4.8 Article

Selection on amino acid substitutions in Arabidopsis

Journal

MOLECULAR BIOLOGY AND EVOLUTION
Volume 25, Issue 7, Pages 1375-1383

Publisher

OXFORD UNIV PRESS
DOI: 10.1093/molbev/msn079

Keywords

McDonald-Kreitman test; site-frequency spectrum; Arabidopsis; inbreeding; nonsynonymous; synonymous

Funding

  1. NHGRI NIH HHS [HG002790, P50 HG002790] Funding Source: Medline

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Studies of nucleotide diversity have found an excess of low-frequency amino acid polymorphisms segregating in Arabidopsis thaliana, suggesting a predominance of weak purifying selection acting on amino acid polymorphism in this inbreeding species. Here, we investigate levels of diversity and divergence at synonymous and nonsynonymous sites in 6 circumpolar populations of the outbreeding Arabidopsis lyrata and compare these results with A. thaliana, to test for differences in mutation and selection parameters across genes, populations, and species. We find that A. lyrata shows an excess of low-frequency nonsynonymous polymorphisms both within populations and species wide, consistent with weak purifying selection similar to the patterns observed in A. thaliana. Furthermore, nonsynonymous polymorphisms tend to be more restricted in their population distribution in A. lyrata, consistent with purifying selection preventing their geographic spread. Highly expressed genes show a reduced ratio of amino acid to synonymous change for both polymorphism and fixed differences, suggesting a general pattern of stronger purifying selection on high-expression proteins.

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