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1
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0002748956
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Bacteria as multicellular organisms
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For those interested in the history of how the concept of bacterial multicellularity emerged in the last two decades this is a required starting point.
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Shapiro J.A. Bacteria as multicellular organisms. Scientific Am 258 (1988) 82. For those interested in the history of how the concept of bacterial multicellularity emerged in the last two decades this is a required starting point.
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In: Shapiro J.A., and Dworkin M. (Eds). Bacteria as Multicellular Organisms (1997), Oxford University Press, Oxford
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Untersuchungen über bacterien. V. Die aetiologie der milzbrand-krankheit, begründet auf die entwicklungsgeschichte der Bacillus anthracis
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Koch R. Untersuchungen über bacterien. V. Die aetiologie der milzbrand-krankheit, begründet auf die entwicklungsgeschichte der Bacillus anthracis. Beiträge zur biologie der Pflanzen 7 (1877) 277-308
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Koch, R.1
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4
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Untersuchungen über bacterien. IV. Beiträge zur biologie der Bacillen
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It there is any possibility for readers to access this article in the original German, this is a must read. The amazingly accurate descriptions of the multicellular growth patterns of B. subtilis that Cohn made 130 years ago are simply breathtaking!
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Cohn F. Untersuchungen über bacterien. IV. Beiträge zur biologie der Bacillen. Beiträge zur biologie der Pflanzen 7 (1877) 249-276. It there is any possibility for readers to access this article in the original German, this is a must read. The amazingly accurate descriptions of the multicellular growth patterns of B. subtilis that Cohn made 130 years ago are simply breathtaking!
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Beiträge zur biologie der Pflanzen
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Thinking about bacterial populations as multicellular organisms
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Shapiro J.A. Thinking about bacterial populations as multicellular organisms. Annu Rev Microbiol 52 (1998) 81-104
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Shapiro, J.A.1
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6
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Quorum sensing in bacteria: the LuxR-LuxI family of cell density-responsive transcriptional regulators
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Landmark mini-review that first coined the term 'quorum sensing'.
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Fuqua W.C., Winans S.C., and Greenberg E.P. Quorum sensing in bacteria: the LuxR-LuxI family of cell density-responsive transcriptional regulators. J Bacteriol 176 (1994) 269-275. Landmark mini-review that first coined the term 'quorum sensing'.
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Fuqua, W.C.1
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Differential fiu-lacZ fusion regulation linked to Escherichia coli colony development
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Newman D.L., and Shapiro J.A. Differential fiu-lacZ fusion regulation linked to Escherichia coli colony development. Mol Microbiol 33 (1999) 18-32
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Organization of developing Escherichia coli colonies viewed by scanning electron microscopy
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Shapiro J.A. Organization of developing Escherichia coli colonies viewed by scanning electron microscopy. J Bacteriol 169 (1987) 142-156
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Fruiting body formation by Bacillus subtilis
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This was the first paper to use an undomesticated strain of B. subtilis for the study of complex multicellular structures.
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Branda S.S., Gonzalez-Pastor J.E., Ben-Yehuda S., Losick R., and Kolter R. Fruiting body formation by Bacillus subtilis. Proc Natl Acad Sci U S A 98 (2001) 11621-11626. This was the first paper to use an undomesticated strain of B. subtilis for the study of complex multicellular structures.
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Branda, S.S.1
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10
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Multicellular and aggregative behaviour of Salmonella typhimurium strains is controlled by mutations in the agfD promoter
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Romling U., Sierralta W.D., Eriksson K., and Normark S. Multicellular and aggregative behaviour of Salmonella typhimurium strains is controlled by mutations in the agfD promoter. Mol Microbiol 28 (1998) 249-264
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Genes involved in matrix formation in Pseudomonas aeruginosa PA14 biofilms
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Friedman L., and Kolter R. Genes involved in matrix formation in Pseudomonas aeruginosa PA14 biofilms. Mol Microbiol 51 (2004) 675-690
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Vibrio cholerae O1 El Tor, identification of a gene cluster required for the rugose colony type, exopolysaccharide production, chlorine resistance, and biofilm formation
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Yildiz F.H., and Schoolnik G.K. Vibrio cholerae O1 El Tor, identification of a gene cluster required for the rugose colony type, exopolysaccharide production, chlorine resistance, and biofilm formation. Proc Natl Acad Sci U S A 96 (1999) 4028-4033
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Sonenshein A., Hoch J., and Losick R. (Eds), ASM Press, Washington, DC
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In: Sonenshein A., Hoch J., and Losick R. (Eds). Bacillus subtilis and its Closest Relatives (2002), ASM Press, Washington, DC
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15
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33646011232
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Effects of phosphorelay perturbations on architecture, sporulation, and spore resistance in biofilms of Bacillus subtilis
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This paper describes the effect of different environmental conditions of colony morphology. They analyzed how signaling mutants affect architecture and differentiation.
