Evidence for Abundant Slightly Deleterious Polymorphisms in Bacterial Populations

The nearly neutral theory of molecular evolution predicts that slightly deleterious mutations subject to purifying selection are widespread in natural populations, particularly those of large effective population size. To test this hypothesis, the standardized difference between pairwise nucleotide...

Full description

Saved in:
Bibliographic Details
Published inGenetics (Austin) Vol. 169; no. 2; pp. 533 - 538
Main Author Hughes, Austin L
Format Journal Article
LanguageEnglish
Published United States Genetics Soc America 01.02.2005
Genetics Society of America
Subjects
Online AccessGet full text

Cover

Loading…
More Information
Summary:The nearly neutral theory of molecular evolution predicts that slightly deleterious mutations subject to purifying selection are widespread in natural populations, particularly those of large effective population size. To test this hypothesis, the standardized difference between pairwise nucleotide difference and number of segregation sites (corrected for number of sequences) was estimated for 149 population data sets from 84 species of bacteria. This quantity (Tajima's D-statistic) was estimated separately for synonymous (Dsyn) and nonsynonymous (Dnon) polymorphisms. Dsyn was positive in 70% of data sets, and the overall median Dsyn (0.873) was positive. By contrast Dnon was negative in 68% of data sets, and the overall median Dnon (−0.656) was negative. The preponderance of negative values of Dnon is evidence that there are widespread rare nonsynonymous polymorphisms in the process of being eliminated by purifying selection, as predicted to occur in populations with large effective size by the nearly neutral theory. The major exceptions to this trend were seen among surface proteins, particularly those of bacteria parasitic on vertebrates, which included a number of cases of polymorphisms apparently maintained by balancing selection.
Bibliography:ObjectType-Article-2
SourceType-Scholarly Journals-1
ObjectType-Feature-1
content type line 14
content type line 23
ObjectType-Article-1
ObjectType-Feature-2
Address for correspondence: Department of Biological Sciences, University of South Carolina, Coker Life Sciences Bldg., 700 Sumter St., Columbia, SC 29208. E-mail: austin@biol.sc.edu
Communicating editor: S. W. Schaeffer
ISSN:0016-6731
1943-2631
1943-2631
DOI:10.1534/genetics.104.036939