TY - JOUR
T1 - Low Prevalence of Lactase Persistence in Bronze Age Europe Indicates Ongoing Strong Selection over the Last 3,000 Years
AU - Burger, Joachim
AU - Link, Vivian
AU - Blöcher, Jens
AU - Schulz, Anna
AU - Sell, Christian
AU - Pochon, Zoé
AU - Diekmann, Yoan
AU - Žegarac, Aleksandra
AU - Hofmanová, Zuzana
AU - Winkelbach, Laura
AU - Reyna-Blanco, Carlos S.
AU - Bieker, Vanessa
AU - Orschiedt, Jörg
AU - Brinker, Ute
AU - Scheu, Amelie
AU - Leuenberger, Christoph
AU - Bertino, Thomas S.
AU - Bollongino, Ruth
AU - Lidke, Gundula
AU - Stefanović, Sofija
AU - Jantzen, Detlef
AU - Kaiser, Elke
AU - Terberger, Thomas
AU - Thomas, Mark G.
AU - Veeramah, Krishna R.
AU - Wegmann, Daniel
N1 - Publisher Copyright:
© 2020 Elsevier Inc.
PY - 2020/11/2
Y1 - 2020/11/2
N2 - Lactase persistence (LP), the continued expression of lactase into adulthood, is the most strongly selected single gene trait over the last 10,000 years in multiple human populations. It has been posited that the primary allele causing LP among Eurasians, rs4988235-A [1], only rose to appreciable frequencies during the Bronze and Iron Ages [2, 3], long after humans started consuming milk from domesticated animals. This rapid rise has been attributed to an influx of people from the Pontic-Caspian steppe that began around 5,000 years ago [4, 5]. We investigate the spatiotemporal spread of LP through an analysis of 14 warriors from the Tollense Bronze Age battlefield in northern Germany (∼3,200 before present, BP), the oldest large-scale conflict site north of the Alps. Genetic data indicate that these individuals represent a single unstructured Central/Northern European population. We complemented these data with genotypes of 18 individuals from the Bronze Age site Mokrin in Serbia (∼4,100 to ∼3,700 BP) and 37 individuals from Eastern Europe and the Pontic-Caspian Steppe region, predating both Bronze Age sites (∼5,980 to ∼3,980 BP). We infer low LP in all three regions, i.e., in northern Germany and South-eastern and Eastern Europe, suggesting that the surge of rs4988235 in Central and Northern Europe was unlikely caused by Steppe expansions. We estimate a selection coefficient of 0.06 and conclude that the selection was ongoing in various parts of Europe over the last 3,000 years.
AB - Lactase persistence (LP), the continued expression of lactase into adulthood, is the most strongly selected single gene trait over the last 10,000 years in multiple human populations. It has been posited that the primary allele causing LP among Eurasians, rs4988235-A [1], only rose to appreciable frequencies during the Bronze and Iron Ages [2, 3], long after humans started consuming milk from domesticated animals. This rapid rise has been attributed to an influx of people from the Pontic-Caspian steppe that began around 5,000 years ago [4, 5]. We investigate the spatiotemporal spread of LP through an analysis of 14 warriors from the Tollense Bronze Age battlefield in northern Germany (∼3,200 before present, BP), the oldest large-scale conflict site north of the Alps. Genetic data indicate that these individuals represent a single unstructured Central/Northern European population. We complemented these data with genotypes of 18 individuals from the Bronze Age site Mokrin in Serbia (∼4,100 to ∼3,700 BP) and 37 individuals from Eastern Europe and the Pontic-Caspian Steppe region, predating both Bronze Age sites (∼5,980 to ∼3,980 BP). We infer low LP in all three regions, i.e., in northern Germany and South-eastern and Eastern Europe, suggesting that the surge of rs4988235 in Central and Northern Europe was unlikely caused by Steppe expansions. We estimate a selection coefficient of 0.06 and conclude that the selection was ongoing in various parts of Europe over the last 3,000 years.
KW - Bronze Age battlefield
KW - human population genetics
KW - lactase
KW - selection
UR - https://www.scopus.com/pages/publications/85091233471
U2 - 10.1016/j.cub.2020.08.033
DO - 10.1016/j.cub.2020.08.033
M3 - Article
C2 - 32888485
AN - SCOPUS:85091233471
SN - 0960-9822
VL - 30
SP - 4307-4315.e13
JO - Current Biology
JF - Current Biology
IS - 21
ER -