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Veening J.W., Kuipers O.P., Brul S., Hellingwerf K.J., and Kort R. Effects of phosphorelay perturbations on architecture, sporulation, and spore resistance in biofilms of Bacillus subtilis. J Bacteriol 188 (2006) 3099-3109. This paper describes the effect of different environmental conditions of colony morphology. They analyzed how signaling mutants affect architecture and differentiation.
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Veening, J.W.1
Kuipers, O.P.2
Brul, S.3
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Kort, R.5
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16
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Defining the genetic differences between wild and domestic strains of Bacillus subtilis that affect poly-gamma-dl-glutamic acid production and biofilm formation
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Stanley N.R., and Lazazzera B.A. Defining the genetic differences between wild and domestic strains of Bacillus subtilis that affect poly-gamma-dl-glutamic acid production and biofilm formation. Mol Microbiol 57 (2005) 1143-1158
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Stanley, N.R.1
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17
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A LuxS-dependent cell-to-cell language regulates social behavior and development in Bacillus subtilis
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Lombardia E., Rovetto A.J., Arabolaza A.L., and Grau R.R. A LuxS-dependent cell-to-cell language regulates social behavior and development in Bacillus subtilis. J Bacteriol 188 (2006) 4442-4452
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J Bacteriol
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Lombardia, E.1
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Earl A.M., Losick R., and Kolter R. Bacillus subtilis genome diversity. J Bacteriol 189 (2007) 1163-1170
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19
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33745472449
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Interactions between Streptomyces coelicolor and Bacillus subtilis: role of surfactants in raising aerial structures
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Straight P.D., Willey J.M., and Kolter R. Interactions between Streptomyces coelicolor and Bacillus subtilis: role of surfactants in raising aerial structures. J Bacteriol 188 (2006) 4918-4925
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Willey, J.M.2
Kolter, R.3
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20
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33645085864
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A major protein component of the Bacillus subtilis biofilm matrix
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This paper demonstrates, using extracellular complementation, that the major matrix components, an exopolysaccharide and a protein, can be provided by different cells.
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Branda S.S., Chu F., Kearns D.B., Losick R., and Kolter R. A major protein component of the Bacillus subtilis biofilm matrix. Mol Microbiol 59 (2006) 1229-1238. This paper demonstrates, using extracellular complementation, that the major matrix components, an exopolysaccharide and a protein, can be provided by different cells.
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Mol Microbiol
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Branda, S.S.1
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21
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Genes involved in formation of structured multicellular communities by Bacillus subtilis
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Branda S.S., Gonzalez-Pastor J.E., Dervyn E., Ehrlich S.D., Losick R., and Kolter R. Genes involved in formation of structured multicellular communities by Bacillus subtilis. J Bacteriol 186 (2004) 3970-3979
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Branda, S.S.1
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Bacillus subtilis pellicle formation proceeds through genetically defined morphological changes
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Kobayashi K. Bacillus subtilis pellicle formation proceeds through genetically defined morphological changes. J Bacteriol 189 (2007) 4920-4931
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Kobayashi, K.1
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23
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Targets of the master regulator of biofilm formation in Bacillus subtilis
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Chu F., Kearns D.B., Branda S.S., Kolter R., and Losick R. Targets of the master regulator of biofilm formation in Bacillus subtilis. Mol Microbiol 59 (2006) 1216-1228
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Chu, F.1
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24
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Secretion, localization, and antibacterial activity of TasA, a Bacillus subtilis spore-associated protein
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A master regulator for biofilm formation by Bacillus subtilis
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This work was pivotal in defining the genetic circuitry that governs B. subtilis biofilm formation.
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Kearns D.B., Chu F., Branda S.S., Kolter R., and Losick R. A master regulator for biofilm formation by Bacillus subtilis. Mol Microbiol 55 (2005) 739-749. This work was pivotal in defining the genetic circuitry that governs B. subtilis biofilm formation.
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Kearns, D.B.1
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26
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Fredrick K., and Helmann J.D. FlgM is a primary regulator of sigmaD activity, and its absence restores motility to a sinR mutant. J Bacteriol 178 (1996) 7010-7013
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flaD (sinR) mutations affect SigD-dependent functions at multiple points in Bacillus subtilis
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Rashid M.H., and Sekiguchi J. flaD (sinR) mutations affect SigD-dependent functions at multiple points in Bacillus subtilis. J Bacteriol 178 (1996) 6640-6643
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Fujita M., Gonzalez-Pastor J.E., and Losick R. High- and low-threshold genes in the Spo0A regulon of Bacillus subtilis. J Bacteriol 187 (2005) 1357-1368
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Hamon M.A., and Lazazzera B.A. The sporulation transcription factor Spo0A is required for biofilm development in Bacillus subtilis. Mol Microbiol 42 (2001) 1199-1209
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Tortosa P., Albano M., and Dubnau D. Characterization of ylbF, a new gene involved in competence development and sporulation in Bacillus subtilis. Mol Microbiol 35 (2000) 1110-1119
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Identification of catabolite repression as a physiological regulator of biofilm formation by Bacillus subtilis by use of DNA microarrays
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Dubnau D., and Losick R. Bistability in bacteria. Mol Microbiol 61 (2006) 564-572
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