4.6 Article

Augmenting the Genetic Toolbox for Sulfolobus islandicus with a Stringent Positive Selectable Marker for Agmatine Prototrophy

Journal

APPLIED AND ENVIRONMENTAL MICROBIOLOGY
Volume 79, Issue 18, Pages 5539-5549

Publisher

AMER SOC MICROBIOLOGY
DOI: 10.1128/AEM.01608-13

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Funding

  1. National Aeronautics and Space Administration (NASA) [NNX09AM92G]
  2. NASA Astrobiology Institute through the Science Mission Directorate [NNA13AA91A]

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Sulfolobus species have become the model organisms for studying the unique biology of the crenarchaeal division of the archaeal domain. In particular, Sulfolobus islandicus provides a powerful opportunity to explore natural variation via experimental functional genomics. To support these efforts, we further expanded genetic tools for S. islandicus by developing a stringent positive selection for agmatine prototrophs in strains in which the argD gene, encoding arginine decarboxylase, has been deleted. Strains with deletions in argD were shown to be auxotrophic for agmatine even in nutrient-rich medium, but growth could be restored by either supplementation of exogenous agmatine or reintroduction of a functional copy of the argD gene from S. solfataricus P2 into the Delta argD host. Using this stringent selection, a robust targeted gene knockout system was established via an improved next generation of the MID (marker insertion and unmarked target gene deletion) method. Application of this novel system was validated by targeted knockout of the upsEF genes involved in UV-inducible cell aggregation formation.

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