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Molecular basis of the indole-negative reaction in Shigella strains: extensive damages to the tna operon by insertion sequences.


ABSTRACT: The molecular basis of the loss of tryptophan utilization (indole-negative phenotype) of Shigella strains, in effect clones of Escherichia coli, was investigated. Analysis of the tna operon of 23 Shigella strains representing each of the indole-negative serotypes revealed that insertion sequence-mediated insertion and/or deletions damaged the tna operon, leading to inability to convert tryptophan to indole. These events differ for cluster 1, cluster 3, and the outlier Shigella strains, confirming our previous observation of independent origins of these lineages from within E. coli. Parallel loss of the trait and prevalence of indole-negative strains suggest that the trait is deleterious in Shigella strains and advantages those without it.

SUBMITTER: Rezwan F 

PROVIDER: S-EPMC523188 | biostudies-literature | 2004 Nov

REPOSITORIES: biostudies-literature

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Molecular basis of the indole-negative reaction in Shigella strains: extensive damages to the tna operon by insertion sequences.

Rezwan Ferdousi F   Lan Ruiting R   Reeves Peter R PR  

Journal of bacteriology 20041101 21


The molecular basis of the loss of tryptophan utilization (indole-negative phenotype) of Shigella strains, in effect clones of Escherichia coli, was investigated. Analysis of the tna operon of 23 Shigella strains representing each of the indole-negative serotypes revealed that insertion sequence-mediated insertion and/or deletions damaged the tna operon, leading to inability to convert tryptophan to indole. These events differ for cluster 1, cluster 3, and the outlier Shigella strains, confirmin  ...[more]

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