TY - JOUR T1 - Genome of Geobacter sulfurreducens: metal reduction in subsurface environments JF - Science (New York, N.Y.)Science (New York, N.Y.) Y1 - 2003 A1 - Methé, B. A. A1 - Nelson, K. E. A1 - Eisen, J. A. A1 - Paulsen, I. T. A1 - Nelson, W. A1 - Heidelberg, J. F. A1 - Wu, D. A1 - Wu, M. A1 - Ward, N. A1 - Beanan, M. J. A1 - Dodson, R. J. A1 - Madupu, R. A1 - Brinkac, L. M. A1 - Daugherty, S. C. A1 - DeBoy, R. T. A1 - Durkin, A. S. A1 - Gwinn, M. A1 - Kolonay, J. F. A1 - Sullivan, S. A. A1 - Haft, D. H. A1 - J. Selengut A1 - Davidsen, T. M. A1 - Zafar, N. A1 - White, O. A1 - Tran, B. A1 - Romero, C. A1 - Forberger, H. A. A1 - Weidman, J. A1 - Khouri, H. A1 - Feldblyum, T. V. A1 - Utterback, T. R. A1 - Van Aken, S. E. A1 - Lovley, D. R. A1 - Fraser, C. M. KW - Acetates KW - Acetyl Coenzyme A KW - Aerobiosis KW - Anaerobiosis KW - Bacterial Proteins KW - Carbon KW - Chemotaxis KW - Chromosomes, Bacterial KW - Cytochromes c KW - Electron Transport KW - Energy Metabolism KW - Genes, Bacterial KW - Genes, Regulator KW - Genome, Bacterial KW - Geobacter KW - Hydrogen KW - Metals KW - Movement KW - Open Reading Frames KW - Oxidation-Reduction KW - Phylogeny AB - The complete genome sequence of Geobacter sulfurreducens, a delta-proteobacterium, reveals unsuspected capabilities, including evidence of aerobic metabolism, one-carbon and complex carbon metabolism, motility, and chemotactic behavior. These characteristics, coupled with the possession of many two-component sensors and many c-type cytochromes, reveal an ability to create alternative, redundant, electron transport networks and offer insights into the process of metal ion reduction in subsurface environments. As well as playing roles in the global cycling of metals and carbon, this organism clearly has the potential for use in bioremediation of radioactive metals and in the generation of electricity. VL - 302 N1 - http://www.ncbi.nlm.nih.gov/pubmed/14671304?dopt=Abstract ER -