Effective population size is positively correlated with levels of adaptive divergence among annual sunflowers.

Abstract:

:The role of adaptation in the divergence of lineages has long been a central question in evolutionary biology, and as multilocus sequence data sets have become available for a wide range of taxa, empirical estimates of levels of adaptive molecular evolution are increasingly common. Estimates vary widely among taxa, with high levels of adaptive evolution in Drosophila, bacteria, and viruses but very little evidence of widespread adaptive evolution in hominids. Although estimates in plants are more limited, some recent work has suggested that rates of adaptive evolution in a range of plant taxa are surprisingly low and that there is little association between adaptive evolution and effective population size in contrast to patterns seen in other taxa. Here, we analyze data from 35 loci for six sunflower species that vary dramatically in effective population size. We find that rates of adaptive evolution are positively correlated with effective population size in these species, with a significant fraction of amino acid substitutions driven by positive selection in the species with the largest effective population sizes but little or no evidence of adaptive evolution in species with smaller effective population sizes. Although other factors likely contribute as well, in sunflowers effective population size appears to be an important determinant of rates of adaptive evolution.

journal_name

Mol Biol Evol

authors

Strasburg JL,Kane NC,Raduski AR,Bonin A,Michelmore R,Rieseberg LH

doi

10.1093/molbev/msq270

subject

Has Abstract

pub_date

2011-05-01 00:00:00

pages

1569-80

issue

5

eissn

0737-4038

issn

1537-1719

pii

msq270

journal_volume

28

pub_type

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