This Article
Right arrow Full Text
Right arrow Full Text (PDF)
Right arrow Alert me when this article is cited
Right arrow Alert me if a correction is posted
Services
Right arrow Similar articles in this journal
Right arrow Similar articles in PubMed
Right arrow Alert me to new issues of the journal
Right arrow Download to citation manager
Right arrowReprints and Permissions
Right arrow Copyright Information
Right arrow Books from ASM Press
Right arrow MicrobeWorld
Citing Articles
Right arrow Citing Articles via HighWire
Right arrow Citing Articles via Google Scholar
Google Scholar
Right arrow Articles by Hasman, H.
Right arrow Articles by Klemm, P.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Hasman, H.
Right arrow Articles by Klemm, P.

 Previous Article  |  Next Article 

Journal of Bacteriology, February 2000, p. 1089-1095, Vol. 182, No. 4
0021-9193/00/$04.00+0
Copyright © 2000, American Society for Microbiology. All rights reserved.

Antigen 43 and Type 1 Fimbriae Determine Colony Morphology of Escherichia coli K-12

Henrik Hasman, Mark A. Schembri, and Per Klemm*

Department of Microbiology, Technical University of Denmark, DK-2800 Lyngby, Denmark

Received 27 September 1999/Accepted 12 November 1999

Colony morphology has been used as an important identification and characterization criterion in bacteriology for many decades. However, the molecular mechanisms underlying the appearance of different colony types have been given little attention. The synthesis of O antigen is defunct in Escherichia coli K-12, and colonies should accordingly only appear to be rough. However, previous reports have noted the presence of different interchangeable colony morphology types. In this study we have addressed the influence of two phase-variable surface structures, antigen 43 and type 1 fimbriae, on colony morphology. Due to differential expression of these structures, four different colony phenotypes could be distinguished. By creating and studying defined mutants of the respective loci, i.e., flu and fim, we conclude that the presence or absence of the corresponding gene products on the cells correlates with the observed colony morphology forms. Interestingly, the habitat specificity of bacteria under static liquid conditions seems to correlate with the colony phenotypes.


* Corresponding author. Mailing address: Department of Microbiology, Bldg. 301, Technical University of Denmark, DK-2800 Lyngby, Denmark. Phone: 45 45 25 25 06. Fax: 45 45 93 28 09. E-mail: impk{at}pop.dtu.dk.


Journal of Bacteriology, February 2000, p. 1089-1095, Vol. 182, No. 4
0021-9193/00/$04.00+0
Copyright © 2000, American Society for Microbiology. All rights reserved.



This article has been cited by other articles:

