327
Views
20
CrossRef citations to date
0
Altmetric
Original Articles

Aerobic Reduction of Chromium(VI) by Pseudomonas corrugata 28: Influence of Metabolism and Fate of Reduced Chromium

, , , , , & show all
Pages 173-185 | Received 26 Jul 2010, Accepted 01 Nov 2010, Published online: 07 Dec 2011

REFERENCES

  • Ackerley , D F , Gonzalez , C F , Park , C H , Blake , R II , Keyhan , M and Matin , A . 2004 . Chromate-reducing properties of soluble flavoproteins from Pseudomonas putida and Escherichia coli . Appl Environ Microbiol , 70 : 873 – 882 .
  • Al Hasin , A , Gurman , S J , Murphy , L M , Perry , A , Smith , T J and Gardiner , P HE . 2010 . Remediation of chromium(VI) by a methane-oxidizing bacterium . Environ Sci Technol , 44 : 400 – 405 .
  • Baes , C F and Mesmer , R E . 1976 . The hydrolysis of cations , New York, NY : Wiley .
  • Bartlett , R J and James , B R . 1996 . “ Chromium ” . In Methods of Soil Analysis Part 3—Chemical Methods , Edited by: Sparks , D L . 683 – 701 . Madison, WI : Soil Science Society of American and American Society of Agronomy .
  • Bazylinski , D A and Moskowitz , B M . 1997 . “ Microbial biomineralization of magnetic iron minerals: Microbiology, magnetism and environmental significance ” . In Geomicrobiology: Interactions between Microbes and Minerals , Edited by: Banfield , J F and Nealson , K H . 181 – 223 . Washington, DC : Mineralogical Society of America .
  • Bencheikh-Latmani , R , Obraztova , A , Mackey , M R , Ellisman , M H and Tebo , B M . 2007 . Toxicity of Cr(III) to Shewanella sp. strain MR-4 during Cr(VI) reduction . Environ Sci Technol , 41 : 214 – 220 .
  • Benzerara , K , Menguy , N , López-García , P , Yoon , T-H , Kazimierczak , J , Tyliszczak , T , Guyot , F and Brown , G E Jr. 2006 . Nanoscale detection of organic signatures in carbonate microbialites . Proc Nation Acad Sci , 103 : 9440 – 9445 .
  • Biebl , H and Pfennig , N . 1981 . “ Isolation of members of the family Rhodospirillaceae ” . In The Prokaryotes A Handbook on Habitats, Isolation and Identification of Bacteria , Edited by: Starr , M P , Stolp , J , Truper , H G , Balows , A and Schlegel , H G . 267 – 273 . Berlin : Springer .
  • Boese , J , Osanna , A , Jacobsen , C and Kirz , J . 1997 . Carbon edge XANES spectroscopy of amino acids and peptides . J Electron Spectrosc Related Phenom , 85 : 9 – 15 .
  • Bopp , L H and Ehrlich , H L . 1988 . Chromate resistance and reduction in Pseudomonas fluorescens strain LB300 . Arch Microbiol , 150 : 426 – 431 .
  • Cheng , Y , Yan , F , Huang , F , Chu , W , Pan , D , Chen , Z , Zheng , J , Yu , M , Lin , Z and Wu , Z . 2010 . Bioremediation of Cr(VI) and immobilization as Cr(III) by Ochrobactrum anthropi . Environ Sci Technol , 44 : 6357 – 6363 . (published online July 7, 2010) DOI:10.1021/es100198v
  • Claessens , J , van Lith , Y , Laverman , A M and Van Cappellen , P . 2006 . Acid–base activity of live bacteria: implications for quantifying cell wall charge . Geochim Cosmochim Acta , 70 : 267 – 276 .
  • Daulton , T L , Little , B J , Jones-Meehan , J , Blom , D A and Allard , L F . 2007 . Microbial reduction of chromium from the hexavalent to divalent state . Geochim Cosmochim Acta , 71 : 556 – 565 .
