Comprehensive transposon mutant library of Pseudomonas aeruginosa

David H. Spencer, Eric Haugen, Rajinder Kaul, Maynard V. Olson, Christopher K. Raymond, Michael A. Jacobs, Chunrong Liu, Colin Manoil, Iyarit Thaipisuttikul, Ashley Alwood, Stephen A. Ernst, Oliver Will, Ruth Levy, Donald Guenthner, Donald Bovee
2003-11-14

SCID:  54.1/zeahp5hg
We have developed technologies for creating saturating libraries of sequence-defined transposon insertion mutants in which each strain is maintained. Phenotypic analysis of such libraries should provide a virtually complete identification of nonessential genes required for any process for which a suitable screen can be devised. The approach was applied to Pseudomonas aeruginosa, an opportunistic pathogen with a 6.3-Mbp genome. The library that was generated consists of 30,100 sequence-defined mutants, corresponding to an average of five insertions per gene. About 12% of the predicted genes of this organism lacked insertions; many of these genes are likely to be essential for growth on rich media. Based on statistical analyses and bioinformatic comparison to known essential genes in E. coli, we estimate that the actual number of essential genes is 300-400. Screening the collection for strains defective in two defined multigenic processes (twitching motility and prototrophic growth) identified mutants corresponding to nearly all genes expected from earlier studies. Thus, phenotypic analysis of the collection may produce essentially complete lists of genes required for diverse biological activities. The transposons used to generate the mutant collection have added features that should facilitate downstream studies of gene expression, protein localization, epistasis, and chromosome engineering.
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2003-11-14
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Authors
David H. Spencer
Eric Haugen
Rajinder Kaul
Maynard V. Olson
Christopher K. Raymond
Michael A. Jacobs
Chunrong Liu
Colin Manoil
Iyarit Thaipisuttikul
Ashley Alwood
Stephen A. Ernst
Oliver Will
Ruth Levy
Donald Guenthner
Donald Bovee
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