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Research Article

Utilisation de billes de verre comme substrats artificiels pour la caractérisation des communautés microbiennes dans les nappes phréatiques : mise au point méthodologique

Use of glass beads as artificial substrates to characterize biofilms in groundwater: methodological tests

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Pages 52-57 | Published online: 16 Sep 2015

  • Boulos L. , Prevost M. , Barbeau B. , Coallier J. , Desjardins R. (1999) — LIVE/DEAD(r) BacLight(tm): application of a new rapid staining method for direct enumeration of viable and total bacteria in drinking water. J.Microbiol. Methods . 37 : 77-86
  • Bott T.R. (1993) — Aspects of biofilm formation and destruction. Corros. Rev. 11(1-2) : 1-24
  • Chapelle F. (2001) — Ground-water microbiology and geo­chemistry. John Wiley & Sons
  • Characklis W.G. , Marshall K.C. (1990) — Biofilms. John Wiley & Sons
  • Claret C. (1998) — Hyporheic biofilm development on artificial substrata, as a tool for assessing trophic status of aquatic systems: first results. Annls. Limnol. 34(2) : 119-128
  • Claret C. (1998) — A method based on artificial substrates to monitor hyporheic biofilm development. Internat. Rev. Hydrobiol. 83(2) : 135-143
  • Grasshoff K. , Ehrhardt M. , Kremling K. (2009) — Methods of Seawater Analysis , third edition. Wiley-VCH
  • Griebler C. , Lueders T. (2008) — Microbial biodiversity in groundwater ecosystems. Freshwater Biology . 54 : 649-677
  • Langmark J. , Storey M.V. , Ashbolt N.J. , Stenstrom T.A. (2004) — Artificial groundwater treatment: biofilm activity and organic carbon removal performance. Water Research . 38(3) : 740-748
  • Mermillod-Blondin F. , Foulquier A. , Maazouzi C. , Navel S. , Negrutiu Y. , Vienney A. , Simon L. , Marmonier P. (2013) — Ecological assessment of groundwater trophic status by using artificial substrates to monitor biofilm growth and activity. Ecological Indicators . 25 : 230-238
  • Moss J.A. , Nocker A. , Lepo J.E. , Snyder R.A. (2006) — Stability and change in estuarine biofilm bacterial community diversity. Appl. Environ. Microbiol. 72(9) : 5679-5688
  • Oliver J.D. , Wanucha D. (1989) — Survival of Vibrio vulnificus at reduced temperature and elevated nutrient. J. Food Saf. 10 : 79-86
  • Peterson G.L. (1977) — A simplification of the protein assay method of Lowry et al. which is more generally applicable. Analytical Biochemistry . 83(2) : 346-356
  • R Development Core Team . (2008) — R: A language and environment for statistical computing
  • Roszak D.B. , Colwell R.R. (1987) — Survival strategies of bacteria in the natural environment. Microbiol. Rev. 51(3) : 365-379
  • Stoodley P. , Dodds I. , Boyle J.D. , Lappin-Scott H.M. (1999) — Influence of hydrodynamics and nutrients on biofilm structure. J. Appl. Microbiol. Symp. Suppl. 85(28) : 19S-28S
  • Williamson W.M. , Close M.E. , Leonard M.M. , Webber J.B. , Lin S. (2012) — Groundwater biofilm dynamics grown in situ along a nutrient gradient. Ground Water . 50(5) : 690-703
  • Xu H.S. , Roberts N. , Singelton F.L. , Attwell R.W. , Grimes D.J. , Colwell R.R. (1982) — Survival and viability of non­culturable Escherichia coli and Vibrio cholerae in the estuarine and marine environment. Microb. Ecol. 8(4) : 313-323

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