  • Dynes , J J , Tyliszczak , T , Araki , T , Lawrence , J R , Swerhone , G W , Leppard , G G and Hitchcock , A P . 2006 . Speciation and quantitative mapping of metal species in microbial biofilms using scanning transmission X-ray microscopy . Environ Sci Technol , 40 : 1556 – 1565 .
  • Fein , J B , Fowle , D A , Cahill , J , Kemner , K , Boyanov , M and Bunker , B . 2002 . Nonmetabolic reduction of Cr(VI) by baterial surfaces under nutrient-absent conditions . Geomicrobiol J , 19 : 369 – 382 .
  • Fendorf , S , Wielinga , B and Hansel , C M . 2000 . Chromium transformations in natural environments: The role of biological and abiological processes in chromium(VI) reduction . Intern Geol Rev , 42 : 691 – 701 .
  • Fischer , L , Brümmer , G W and Barrow , N J . 2007 . Observation and modelling of the reactions of 10 metals with goethite: Adsorption and diffusion processes . Eur J Soil Sci , 58 : 1304 – 1315 .
  • Flury , B , Frommer , J , Eggenberger , U , Mäder , U , Nachtegaal , M and Kretzschmar , R . 2009 . Assessment of long-term performance and chromate reduction mechanisms in a field scale permeable reactive barrier . Environ Sci Technol , 43 : 6786 – 6792 .
  • Fortin , D , Ferris , F G and Beveridge , T J . 1997 . “ Surface-mediated mineral development by bacteria ” . In Geomicrobiology: Interactions between Microbes and Minerals , Edited by: Banfield , J F and Nealson , K H . 161 – 180 . Washington, DC : Mineralogical Society of America .
  • Frommer , J , Nachtegaal , M , Czekaj , I and Kretzschmar , R . 2010 . The Cr X-ray absorption near K-edge structure of poorly crystalline Fe(III)-Cr(III)-oxyhydroxides . Am Mineral , 95 : 1202 – 1213 .
  • Frommer , J , Nachtegaal , M , Czekaj , I , Weng , T-C and Kretzschmar , R . 2009 . X-ray absorption and emission spectroscopy of CrIII (hydr)oxides: Analysis of the K-pre-edge region . J Phys Chem A , 113 : 12171 – 12178 .
  • Grolimund , D , Trainor , T P , Fitts , J P , Kendelewicz , T , Liu , P , Chambers , S A and Brown , G E Jr. 1999 . Identification of Cr species at the aqueous solution-hematite interface after Cr(VI)-Cr(III) reduction using GI-XAFS and Cr L-edge NEXAFS . J Synchrotr Rad , 6 : 612 – 614 .
  • Hunter , R C , Hitchcock , A P , Dynes , J J , Obst , M and Beveridge , T J . 2008 . Mapping the speciation of iron in Pseudomonas aeruginosa biofilms using scanning transmission X-ray microscopy . Environ Sci Technol , 42 : 8766 – 8772 .
  • Jacobson , B L , He , J J , Vermersch , P S , Lemon , D D and Quiocho , F A . 1991 . Engineered interdomain disulfide in the periplasmic receptor for sulfate transport reduced flexibility . J Biol Chem , 266 : 5220 – 5225 .
  • Jacobsen , C , Wirick , S , Flynn , G and Zimba , C . 2000 . Soft x-ray spectroscopy from image sequences with sub-100nm spatial resolution . J Microsc , 197 : 173 – 184 .
  • Katz , S A and Salem , H . 1994 . The Biological and Environmental Chemistry of Chromium , New York, NY : VCH Publishers .
  • Koch , AL. 2007 . “ Growth Measurement ” . In Methods for General and Molecular Microbiology , Edited by: Reddy , C A . 172 – 199 . Washington, DC : ASM Press .
  • Lerotic , M , Jacobsen , C , Schäfer , T and Vogt , S . 2004 . Cluster analysis of soft X-ray spectromicroscopy data . Ultramicrosc , 100 : 35 – 57 .
  • Lovley , DR. 1993 . Dissimilatory metal reduction . Annu Rev Microbiol , 47 : 263 – 290 .
  • Lovley , D R and Phillips , E JP . 1994 . Reduction of chromate by Desulfovibrio vulgaris and its c3 cytochrome . Appl Environ Microbiol , 60 : 726 – 728 .
