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Original Articles

The Influence of Carbon Source on the Products of Dissimilatory Iron Reduction

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Pages 451-462 | Received 24 Feb 2009, Accepted 15 Apr 2009, Published online: 16 Sep 2009

REFERENCES

  • Canfield , D E and Marais , D JD . 1993 . Biogeochemical cycles of carbon, sulfur, and free oxygen in a microbial mat . Geochimica Et Cosmochimica Acta , 57 : 3971 – 3984 .
  • Cheah , S F , Kraemer , S M , Cervini-Silva , J and Sposito , G . 2003 . Steady-state dissolution kinetics of goethite in the presence of desferrioxamine B and oxalate ligands: implications for the microbial acquisition of iron . Chemical Geology , 198 : 63 – 75 .
  • Cooper , D C , Picardal , F , Rivera , J and Talbot , C . 2000 . Zinc immobilization and magnetite formation via ferric oxide reduction by Shewanella putrefaciens 200 . Environmental Science & Technology , 34 : 100 – 106 .
  • Cooper , D C , Picardal , F F and Coby , A J . 2006 . Interactions between microbial iron reduction and metal geochemistry: Effect of redox cycling on transition metal speciation in iron bearing sediments . Environmental Science & Technology , 40 : 1884 – 1891 .
  • Cornell , R M and Schwertmann , U . 1979 . Influence of organic anions on the crystallization of ferrihydrite . Clays and Clay Minerals , 27 : 402 – 410 .
  • Cornell , R M and Schwertmann , U . 1996 . The iron oxides: Structure, properties, reactions, occurrence and uses , Weinheim : VCH .
  • Essington , M E , Nelson , J B and Holden , W L . 2005 . Gibbsite and goethite solubility: The influence of 2-ketogluconate and citrate . Soil Science Society of America Journal , 69 : 996 – 1008 .
  • Finke , N , Vandieken , V and Jorgensen , B B . 2007 . Acetate, lactate, propionate, and isobutyrate as electron donors for iron and sulfate reduction in Arctic marine sediments, Svalbard . Fems Microbiology Ecology , 59 : 10 – 22 .
  • Fredrickson , J K , Kota , S , Kukkadapu , R K , Liu , C X and Zachara , J M . 2003 . Influence of electron donor/acceptor concentrations on hydrous ferric oxide (HFO) bioreduction . Biodegradation , 14 : 91 – 103 .
  • Fredrickson , J K , Zachara , J M , Kennedy , D W , Dong , H L , Onstott , T C , Hinman , N W and Li , S M . 1998 . Biogenic iron mineralization accompanying the dissimilatory reduction of hydrous ferric oxide by a groundwater bacterium . Geochimica Et Cosmochimica Acta , 62 : 3239 – 3257 .
  • Genin , J MR , Aissa , R , Gehin , A , Abdelmoula , M , Benali , O , Ernstsen , V , Ona-Nguema , G , Upadhyay , C and Ruby , C . 2005 . Fougerite and FeII-III hydroxycarbonate green rust; ordering drprotonation and/or cation substitution; structure of hydrotalcite-like compounds and mythic ferrosic hydroxide Fe(OH)((2+x)) . Solid State Sci , 7 : 545 – 572 .
  • Genin , J MR , Refait , P , Bourrie , G , Abdelmoula , M and Trolard , F . 2001 . Structure and stability of the Fe(II)-Fe(III) green rust “fougerite” mineral and its potential for reducing pollutants in soil solutions . Appl Geochem , 16 : 559 – 570 .
  • Glasauer , S , Weidler , P G , Langley , S and Beveridge , T J . 2003 . Controls on Fe reduction and mineral formation by a subsurface bacterium . Geochimica Et Cosmochimica Acta , 67 : 1277 – 1288 .
  • Gu , B H , Schmitt , J , Chen , Z , Liang , L Y and McCarthy , J F . 1995 . Adsorption and desorption of different organic matter fractions on iron oxide . Geochimica Et Cosmochimica Acta , 59 : 219 – 229 .
