AI 解读AI 生成
3.1万年前西伯利亚古基因组,揭示三次人群大换血。
这项研究分析了34个古基因组,包括雅纳RHS遗址约3.16万年前的乳齿样本,是已知最北的更新世人类遗骸。结果显示,西伯利亚东北部在末次冰期至全新世经历了至少三次大规模迁徙:最早的“古北西伯利亚人”约3.8万年前与西欧亚人分离;约2万至1.1万年前被东亚相关人群取代,形成古古西伯利亚人和美洲原住民祖先;约1.1万至4千年前又被新西伯利亚人取代。
- 雅纳RHS古北西伯利亚人约3.8万年前与西欧亚人分离,代表首次迁入东北西伯利亚的人群。
- 约2万至1.1万年前,古北西伯利亚人被东亚相关人群取代,形成古古西伯利亚人和美洲原住民祖先。
- 约1.1万至4千年前,古古西伯利亚人又被新西伯利亚人取代,并检测到白令海峡双向基因流。
样本解读
站内样本共21例,Y染色体解析13例,以Q-Z36017(3例)为主,另有P、N、H、C等单倍群。母系以D4m、D4b1a2a1、U2'3'4'7'8'9、A2a、A2b1各2例为主。文化背景涵盖Ekven_IA、Yana_UP、UstBelaya_EBA、Uelen_IA、DevilsCave_N等,时间跨度从旧石器时代晚期到铁器时代,地点集中在西伯利亚东北部及白令海峡周边。
对祖源爱好者的意义
对祖源爱好者而言,这项研究说明西伯利亚东北部是美洲原住民和许多现代西伯利亚人群的关键源头,且该地区人群历史高度动态,多次被外来人群取代。你的Q、N、C等父系或D4、A2等母系,可能对应不同迁徙波次。
摘要
Far northeastern Siberia has been occupied by humans for more than 40 thousand years. Yet, owing to a scarcity of early archaeological sites and human remains, its population history and relationship to ancient and modern populations across Eurasia and the Americas are poorly understood. Here, we analyze 34 ancient genome sequences, including two from fragmented milk teeth found at the ~31.6 thousand-year-old (kya) Yana RHS site, the earliest and northernmost Pleistocene human remains found. These genomes reveal complex patterns of past population admixture and replacement events throughout northeastern Siberia, with evidence for at least three large-scale human migrations into the region. The first inhabitants, a previously unknown population of “Ancient North Siberians” (ANS), represented by Yana RHS, diverged ~38 kya from Western Eurasians, soon after the latter split from East Asians. Between 20 and 11 kya, the ANS population was largely replaced by peoples with ancestry related to present-day East Asians, giving rise to ancestral Native Americans and “Ancient Paleosiberians” (AP), represented by a 9.8 kya skeleton from Kolyma River. AP are closely related to the Siberian ancestors of Native Americans, and ancestral to contemporary communities such as Koryaks and Itelmen. Paleoclimatic modelling shows evidence for a refuge during the last glacial maximum (LGM) in southeastern Beringia, suggesting Beringia as a possible location for the admixture forming both ancestral Native Americans and AP. Between 11 and 4 kya, AP were in turn largely replaced by another group of peoples with ancestry from East Asia, the “Neosiberians” from which many contemporary Siberians derive. We detect gene flow events in both directions across the Bering Strait during this time, influencing the genetic composition of Inuit, as well as Na Dene-speaking Northern Native Americans, whose Siberian-related ancestry components is closely related to AP. Our analyses reveal that the population history of northeastern Siberia was highly dynamic throughout the Late Pleistocene and Holocene. The pattern observed in northeastern Siberia, with earlier, once widespread populations being replaced by distinct peoples, seems to have taken place across northern Eurasia, as far west as Scandinavia.