  • Martell , A E , Smith , R M and Motekaitis , R J . 2004 . NIST Critically Selected Stability Constants of Metal Complexes , Gaithersburg, MD : National Institute of Standards and Technology .
  • Mergeay , M , Nies , D , Schlegel , H G , Gerits , J , Charles , P and Van Gijsegem , F . 1985 . Alcaligenes eutrophus CH34 is a facultative chemolithotroph with plasmid-bound resistance to heavy metals . J Bacteriol , 162 : 328 – 334 .
  • Nies , DH. 2003 . Efflux-mediated heavy metal resistance in prokaryotes . FEMS Microbiol Rev , 27 : 313 – 339 .
  • Opperman , D J , Piater , L A and van Heerden , E . 2008 . A novel chromate reductase from Thermus scotoductus SA-01 related to old yellow enzyme . J Bacteriol , 190 : 3076 – 3082 .
  • Pal , A and Paul , A K . 2004 . Aerobic chromate reduction by chromate-resistant bacteria isolated from serpentine soil . Microbiol Res , 159 : 347 – 354 .
  • Park , C H , Keyhan , M , Wielinga , B , Fendorf , S and Matin , A . 2000 . Purification to homogeneity and characterization of a novel Pseudomonas putida chromate reductase . Appl Environ Microbiol , 66 : 1788 – 1795 .
  • Pilkington , E S and Smith , P R . 1967 . The spectrophotometric determination of chromium in ilmenite . Anal Chim Acta , 39 : 321 – 328 .
  • Rai , D , Sass , B M and Moore , D A . 1987 . Chromium(III) hydrolysis constants and solubility of chromium(III) hydroxide . Inorg Chem , 26 : 345 – 349 .
  • Schwarzenbach , R P , Gschwend , P M and Imboden , D M . 2003 . Environmental Organic Chemistry , New York : Wiley-Interscience .
  • Sekowska , A , Kung , H-F and Danchin , A . 2000 . Sulfur metabolism in Escherichia coli and related bacteria: Facts and fiction . J Mol Microbiol Biotechnol , 2 : 145 – 177 .
  • Silver , S. 1997 . “ The bacterial view of the periodic table: Specific functions for all elements ” . In Geomicrobiology: Interactions between Microbes and Minerals , Edited by: Banfield , J F and Nealson , K H . 345 – 360 . Washington, D.C. : Mineralogical society of America .
  • Suzuki , T , Miyata , N , Horitsu , H , Kawai , K , Takamizawa , K , Tai , Y and Okazaki , M . 1992 . NAD(P)H-dependent chromium(VI) reductase of Pseudomonas ambigua G-1: A Cr(V) intermediate is formed during the reduction of Cr(VI) to Cr(III) . J Bacteriol , 174 : 5340 – 5345 .
  • Toner , B , Fakre , S , Villalobos , M , Warwick , T and Sposito , G . 2005 . Spatially resolved characterization of biogenic manganese oxide production within a bacterial biofilm . Appl Environ Microbiol , 71 : 1300 – 1310 .
  • Viti , C , Decorosi , F , Mini , A , Tatti , E and Giovannetti , L . 2009 . Involvement of the oscA gene in the sulphur starvation response and Cr(VI) resistance in Pseudomonas corrugata 28 . Microbiol , 155 : 95 – 105 .
  • Viti , C , Decorosi , F , Tatti , E and Giovannetti , L . 2007 . Characterization of chromate-resistant and -reducing bacteria by traditional means and by a high-throughput phenomic technique for bioremedation purposes . Biotechnol Prog , 23 : 553 – 559 .
  • Viti , C , Mini , A , Ranalli , G , Lustrato , G and Giovannetti , L . 2006 . Response of microbial communities to different doses of chromate in soil microcosms . Appl Soil Ecol , 34 : 125 – 139 .
  • Viti , C , Pace , A and Giovannetti , L . 2003 . Characterization of Cr(VI)-resistant bacteria isolated from contaminated soil by tannery activity . Curr Microbiol , 46 : 1 – 5 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.