The spontaneous mutation frequencies of Prochlorococcus strains are commensurate with those of other bacteria

Title

The spontaneous mutation frequencies of Prochlorococcus strains are commensurate with those of other bacteria

Publication Type
Journal Article

Authors

Chisholm, S. W.
Osburne, M. S.
Coe, A.
Holmbeck, B. M.
Number
6
Journal
Environmental Microbiology Reports
Year of Publication
2011
Volume
3
Pagination
744-749
Date Published
Dec
ISBN Number
1758-2229
Publication Language
English
Abstract

The marine cyanobacterium Prochlorococcus, the smallest and most abundant oxygenic phototroph, has an extremely streamlined genome and a high rate of protein evolution. High-light adapted strains of Prochlorococcus in particular have seemingly inadequate DNA repair systems, raising the possibility that inadequate repair may lead to high mutation rates. Prochlorococcus mutation rates have been difficult to determine, in part because traditional methods involving quantifying colonies on solid selective media are not straightforward for this organism. Here we used a liquid dilution method to measure the approximate number of antibiotic-resistant mutants in liquid cultures of Prochlorococcus strains previously unexposed to antibiotic selection. Several antibiotics for which resistance in other bacteria is known to result from a single base pair change were used. The resulting frequencies of antibiotic resistance in Prochlorococcus cultures allowed us to then estimate maximum spontaneous mutation rates, which were similar to those in organisms such as E. coli (similar to 5.4 x 10-7 per gene per generation). Therefore, despite the lack of some DNA repair genes, it appears unlikely that the Prochlorcoccus genomes studied here are currently being shaped by unusually high mutation rates.

Accession Number
WOS:000297148800014
Notes
849TT
Times Cited:1
Cited References Count:32
Short Title
Limnol Oceanogr
Alternate Journal
Limnol Oceanogr
Citation Key
459
COinS Data
Author Address
Osburne, MS
MIT, Dept Civil & Environm Engn, 77 Massachusetts Ave, Cambridge, MA 02139 USA
MIT, Dept Civil & Environm Engn, 77 Massachusetts Ave, Cambridge, MA 02139 USA
MIT, Dept Civil & Environm Engn, Cambridge, MA 02139 USA