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Deinococcus geothermalis: The Pool of Extreme Radiation Resistance Genes Shrinks

Overview of attention for article published in PLOS ONE, September 2007
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Title
Deinococcus geothermalis: The Pool of Extreme Radiation Resistance Genes Shrinks
Published in
PLOS ONE, September 2007
DOI 10.1371/journal.pone.0000955
Pubmed ID
Authors

Kira S. Makarova, Marina V. Omelchenko, Elena K. Gaidamakova, Vera Y. Matrosova, Alexander Vasilenko, Min Zhai, Alla Lapidus, Alex Copeland, Edwin Kim, Miriam Land, Konstantinos Mavromatis, Samuel Pitluck, Paul M. Richardson, Chris Detter, Thomas Brettin, Elizabeth Saunders, Barry Lai, Bruce Ravel, Kenneth M. Kemner, Yuri I. Wolf, Alexander Sorokin, Anna V. Gerasimova, Mikhail S. Gelfand, James K. Fredrickson, Eugene V. Koonin, Michael J. Daly

Abstract

Bacteria of the genus Deinococcus are extremely resistant to ionizing radiation (IR), ultraviolet light (UV) and desiccation. The mesophile Deinococcus radiodurans was the first member of this group whose genome was completely sequenced. Analysis of the genome sequence of D. radiodurans, however, failed to identify unique DNA repair systems. To further delineate the genes underlying the resistance phenotypes, we report the whole-genome sequence of a second Deinococcus species, the thermophile Deinococcus geothermalis, which at its optimal growth temperature is as resistant to IR, UV and desiccation as D. radiodurans, and a comparative analysis of the two Deinococcus genomes. Many D. radiodurans genes previously implicated in resistance, but for which no sensitive phenotype was observed upon disruption, are absent in D. geothermalis. In contrast, most D. radiodurans genes whose mutants displayed a radiation-sensitive phenotype in D. radiodurans are conserved in D. geothermalis. Supporting the existence of a Deinococcus radiation response regulon, a common palindromic DNA motif was identified in a conserved set of genes associated with resistance, and a dedicated transcriptional regulator was predicted. We present the case that these two species evolved essentially the same diverse set of gene families, and that the extreme stress-resistance phenotypes of the Deinococcus lineage emerged progressively by amassing cell-cleaning systems from different sources, but not by acquisition of novel DNA repair systems. Our reconstruction of the genomic evolution of the Deinococcus-Thermus phylum indicates that the corresponding set of enzymes proliferated mainly in the common ancestor of Deinococcus. Results of the comparative analysis weaken the arguments for a role of higher-order chromosome alignment structures in resistance; more clearly define and substantially revise downward the number of uncharacterized genes that might participate in DNA repair and contribute to resistance; and strengthen the case for a role in survival of systems involved in manganese and iron homeostasis.

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Mendeley readers

The data shown below were compiled from readership statistics for 187 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
United States 4 2%
Chile 2 1%
United Kingdom 2 1%
Brazil 2 1%
Israel 1 <1%
India 1 <1%
Germany 1 <1%
Tunisia 1 <1%
France 1 <1%
Other 2 1%
Unknown 170 91%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 42 22%
Researcher 38 20%
Student > Bachelor 20 11%
Student > Master 18 10%
Professor 10 5%
Other 28 15%
Unknown 31 17%
Readers by discipline Count As %
Agricultural and Biological Sciences 81 43%
Biochemistry, Genetics and Molecular Biology 46 25%
Chemistry 6 3%
Immunology and Microbiology 4 2%
Environmental Science 4 2%
Other 14 7%
Unknown 32 17%