  • Jaisi , D P , Kukkadapu , R K , Eberl , D D and Dong , H L . 2005 . Control of Fe(III) site occupancy on the rate and extent of microbial reduction of Fe(III) in nontronite . Geochimica Et Cosmochimica Acta , 69 : 5429 – 5440 .
  • Kostka , J E , Haefele , E , Viehweger , R and Stucki , J W . 1999 . Respiration and dissolution of iron(III) containing clay minerals by bacteria . Environmental Science & Technology , 33 : 3127 – 3133 .
  • Kukkadapu , R K , Zachara , J M , Fredrickson , J K , Kennedy , D W , Dohnalkova , A C and McCready , D E . 2005 . Ferrous hydroxy carbonate is a stable transformation product of biogenic magnetite . American Mineralogist , 90 : 510 – 515 .
  • Lee , J H , Roh , Y , Kim , K W and Hu , H G . 2007 . Organic acid-dependent iron mineral formation by a newly isolated iron-reducing bacterium, Shewanella sp. HN-41 . Geomicrobiology Journal , 24 : 31 – 41 .
  • Lee , S H , Lee , I S and Roh , Y . 2003 . Biomineralization of a poorly crystalline Fe(III) oxide, akaganeite, by an anaerobic Fe(III)-reducing bacterium (Shewanella alga) isolated from marine environment . Geosciences Journal , 7 : 217 – 226 .
  • Liu , C G , Zachara , J M , Gorby , Y A , Szecsody , J E and Brown , C F . 2001 . Microbial reduction of Fe(III) and sorption/precipitation of Fe(II) on Shewanella putrefaciens strain CN32 . Environmental Science & Technology , 35 : 1385 – 1393 .
  • Lovley , D R . 1991 . Dissimilatory Fe(Iii) and Mn(Iv) reduction . Microbiological Reviews , 55 : 259 – 287 .
  • Lovley , D R . 1995 . Microbial reduction of iron, manganese, and other metals . Advances in Agronomy, Vol 54 , 54 : 175 – 231 .
  • Lovley , D R and Phillips , E JP . 1986 . Organic-matter mineralization with reduction of ferric iron in anaerobic sediments . Applied and Environmental Microbiology , 51 : 683 – 689 .
  • Lovley , D R and Phillips , E JP . 1988 . Novel mode of microbial energy-metabolism – organic-carbon oxidation coupled to dissimilatory reduction of iron or manganese . Applied and Environmental Microbiology , 54 : 1472 – 1480 .
  • Lovley , D R and Phillips , E JP . 1989 . Requirement for a microbial consortium to completely oxidize glucose in Fe(III)-reducing sediments . Applied and Environmental Microbiology , 55 : 3234 – 3236 .
  • Mcmahon , P B and Chapelle , F H . 1991 . Microbial-production of organic-acids in aquitard sediments and its role in aquifer geochemistry . Nature , 349 : 233 – 235 .
  • Myers , C R and Nealson , K H . 1988 . Bacterial manganese reduction and growth with manganese oxide as the sole electron-acceptor . Science , 240 : 1319 – 1321 .
  • Nealson , K H and Ew dJ , P W . 1983 . “ Microbial oxidation and reduction of manganese and iron ” . In Biomineralization and biological metal accumulation , D. Reidel Publishing Company . Anonymous (Ed.)
  • Nealson , K H and Saffarini , D . 1994 . Iron and manganese in anaerobic respiration – environmental significance, physiology, and regulation . Annual Review of Microbiology , 48 : 311 – 343 .
  • O'Loughlin , E J , Larese-Casanova , P and Cook , R . 2007 . Green rust formation from bioreduction of γ-FeOOH (Lepidocrocite): comparison of several Shewanella species . Geomicrobiology Journal , 24 : 211 – 230 .
  • Ona-Nguema , G , Abdelmoula , M , Jorand , F , Benali , O , Gehin , A , Block , J C and Genin , J MR . 2002 . Iron(II,III) hydroxycarbonate green rust formation and stabilization from lepidocrocite bioreduction . Environmental Science & Technology , 36 : 16 – 20 .
