource Science

4. Blue Marble Space Institute of Science

Publisher

Japanese Society of Microbial Ecology

Subject

Plant Science,Soil Science,General Medicine,Ecology, Evolution, Behavior and Systematics

Reference77 articles.

1. 1. Alain, K., A. Postec, E. Grinsard, F. Lesongeur, D. Prieur, and A. Godfroy. 2010. Thermodesulfatator atlanticus sp. nov., a thermophilic, chemolithoautotrophic, sulfate-reducing bacterium isolated from a Mid-Atlantic Ridge hydrothermal vent. Int J Syst Evol Microbiol. 60:33-38.

2. 2. Alcamán, M.E., C. Fernandez, A. Delgado, Bergman, and B. Díez. 2015. The cyanobacterium Mastigocladus fulfills the nitrogen demand of a terrestrial hot spring microbial mat. ISME J. 9:2290-2303.

3. 3. Amend, J.P., and E.L. Shock. 2001. Energetics of overall metabolic reactions of thermophilic and hyperthermophilic Archaea and Bacteria. FEMS Microbiol Rev. 25:175-243.

4. 4. Baena, S., N. Perdomo, C. Carvajal, C. Díaz, and B.K.C. Patel. 2011. Desulfosoma caldarium gen. nov., sp. nov., a thermophilic sulfatereducing bacterium from a terrestrial hot spring. Int J Syst Evol Microbiol. 61:732-736.

5. 5. Bebout, B.M., H.W. Paerl, J.E. Bauer, D.E. Canfield, and D.J. Des Marais. 1994. Nitrogen cycling in microbial mat communities: the quantitative importance of N-fixation and other sources of N for primary productivity, p.265-272. In LJ Stal, and P Caumette (ed.), Microbial Mats. Springer-Verlag, Berlin.

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