Hitchhiking Under Positive Darwinian Selection

Генетический автостоп при положительном дарвиновском отборе
Chung‐I Wu, Justin C. Fay
2000-07-01

Drosophila variationH statisticgenetic hitchhikinglinked neutral variationpositive Darwinian selection
Positive selection can be inferred from its effect on linked neutral variation. In the restrictive case when there is no recombination, all linked variation is removed. If recombination is present but rare, both deterministic and stochastic models of positive selection show that linked variation hitchhikes to either low or high frequencies. While the frequency distribution of variation can be influenced by a number of evolutionary processes, an excess of derived variants at high frequency is a unique pattern produced by hitchhiking (derived refers to the nonancestral state as determined from an outgroup). We adopt a statistic, H, to measure an excess of high compared to intermediate frequency variants. Only a few high-frequency variants are needed to detect hitchhiking since not many are expected under neutrality. This is of particular utility in regions of low recombination where there is not much variation and in regions of normal or high recombination, where the hitchhiking effect can be limited to a small (<1 kb) region. Application of the H test to published surveys of Drosophila variation reveals an excess of high frequency variants that are likely to have been influenced by positive selection.
1
An excess of derived variants at high frequency, relative to intermediate-frequency variants, is identified as a distinctive signature of hitchhiking rather than neutrality.
2
Applying the H test to published Drosophila surveys revealed excess high-frequency variants likely influenced by positive selection, including in low- and high-recombination regions.
3
Positive selection at linked loci can be detected through its characteristic effect on neutral genetic variation, especially when recombination is absent or rare.
4
The H statistic measures the excess of high-frequency over intermediate-frequency variants and can detect hitchhiking from only a few high-frequency variants.
5
With rare recombination, deterministic and stochastic selection models predict that linked variants hitchhike toward either low or high frequencies.

Linked neutral genetic variation in genomic regions subject to positive selection (including low-recombination and normal/high-recombination regions)

the frequency-distribution signature of hitchhiking, specifically an excess of derived variants at high frequencies relative to intermediate frequencies

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2000-07-01
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Chung‐I Wu
Justin C. Fay
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