  • Parmar , N , Gorby , Y A , Beveridge , T J and Ferris , F G . 2001 . Formation of green rust and immobilization of nickel in response to bacterial reduction of hydrous ferric oxide . Geomicrobiology Journal , 18 : 375 – 385 .
  • Pinchuk , G E , Ammons , C , Culley , D E , Li , S MW , McLean , J S , Romine , M F , Nealson , K H , Fredrickson , J K and Beliaev , A S . 2008 . Utilization of DNA as a sole source of phosphorus, carbon, and energy by Shewanella spp.: Ecological and physiological implications for dissimilatory metal reduction . Applied and Environmental Microbiology , 74 : 1198 – 1208 .
  • Roden , E E . 2006 . Geochemical and microbiological controls on dissimilatory iron reduction . Comptes Rendus Geoscience , 338 : 456 – 467 .
  • Roden , E E and Urrutia , M M . 2002 . Influence of biogenic Fe(II) on bacterial crystalline Fe(III) oxide reduction . Geomicrobiology Journal , 19 : 209 – 251 .
  • Roden , E E and Zachara , J M . 1996 . Microbial reduction of crystalline iron(III) oxides: Influence of oxide surface area and potential for cell growth . Environmental Science & Technology , 30 : 1618 – 1628 .
  • Roh , Y , Gao , H C , Vali , H , Kennedy , D W , Yang , Z K , Gao , W M , Dohnalkova , A C , Stapleton , R D , Moon , J W , Phelps , T J , Fredrickson , J K and Zhou , J Z . 2006 . Metal reduction and iron biomineralization by a psychrotolerant Fe(III)-reducing bacterium, Shewanella sp strain PV-4 . Applied and Environmental Microbiology , 72 : 3236 – 3244 .
  • Salas , E C . 2008 . Studies on the influence of bacteria and carbon souce on the products of dissimilatory iron reduction , University of Southern California .
  • Schwertmann , U . 1966 . Inhibitory effect of soil organic matter on crystallization of amorphous ferric hydroxide . Nature , 212 : 645
  • Scott , J H and Nealson , K H . 1994 . A biochemical-study of the intermediary carbon metabolism of shewanella-putrefaciens . Journal of Bacteriology , 176 : 3408 – 3411 .
  • Stapleton , R D , Sabree , Z L , Palumbo , A V , Moyer , C L , Devol , A H , Roh , Y and Zhou , J Z . 2005 . Metal reduction at cold temperatures by Shewanella isolates from various marine environments . Aquatic Microbial Ecology , 38 : 81 – 91 .
  • Stookey , L L . 1970 . Ferrozine—a new spectrophotometric reagent for iron . Analytical Chemistry , 42 : 779 – 781 .
  • Stumm , W and Morgan , J J . 1996 . Aquatic chemistry: Chemical equilibria and rates in natural waters , Michigan : Wiley .
  • Tang , Y J , Meadows , A L , Kirby , J and Keasling , J D . 2007 . Anaerobic central metabolic pathways in Shewanella oneidensis MR-1 reinterpreted in the light of isotopic metabolite Labeling . Journal of Bacteriology , 189 : 894 – 901 .
  • Zachara , J M , Fredrickson , J K , Li , S M , Kennedy , D W , Smith , S C and Gassman , P L . 1998 . Bacterial reduction of crystalline Fe3+ oxides in single phase suspensions and subsurface materials . American Mineralogist , 83 : 1426 – 1443 .
  • Zachara , J M , Fredrickson , J K , Smith , S C and Gassman , P L . 2001 . Solubilization of Fe(III) oxide-bound trace metals by a dissimilatory Fe(III) reducing bacterium . Geochimica Et Cosmochimica Acta , 65 : 75 – 93 .
  • Zachara , J M , Kukkadapu , R K , Fredrickson , J K , Gorby , Y A and Smith , S C . 2002 . Biomineralization of poorly crystalline Fe(III) oxides by dissimilatory metal reducing bacteria (DMRB) . Geomicrobiology Journal , 19 : 179 – 207 .

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