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RESEARCH PRODUCT

Evolution of lactase persistence: an example of human niche construction

Joachim BurgerDallas M. SwallowYuval ItanMark G. ThomasAdam PowellAnke LiebertPascale GerbaultMathias Currat

subject

Adult0106 biological sciencesAsiaNatural selectionmedicine.medical_treatmentLactoseBiology010603 evolutionary biology01 natural sciencesGene Expression Regulation EnzymologicGeneral Biochemistry Genetics and Molecular Biology03 medical and health sciencesGene FrequencyLactase persistencemedicineAnimalsHumansComputer SimulationNeolithicAlleleDomesticationLactaseddc:599.9030304 developmental biology2. Zero hungerGenetics0303 health sciencesGenetic VariationLactaseArticlesBiological EvolutionEuropeDomestic animalsDairyingLactase persistenceNiche constructionGenetics PopulationMilkAfricaTraitLocal environmentCattleNiche constructionGeneral Agricultural and Biological SciencesSingle mutation

description

Niche construction is the process by which organisms construct important components of their local environment in ways that introduce novel selection pressures. Lactase persistence is one of the clearest examples of niche construction in humans. Lactase is the enzyme responsible for the digestion of the milk sugar lactose and its production decreases after the weaning phase in most mammals, including most humans. Some humans, however, continue to produce lactase throughout adulthood, a trait known as lactase persistence. In European populations, a single mutation (−13910*T) explains the distribution of the phenotype, whereas several mutations are associated with it in Africa and the Middle East. Current estimates for the age of lactase persistence-associated alleles bracket those for the origins of animal domestication and the culturally transmitted practice of dairying. We report new data on the distribution of−13910*Tand summarize genetic studies on the diversity of lactase persistence worldwide. We review relevant archaeological data and describe three simulation studies that have shed light on the evolution of this trait in Europe. These studies illustrate how genetic and archaeological information can be integrated to bring new insights to the origins and spread of lactase persistence. Finally, we discuss possible improvements to these models.

https://doi.org/10.1098/rstb.2010.0268