Literature DB >> 27038113

The Genetic Cost of Neanderthal Introgression.

Kelley Harris1, Rasmus Nielsen2.   

Abstract

Approximately 2-4% of genetic material in human populations outside Africa is derived from Neanderthals who interbred with anatomically modern humans. Recent studies have shown that this Neanderthal DNA is depleted around functional genomic regions; this has been suggested to be a consequence of harmful epistatic interactions between human and Neanderthal alleles. However, using published estimates of Neanderthal inbreeding and the distribution of mutational fitness effects, we infer that Neanderthals had at least 40% lower fitness than humans on average; this increased load predicts the reduction in Neanderthal introgression around genes without the need to invoke epistasis. We also predict a residual Neanderthal mutational load in non-Africans, leading to a fitness reduction of at least 0.5%. This effect of Neanderthal admixture has been left out of previous debate on mutation load differences between Africans and non-Africans. We also show that if many deleterious mutations are recessive, the Neanderthal admixture fraction could increase over time due to the protective effect of Neanderthal haplotypes against deleterious alleles that arose recently in the human population. This might partially explain why so many organisms retain gene flow from other species and appear to derive adaptive benefits from introgression.
Copyright © 2016 by the Genetics Society of America.

Entities:  

Keywords:  archaic hominins; deleterious mutation load; gene flow; heterosis; nearly neutral theory

Mesh:

Year:  2016        PMID: 27038113      PMCID: PMC4896200          DOI: 10.1534/genetics.116.186890

Source DB:  PubMed          Journal:  Genetics        ISSN: 0016-6731            Impact factor:   4.562


  62 in total

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  106 in total

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7.  Meiotic Genes Are Enriched in Regions of Reduced Archaic Ancestry.

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Review 9.  The impact of recent population history on the deleterious mutation load in humans and close evolutionary relatives.

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