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Summers ZM, Ueki T, Ismail W, Haveman SA, Lovley DR.  2012.  Laboratory evolution of Geobacter sulfurreducens for enhanced growth on lactate via a single-base-pair substitution in a transcriptional regulator.. ISME J. 6(5):975-83.
Richter H, Lanthier M, Nevin KP, Lovley DR.  2007.  Lack of electricity production by Pelobacter carbinolicus indicates that the capacity for Fe(III) oxide reduction does not necessarily confer electron transfer ability to fuel cell anodes.. Appl Environ Microbiol. 73(16):5347-53.
Banerjee A, Leang C, Ueki T, Nevin KP, Lovley DR.  2014.  Lactose-inducible system for metabolic engineering of Clostridium ljungdahlii.. Appl Environ Microbiol. 80(8):2410-6.
Rotaru A-E, Woodard TL, Nevin KP, Lovley DR.  2015.  Link between capacity for current production and syntrophic growth in Geobacter species.. Front Microbiol. 6:744.
Lovley DR.  2012.  Long-range electron transport to Fe(III) oxide via pili with metallic-like conductivity.. Biochem Soc Trans. 40(6):1186-90.
Tan Y, Adhikari RY, Malvankar NS, Ward JE, Nevin KP, Woodard TL, Smith JA, Snoeyenbos-West OL, Franks AE, Tuominen MT et al..  2016.  The Low Conductivity of Geobacter uraniireducens Pili Suggests a Diversity of Extracellular Electron Transfer Mechanisms in the Genus Geobacter.. Front Microbiol. 7:980.
Xiao K, Malvankar NS, Shu C, Martz E, Lovley DR, Sun X.  2016.  Low Energy Atomic Models Suggesting a Pilus Structure that could Account for Electrical Conductivity of Geobacter sulfurreducens Pili.. Sci Rep. 6:23385.