102
Views
42
CrossRef citations to date
0
Altmetric
Original Articles

Direct involvement of an extracellular complex produced by a marine sulfate‐reducing bacterium in deterioration of steel

, , &
Pages 121-134 | Received 09 Sep 1997, Accepted 23 Oct 1997, Published online: 28 Jan 2009

References

  • Beech, IB , 1990. Biofilm formation on metal surfaces . City of London Polytechnic, CNAA; 1990, [PhD thesis].
  • Beech, IB , and Cheung, CWS , 1995. Interactions of exopolymers produced by sulphate‐reducing bacteria with metal ions , Int Biodeter Biodegrad 35 (1995), pp. 59–72.
  • Beech, IB , Cheung, CWS , Johnson, DB , and Smith, JR , 1996a. Comparative studies of bacterial biofilms on steel surfaces using techniques of atomic microscopy and environmental scanning electron microscopy , Biofouling 10 (1996a), pp. 65–77.
  • Beech, IB , Edyvean, RGJ , Cheung, CWS , and Turner, A , 1995. "Bacteria and corrosion in potable water mains". In: Tiller, AK , and Sequeira, CAC , eds. Microbial corrosion . London: Institute of Materials; 1995. pp. 328–337.
  • Beech, IB , and Gaylarde, CC , 1991. Microbial polysaccharides and corrosion , Int Biodeter 27 (1991), pp. 95–107.
  • Beech, IB , Gaylarde, CC , Smith, JJ , and Geesey, GG , 1991. Extracellular polysaccharides from Desul‐fovibrio desulfuricans and Pseudomonas fluorescens in the presence of mild and stainless steel , Appl Microbiol Biotechnol 25 (1991), pp. 65–71.
  • Beech, IB , Zinkevich, V , Tapper, RC , Gubner, R , and Avci, R , 1996b. "The interaction of exopolymers produced by marine sulphate‐reducing bacteria with iron". In: Sand, W , ed. Biodeterioration and biodegradation . Vol. Volume 133, Dechema Monographs. Frankfurt: Dechema; 1996b. pp. 333–338.
  • Beveridge, TJ , and Doyle, RJ , 1989. Metal ions and bacteria . New York: John Wiley; 1989.
  • Bradford, M , 1976. A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein‐dye binding , Anal Biochem 72 (1976), pp. 248–252.
  • Bradley, G , 1985. An investigation into the structure and functional aspects of the cell wall of Desulfovibrio . City of London Polytechnic, CNAA; 1985, [PhD thesis].
  • Chaplin, MF , and Kennedy, JF , 1986. Carbohydrate analysis: a practical approach . Oxford: IRL Press; 1986.
  • Cheung, CWS , 1995. Biofilms of marine sulphate‐reducing bacteria on mild steel . University of Portsmouth; 1995, [PhD thesis].
  • Costerton, JW , Chang, KJ , Geesey, GG , Ladd, TI , Nickel, JC , Dasgupta, M , and Marrie, TJ , 1987. Bacterial biofilms in nature and disease , Annu Rev Microbiol 41 (1987), pp. 435–464.
  • Dzandu, JK , Deh, ME , Barratt, DL , and Wise, GE , 1984. Detection of erythrocyte membrane proteins, sialoglycoproteins, and lipids in the same polyacrylamide gel using a double‐staining technique , Proc Natl Acad Sci USA 81 (1984), pp. 1733–1737.
  • Feio, MJ , Beech, IB , Carepo, M , Lopes, J , Cheung, S , Franco, R , Guezennec, J , Smith, J , Mitchell, J , Moura, JJG , and Lino, AR , 1998. Isolation and characterisation of a novel sulfate‐reducing bacterium of the Desulforibrio genus , Anaerobe. (1998), In press.
  • Ford, TE , Maki, JS , and Mitchell, R , 1987. Metal binding bacterial exopolymers and corrosion process . Corrosion/87, paper no 380. Houston, TX: National Association of Corrosion Engineers; 1987.
  • Geesey, GG , and Jang, L , 1989. "Extracellular polymers for metal binding". In: Beveridge, TJ , and Doyle, RJ , eds. Bacterial interactions with metallic ions . New York: John Wiley & Sons; 1989. pp. 223–247.
  • Geesey, GG , Mittelman, MW , Iwaoka, T , and Griffiths, PR , 1986. Role of bacterial exopolymers in the deterioration of metallic copper surfaces , Mater Perform 25 (1986), pp. 37–40.
  • Gubner, R , and Beech, I , 1996. "The advantages of performing microbial corrosion studies using continuous culture systems". In: Sand, W , ed. Biodeterioration and biodegradation . Vol. vol. 133, Dechema Monographs. Frankfurt: Dechema; 1996. pp. 185–191.
  • Hamilton, WA , 1985. Sulphate‐reducing bacteria and anaerobic corrosion , Annu Rev Microbiol 39 (1985), pp. 195–217.
  • Laemmli, UK , 1970. Cleavage of structural proteins during the assembly of the head of bacterio‐phage T4 , Nature 227 (1970), pp. 680–685.
  • Lee, W , Lewandowski, Z , Nielsen, PH , and Hamilton, WA , 1995. Role of sulphate‐reducing bacteria in corrosion of mild steel: a review , Biofouling 8 (1995), pp. 165–194.
  • Marshall, KC , 1992. Biofilms: an overview of bacterial adhesion, activity, and control at surfaces , ASM News 58 (1992), pp. 202–207.
  • Nivens, DE , Nichols, PD , Henson, JM , Geesey, GG , and White, DC , 1986. Reversible acceleration of the corrosion of AISI 304 stainless steel exposed to seawater induced by growth and secretions of the marine bacterium Vibrio natriegens , Corrosion 42 (1986), pp. 204–210.
  • Ochynski, FW , and Postgate, JR , 1963. "Some biological differences between fresh water and salt water strains of sulphate‐reducing bacteria". In: Openheimer, CH , and Thomas, CC , eds. Marine microbiology . Springfield, IL. 1963. pp. 426–441.
  • Postgate, J , 1984. Sulphate reducing bacteria . Cambridge: Cambridge University Press; 1984.
  • Raymond, KN , Müller, G , and Matzanke, BF , 1984. Complexation of iron by siderophores: a review of their solution, structural chemistry and biological function , Topics Curr Chem 123 (1984), pp. 49–102.
  • Sutherland, IW , 1985. Biosynthesis and composition of gram negative bacterial extracellular and wall polysaccharides , Annu Rev Microbiol 39 (1985), pp. 243–262.
  • White, DC , Nivens, PD , Nichols, AT , Kerger, BD , Henson, JM , Geesey, GG , and Clarke, CK , 1985. Corrosion of steel induced by aerobic bacteria and their extracellular polymers . Presented at Proceedings of international workshop on biodeterioration held at the University of La Plata. Argentina, March, 1985.
  • Zinkevich, V , Kang, H , Bogdarina, I , Hill, MA , and Beech, IB , 1996. The characterisation of exopolymers produced by different species of marine sulphate‐reducing bacteria , Int Biodeter Biodegrad 37 (1996), pp. 163–172.

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.