  • Vejborg, R. M., Klemm, P. (2009). Cellular chain formation in Escherichia coli biofilms. Microbiology 155: 1407-1417 [Abstract] [Full Text]  
  • De La Fuente, L., Burr, T. J., Hoch, H. C. (2008). Autoaggregation of Xylella fastidiosa Cells Is Influenced by Type I and Type IV Pili. Appl. Environ. Microbiol. 74: 5579-5582 [Abstract] [Full Text]  
  • Niba, E. T. E., Naka, Y., Nagase, M., Mori, H., Kitakawa, M. (2008). A Genome-wide Approach to Identify the Genes Involved in Biofilm Formation in E. coli. DNA Res 0: dsm024v1-10 [Abstract] [Full Text]  
  • Ulett, G. C., Valle, J., Beloin, C., Sherlock, O., Ghigo, J.-M., Schembri, M. A. (2007). Functional Analysis of Antigen 43 in Uropathogenic Escherichia coli Reveals a Role in Long-Term Persistence in the Urinary Tract. Infect. Immun. 75: 3233-3244 [Abstract] [Full Text]  
  • Ferrieres, L., Aslam, S. N., Cooper, R. M., Clarke, D. J. (2007). The yjbEFGH locus in Escherichia coli K-12 is an operon encoding proteins involved in exopolysaccharide production. Microbiology 153: 1070-1080 [Abstract] [Full Text]  
  • Ulett, G. C., Webb, R. I., Schembri, M. A. (2006). Antigen-43-mediated autoaggregation impairs motility in Escherichia coli. Microbiology 152: 2101-2110 [Abstract] [Full Text]  
  • Sherlock, O., Dobrindt, U., Jensen, J. B., Munk Vejborg, R., Klemm, P. (2006). Glycosylation of the Self-Recognizing Escherichia coli Ag43 Autotransporter Protein.. J. Bacteriol. 188: 1798-1807 [Abstract] [Full Text]  
  • Beloin, C., Michaelis, K., Lindner, K., Landini, P., Hacker, J., Ghigo, J.-M., Dobrindt, U. (2006). The Transcriptional Antiterminator RfaH Represses Biofilm Formation in Escherichia coli. J. Bacteriol. 188: 1316-1331 [Abstract] [Full Text]  
  • Snyder, J. A., Haugen, B. J., Lockatell, C. V., Maroncle, N., Hagan, E. C., Johnson, D. E., Welch, R. A., Mobley, H. L. T. (2005). Coordinate Expression of Fimbriae in Uropathogenic Escherichia coli. Infect. Immun. 73: 7588-7596 [Abstract] [Full Text]  
  • Sherlock, O., Vejborg, R. M., Klemm, P. (2005). The TibA Adhesin/Invasin from Enterotoxigenic Escherichia coli Is Self Recognizing and Induces Bacterial Aggregation and Biofilm Formation. Infect. Immun. 73: 1954-1963 [Abstract] [Full Text]  
  • Henderson, I. R., Navarro-Garcia, F., Desvaux, M., Fernandez, R. C., Ala'Aldeen, D. (2004). Type V Protein Secretion Pathway: the Autotransporter Story. Microbiol. Mol. Biol. Rev. 68: 692-744 [Abstract] [Full Text]  
  • Sherlock, O., Schembri, M. A., Reisner, A., Klemm, P. (2004). Novel Roles for the AIDA Adhesin from Diarrheagenic Escherichia coli: Cell Aggregation and Biofilm Formation. J. Bacteriol. 186: 8058-8065 [Abstract] [Full Text]  
  • Yang, H.-H., Vinopal, R. T., Grasso, D., Smets, B. F. (2004). High Diversity among Environmental Escherichia coli Isolates from a Bovine Feedlot. Appl. Environ. Microbiol. 70: 1528-1536 [Abstract] [Full Text]  
  • Schembri, M. A., Dalsgaard, D., Klemm, P. (2004). Capsule Shields the Function of Short Bacterial Adhesins. J. Bacteriol. 186: 1249-1257 [Abstract] [Full Text]  
  • Wallecha, A., Correnti, J., Munster, V., van der Woude, M. (2003). Phase Variation of Ag43 Is Independent of the Oxidation State of OxyR. J. Bacteriol. 185: 2203-2209 [Abstract] [Full Text]  
  • Schembri, M. A., Hjerrild, L., Gjermansen, M., Klemm, P. (2003). Differential Expression of the Escherichiacoli Autoaggregation Factor Antigen 43. J. Bacteriol. 185: 2236-2242 [Abstract] [Full Text]  
  • Chung, J. W., Altman, E., Beveridge, T. J., Speert, D. P. (2003). Colonial Morphology of Burkholderia cepacia Complex Genomovar III: Implications in Exopolysaccharide Production, Pilus Expression, and Persistence in the Mouse. Infect. Immun. 71: 904-909 [Abstract] [Full Text]  
  • Kjaergaard, K., Hasman, H., Schembri, M. A., Klemm, P. (2002). Antigen 43-Mediated Autotransporter Display, a Versatile Bacterial Cell Surface Presentation System. J. Bacteriol. 184: 4197-4204 [Abstract] [Full Text]  
  • Schembri, M. A., Givskov, M., Klemm, P. (2002). An Attractive Surface: Gram-Negative Bacterial Biofilms. Sci Signal 2002: re6-re6 [Abstract] [Full Text]  
  • Gabig, M., Herman-Antosiewicz, A., Kwiatkowska, M., Los, M., Thomas, M. S., Wegrzyn, G. (2002). The cell surface protein Ag43 facilitates phage infection of Escherichia coli in the presence of bile salts and carbohydrates. Microbiology 148: 1533-1542 [Abstract] [Full Text]  
  • Déziel, E., Comeau, Y., Villemur, R. (2001). Initiation of Biofilm Formation by Pseudomonas aeruginosa 57RP Correlates with Emergence of Hyperpiliated and Highly Adherent Phenotypic Variants Deficient in Swimming, Swarming, and Twitching Motilities. J. Bacteriol. 183: 1195-1204 [Abstract] [Full Text]  
  • Roche, A. J., McFadden, J. P., Owen, P. (2001). Antigen 43, the major phase-variable protein of the Escherichia coli outer membrane, can exist as a family of proteins encoded by multiple alleles. Microbiology 147: 161-169 [Abstract] [Full Text]  
  • Kjærgaard, K., Schembri, M. A., Hasman, H., Klemm, P. (2000). Antigen 43 from Escherichia coli Induces Inter- and Intraspecies Cell Aggregation and Changes in Colony Morphology of Pseudomonas fluorescens. J. Bacteriol. 182: 4789-4796 [Abstract] [Full Text]