Contrasting Signatures of Population Growth for Mitochondrial DNA and Y Chromosomes among Human Populations in Africa

Контрастные признаки роста численности популяции для митохондриальной ДНК и Y-хромосом среди человеческих популяций Африки
Maya Metni Pilkington, Jason A. Wilder, Fernando L. Méndez, Murray P. Cox, August E. Woerner, Thiep Angui, Sarah B. Kingan, Zahra Mobasher, Chiara Batini, Giovanni Destro‐Bisol, Himla Soodyall, Beverly I. Strassmann, Michael F. Hammer
2007-12-18

Y chromosomeeffective population sizemitochondrial DNApopulation expansionsex-biased demography
A history of Pleistocene population expansion has been inferred from the frequency spectrum of polymorphism in the mitochondrial DNA (mtDNA) of many human populations. Similar patterns are not typically observed for autosomal and X-linked loci. One explanation for this discrepancy is a recent population bottleneck, with different rates of recovery for haploid and autosomal loci as a result of their different effective population sizes. This hypothesis predicts that mitochondrial and Y chromosomal DNA will show a similar skew in the frequency spectrum in populations that have experienced a recent increase in effective population size. We test this hypothesis by resequencing 6.6 kb of noncoding Y chromosomal DNA and 780 basepairs of the mtDNA cytochrome c oxidase subunit III (COIII) gene in 172 males from 5 African populations. Four tests of population expansion are employed for each locus in each population: Fu's Fs statistic, the R(2) statistic, coalescent simulations, and the mismatch distribution. Consistent with previous results, patterns of mtDNA polymorphism better fit a model of constant population size for food-gathering populations and a model of population expansion for food-producing populations. In contrast, none of the tests reveal evidence of Y chromosome growth for either food-gatherers or food-producers. The distinct mtDNA and Y chromosome polymorphism patterns most likely reflect sex-biased demographic processes in the recent history of African populations. We hypothesize that males experienced smaller effective population sizes and/or lower rates of migration during the Bantu expansion, which occurred over the last 5,000 years.
1
Contrasting mitochondrial and Y-chromosome patterns most likely reflect sex-biased demographic processes in recent African population history.
2
Four expansion tests found no evidence of recent Y-chromosome population growth in either food-gathering or food-producing populations.
3
Mitochondrial DNA patterns fit constant population size in food-gathering populations but support population expansion in food-producing populations.
4
The authors hypothesize that males had smaller effective population sizes and/or lower migration rates during the Bantu expansion within the last 5,000 years.
5
The study resequenced 6.6 kb of noncoding Y-chromosomal DNA and 780 bp of mitochondrial COIII in 172 males from five African populations.

Mitochondrial DNA and noncoding Y-chromosomal DNA in males from five African human populations

Contrasting signatures of recent population growth and sex-biased demographic processes in mtDNA and Y-chromosomal polymorphism

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2007-12-18
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Maya Metni Pilkington
Jason A. Wilder
Fernando L. Méndez
Murray P. Cox
August E. Woerner
Thiep Angui
Sarah B. Kingan
Zahra Mobasher
Chiara Batini
Giovanni Destro‐Bisol
Himla Soodyall
Beverly I. Strassmann
Michael F. Hammer
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