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A comprehensive transposon mutant library of Francisella novicida, a bioweapon surrogate.


ABSTRACT: Francisella tularensis, the causative agent of tularemia, is one of the most infectious bacterial pathogens known and is a category A select agent. We created a sequence-defined, near-saturation transposon mutant library of F. tularensis novicida, a subspecies that causes a tularemia-like disease in rodents. The library consists of 16,508 unique insertions, an average of >9 insertions per gene, which is a coverage nearly twice that of the greatest previously achieved for any bacterial species. Insertions were recovered in 84% (1,490) of the predicted genes. To achieve high coverage, it was necessary to construct transposons carrying an endogenous Francisella promoter to drive expression of antibiotic resistance. An analysis of genes lacking (or with few) insertions identified nearly 400 candidate essential genes, most of which are likely to be required for growth on rich medium and which represent potential therapeutic targets. To facilitate genome-scale screening using the mutant collection, we assembled a sublibrary made up of two purified mutants per gene. The library provides a resource for virtually complete identification of genes involved in virulence and other nonessential processes.

SUBMITTER: Gallagher LA 

PROVIDER: S-EPMC1783355 | biostudies-literature | 2007 Jan

REPOSITORIES: biostudies-literature

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A comprehensive transposon mutant library of Francisella novicida, a bioweapon surrogate.

Gallagher Larry A LA   Ramage Elizabeth E   Jacobs Michael A MA   Kaul Rajinder R   Brittnacher Mitchell M   Manoil Colin C  

Proceedings of the National Academy of Sciences of the United States of America 20070110 3


Francisella tularensis, the causative agent of tularemia, is one of the most infectious bacterial pathogens known and is a category A select agent. We created a sequence-defined, near-saturation transposon mutant library of F. tularensis novicida, a subspecies that causes a tularemia-like disease in rodents. The library consists of 16,508 unique insertions, an average of >9 insertions per gene, which is a coverage nearly twice that of the greatest previously achieved for any bacterial species. I  ...[more]

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