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Recent Selection Changes in Human Genes under Long-Term Balancing Selection

delete2016-02-01
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OA
AI
C
Cesare de Filippo
F
Felix M. Key
S
Silvia Ghirotto
A
Andrea Benazzo
J
Juan R. Meneu
A
Antje Weihmann
G
Genı́s Parra
G
Green, Eric D.
A
Aida M. Andrés *
DOI:10.1093/molbev/msw023delete
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Abstract

Abstract

En 中文
Balancing selection is an important evolutionary force that maintains genetic and phenotypic diversity in populations. Most studies in humans have focused on long-standing balancing selection, which persists over long periods of time and is generally shared across populations. But balanced polymorphisms can also promote fast adaptation, especially when the environment changes. To better understand the role of previously balanced alleles in novel adaptations, we analyzed in detail four loci as case examples of this mechanism. These loci show hallmark signatures of long-term balancing selection in African populations, but not in Eurasian populations. The disparity between populations is due to changes in allele frequencies, with intermediate frequency alleles in Africans (likely due to balancing selection) segregating instead at lowor high-derived allele frequency in Eurasia. We explicitly tested the support for different evolutionary models with an approximate Bayesian computation approach and show that the patterns in PKDREJ, SDR39U1, and ZNF473 are best explained by recent changes in selective pressure in certain populations. Specifically, we infer that alleles previously under long-term balancing selection, or alleles linked to them, were recently targeted by positive selection in Eurasian populations. Balancing selection thus likely served as a source of functional alleles that mediated subsequent adaptations to novel environments.
Keywords:
natural selection
environmental changes
out-of-Africa
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Molecular Biology and Evolution cover
Molecular Biology and Evolution
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national institutes of health (nih) - usa
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University of Ferrara
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Max Planck Society
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