Contribution of mobile genetic elements to Desulfovibrio vulgaris genome plasticity

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Abstract

The genome of Desulfovibrio vulgaris strain DePue, a sulfate-reducing Deltaproteobacterium isolated from heavy metal-impacted lake sediment, was completely sequenced and compared with the type strain D. vulgaris Hildenborough. The two genomes share a high degree of relatedness and synteny, but harbour distinct prophage and signatures of past phage encounters. In addition to a highly variable phage contribution, the genome of strain DePue contains a cluster of open-reading frames not found in strain Hildenborough coding for the production and export of a capsule exopolysaccharide, possibly of relevance to heavy metal resistance. Comparative whole-genome microarray analysis on four additional D. vulgaris strains established greater interstrain variation within regions associated with phage insertion and exopolysaccharide biosynthesis. © 2009 Society for Applied Microbiology and Blackwell Publishing Ltd.

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Walker, C. B., Stolyar, S., Chivian, D., Pinel, N., Gabster, J. A., Dehal, P. S., … Stahl, D. A. (2009). Contribution of mobile genetic elements to Desulfovibrio vulgaris genome plasticity. Environmental Microbiology, 11(9), 2244–2252. https://doi.org/10.1111/j.1462-2920.2009.01946.x

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