TY - JOUR
T1 - Rapid adaptive increase of amylase gene copy number in Indigenous Andeans
AU - Scheer, Kendra
AU - Landau, Luane J.B.
AU - Jorgensen, Kelsey
AU - Karageorgiou, Charikleia
AU - Siao, Lindsey
AU - Alkan, Can
AU - Morales Rivera, Angelis M.
AU - Osborne, Christopher
AU - Garcia, Obed A.
AU - Pearson, Laurel
AU - Kiyamu, Melisa
AU - Rivera-Ch, María
AU - León-Velarde, Fabiola
AU - Lee, Frank S.
AU - Brutsaert, Tom
AU - Bigham, Abigail W.
AU - Gokcumen, Omer
N1 - Publisher Copyright:
© The Author(s) 2026.
PY - 2026/12
Y1 - 2026/12
N2 - The salivary amylase gene AMY1 exhibits remarkable copy number variation linked to dietary shifts in human evolution. While global studies highlight its structural complexity and association with starch-rich diets, localized selection patterns remain underexplored. Here, we analyze AMY1 copy number in 3,723 individuals from 85 populations, revealing that Indigenous Peruvian Andean populations possess the highest AMY1 copy number globally. A genome-wide analysis shows significantly higher amylase copy numbers in Peruvian Andean genomes compared to closely related populations. Further, we identify positive selection (selection coefficient of 0.0124, log likelihood ratio of 11.1543) at the nucleotide level on a haplotype harboring at least five haploid AMY1 copies, with a Peruvian Andean-specific expansion dated to around 10,000 years ago, coinciding with potato domestication in the region. Using ultra-long-read sequencing, we demonstrate that previously described recombination-based mutational mechanisms drive the formation of high-copy AMY1 haplotypes observed in Andean population. Our study provides a framework for investigating structurally complex loci and their role in human dietary adaptation.
AB - The salivary amylase gene AMY1 exhibits remarkable copy number variation linked to dietary shifts in human evolution. While global studies highlight its structural complexity and association with starch-rich diets, localized selection patterns remain underexplored. Here, we analyze AMY1 copy number in 3,723 individuals from 85 populations, revealing that Indigenous Peruvian Andean populations possess the highest AMY1 copy number globally. A genome-wide analysis shows significantly higher amylase copy numbers in Peruvian Andean genomes compared to closely related populations. Further, we identify positive selection (selection coefficient of 0.0124, log likelihood ratio of 11.1543) at the nucleotide level on a haplotype harboring at least five haploid AMY1 copies, with a Peruvian Andean-specific expansion dated to around 10,000 years ago, coinciding with potato domestication in the region. Using ultra-long-read sequencing, we demonstrate that previously described recombination-based mutational mechanisms drive the formation of high-copy AMY1 haplotypes observed in Andean population. Our study provides a framework for investigating structurally complex loci and their role in human dietary adaptation.
UR - https://www.scopus.com/pages/publications/105038699892
U2 - 10.1038/s41467-026-71450-8
DO - 10.1038/s41467-026-71450-8
M3 - Article
C2 - 42086559
AN - SCOPUS:105038699892
SN - 2041-1723
VL - 17
JO - Nature Communications
JF - Nature Communications
IS - 1
M1 - 3822
ER -