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under biostimulated conditions with high nitrate and nickel pressure. Environmental Science
and Pollution Reserach 15 : 481-491.
110. Boonchayaanant, B., B. Gu, M. Ortiz, and C. Criddle. 2009. Can microbially-generated
hydrogen sulfide account for the trates of U(VI) reduction by a sulfate-reducing bacteria,
DOE-ERSP 4th Annual PI Meeting 2009, Lansdowne, Virginia.
111. Joen, O., S. Kelly, K. Kemner, M. Barnett, W. Burgos, B. Dempsey, and E. Roden. 2004.
Microbial reduction of U(VI) at the solid-water interface. Environmental Science and
Technology 38 : 5649-5655.
112. Sanford, R., Q. Wu, Y. Sung, S. Thomas, B. Amos, E. Prince, and F. Loffler. 2007.
Hexavalent uranium supports growth of Anaeromyxobacter dehalogenans and Geobacter
spp. with lower than predicted biomass yields. Environmental Microbiology 9 : 2885-2893.
113. Wu, Q., R. Sanford, and F. Loffler. 2006. Uranium(VI) reduction by Anaeromyxobacter
dehalogenans strain 2CP-C. Applied and Environmental Microbiology 72 : 3608-3614.
114. Sani, R., B. Peyton, W. Smith, W. Apel, and J. Petersen. 2002. Dissimilatory reduc-
tion of Cr(VI), Fe(III), and U(VI) by Cellulomonas isolates. Applied Microbiology and
Biotechnology 60 : 192-199.
115. Francis, A., C. Dodge, F. Lu, G. Halada, and C. Clayton. 1994. XPS and XANES studies of
uranium reduction by Clostridium sp.. Environmental Science and Technology 28 : 636-639.
116. Francis, A., G. Joshi-Tope, C. Dodge, and J. Gillow. 2002. Biotransformation of uranium and
transition metal citrate complexes by Clostridia. Journal of Nuclear Science and Technology
3 : 935-938.
117. Gao, W., and A. Francis. 2008. Reduction of uranium(VI) to uranium(IV) by Clostridia.
Applied and Environmental Microbiology 74 : 4580-4584.
118. Appukuttan, D., A. Rao, and S. Apte. 2006. Engineering of Deinococcus radiodurans R1
for bioprecipitation of uranium from dilute nuclear waste. Applied and Environmental
Microbiology 72 : 7873-7878.
119. Fredrickson, J., H. Kostandarithes, S. Li, A. Plymale, and M. Daly. 2000. Reduction
of Fe(III), Cr(VI), U(VI), and Tc(VII) by Deinococcus radiodurans R1. Applied and
Environmental Microbiology 66 : 2006-2011.
120. Tebo, B., and A. Obraztsova. 1998. Sulfate-reducing bacterium grows with Cr(VI), U(VI),
Mn(IV), and FE(III) as electron acceptors. FEMS Microbiology Letters 162 : 193-198.
121. Senko, J., G. Zhang, J. McDonough, M. Bruns, and W. Burgos. 2009. Metal reduction at low
pH by a Desulfosporosinus species: implications for the biological treatment of acidic mine
drainage. Geomicrobiology Journal 26 : 71-82.
122. Lovley, D., E. Roden, E. Phillips, and J. Woodward. 1993. Enzyamtic iron and uranium
reduction by sulfate-reducing bacteria. Marine Geology 113 : 41-53.
123. Boonchayaanant, B., P. Kitanidis, and C. Criddle. 2008. Growth and cometabolic reduc-
tion kinetics of a uranium- and sulfate- reducing Desulfovibrio/Clostridia mixed culture:
temperature effects. Biotechnology and Bioengineering 99 : 1107-1119.
124. Pietzsch, K., and W. Babel. 2003. A sulfate-reducing bacterium that can detoxify U(VI) and
obtain energy via nitrate reduction. Journal of Basic Microbiology 43 : 348-361.
125. Pietzsch, K., B. Hard, and W. Babel. 1999. A Desulfovibrio sp. capable of growing by
reducing U(VI). Journal of Basic Microbiology 39 : 365-372.
126. Payne, R., D. Gentry, B. Rapp-Giles, L. Casalot, and J. Wall. 2002. Uranium reduc-
tion by Desulfovibrio desulfuricans strain G20 and a cytochrome c3 mutant. Applied and
Environmental Microbiology 68 : 3129-3132.
127. Kashefi, K., and D. Lovley. 2000. Reduction of Fe(III), Mn(IV), and Toxic Metals at 100 C
by Pyrobaculum islandicum. Applied and Environmental Microbiology 66 : 1050-1056.
128. Shelobolina, E., S. Sullivan, K. O'Neill, K. Nevin, and D. Lovley. 2004. Isolation,
characterization, and U(VI)-reducing potential of a facultatively anaerobic, acid-resistant
bacterium from low-pH, nitrate- and U(VI)-contaminated subsurface sediment and descrip-
tion of Salmonella subterranea sp. nov.. Applied and Environmental Microbiology 70 :
2959-2965.
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