石器时代中欧和东欧的遗传连续性,隔离和基因流动
Tiina M Mattila1, Emma M Svensson2, Anna Juras3
1Human Evolution, Department of Organismal Biology, Uppsala University, 75105, Uppsala, Sweden. tiina.maria.mattila@ebc.uu.se.
Communications biology
|August 9, 2023
概括
古代欧洲的基因组揭示了多样化的人口动态. 虽然中石器时代的人口跨越欧洲到西伯利亚,新石器时代的过渡在乌克兰看到连续性,但在其他地方广泛的替代.
科学领域:
- 古遗传学是古遗传学的一部分.
- 欧洲史前史 欧洲史前史
- 人口遗传学 人口遗传学
背景情况:
- 欧洲的基因组历史是复杂的,由迁移和人口替代标志着.
- 石器时代人口动态的区域差异尚未完全理解.
- 新石器时代的过渡大大改变了欧洲的人口结构.
研究的目的:
- 重建新石器时代之前和期间中东欧洲的人口动态.
- 分析来自中石器,新石器和新石器时期个体的基因组数据.
- 为了确定人口连续性和流动性的区域差异.
主要方法:
- 从56个人类遗骸中生成和分析古代DNA.
- 在基因组序列数据上应用了种群遗传分析.
- 研究了隔离距离和人口流动的研究模式.
主要成果:
- 中石器时代的欧洲人群在1万年前形成了一个广泛的隔离区,从中欧到西伯利亚的距离.
- 下尼普罗河谷 (乌克兰) 显示了从中石器到新石器的4000年人口连续性.
- 大多数其他欧洲地区,包括中欧和多河地区,在新石器时代经历了大量的人口流动.
结论:
- 中石器时代的人口结构是早期建立的,并且在地理上是广泛的.
- 新石器时代的过渡时期的特点是欧洲各地的人口动态的对比.
- 乌克兰的低尼普尔河谷代表了一个独特的地区,持续的中石器-新石器人口连续性.
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