Shizhu Gao
Dados Biográficos
| ID | 4089581 |
|---|---|
| NOME | Shizhu Gao |
| PRENOMES | Shizhu |
| SOBRENOME | Gao |
| ASSINATURA | GAO S |
| AFILIAÇÕES | Jilin University |
| ORCID | 0000-0003-1669-7984 |
| VERIFICADO | Sim |
| TOTAL DE OBRAS | 8 |
| TOTAL DE CITAÇÕES | 19 |
| TOTAL COMO AUTOR | 8 |
| TOTAL COMO EDITOR | 0 |
| PRIMEIRO ANO DE PUBLICAÇÃO | 2007 |
| ANO MAIS RECENTE DE PUBLICAÇÃO | 2026 |
| ÍNDICE H | 3 |
Ancient Mitochondrial Genomes Reveal the Maternal Diversity and Genetic Influence of the Qijia Culture in Prehistoric Eastern Asia
Integrated osteological and genomic analysis of two individuals from the Ordos Plateau during the Song–Yuan transition
Integrative bioarchaeology reveals the complex demography of a Song-Yuan frontier fortress. • Genomic evidence reveals significant steppe ancestry, reflecting historical regime shifts. • Skeletal evidence of nutritional stress and reduced stature reveals chronic hardship in females. Two female remains, recovered from water wells at the strategic Yangjiacheng fortress on the Ordos Plateau, were identified as victims hastily abandoned during the in…
Ancient genomes from northern China suggest links between subsistence changes and human migration
Northern China harbored the world’s earliest complex societies based on millet farming, in two major centers in the Yellow (YR) and West Liao (WLR) River basins. Until now, their genetic histories have remained largely unknown. Here we present 55 ancient genomes dating to 7500-1700 BP from the YR, WLR, and Amur River (AR) regions. Contrary to the genetic stability in the AR, the YR and WLR genetic profiles substantially changed over time. The YR …
Mitochondrial Genome of an 8,400-Year-Old Individual from Northern China Reveals a Novel Subclade under C5d
Ancient DNA studies have always refreshed our understanding of the human past that cannot be tracked by modern DNA alone. Until recently, ancient mitochondrial genomic studies in East Asia were still very limited. Here, we retrieved the whole mitochondrial genome of an 8,400-year-old individual from Inner Mongolia, China. Phylogenetic analyses show that the individual belongs to a previously undescribed clade under haplogroup C5d that most probab…
Ancient DNA reveals a migration of the ancient D i‐qiang populations into X injiang as early as the early B ronze A ge
Xinjiang is at the crossroads between East and West Eurasia, and it harbors a relatively complex genetic history. In order to better understand the population movements and interactions in this region, mitochondrial and Y chromosome analyses on 40 ancient human remains from the Tianshanbeilu site in eastern Xinjiang were performed. Twenty‐nine samples were successfully assigned to specific mtDNA haplogroups, including the west Eurasian maternal l…
Ancient DNA evidence supports the contribution of Di‐Qiang people to the han Chinese gene pool
Han Chinese is the largest ethnic group in the world. During its development, it gradually integrated with many neighboring populations. To uncover the origin of the Han Chinese, ancient DNA analysis was performed on the remains of 46 humans (∼1700 to 1900 years ago) excavated from the Taojiazhai site in Qinghai province, northwest of China, where the Di‐Qiang populations had previously lived. In this study, eight mtDNA haplogroups (A, B, D, F, M…
Early Eurasian migration traces in the Tarim Basin revealed by mtDNA polymorphisms
The mitochondrial DNA (mtDNA) polymorphisms of 58 samples from the Daheyan village located in the central Taklamakan Desert of the Tarim Basin were determined in this study. Among the 58 samples, 29 haplotypes belonging to 18 different haplogroups were analyzed. Almost all the mtDNAs belong to a subset of either the defined Western or Eastern Eurasian pool. Extensive Eastern Eurasian lineages exist in the Daheyan population in which Northern‐prev…
Tracing the genetic history of the Chinese people
Ancient DNA analysis was conducted on the dental remains of specimens from the Lajia site, dating back 3,800–4,000 years. The Lajia site is located in Minhe county, Qinghai province, in northwestern China. Archaeological studies link Lajia to the late period of the Qijia culture, one of the most important Neolithic civilizations of the upper Yellow River region, the cradle of Chinese civilization. Excavations at the site revealed that the inhabit…
Ancient DNA reveals a migration of the ancient D i‐qiang populations into X injiang as early as the early B ronze A ge
Xinjiang is at the crossroads between East and West Eurasia, and it harbors a relatively complex genetic history. In order to better understand the population movements and interactions in this region, mitochondrial and Y chromosome analyses on 40 ancient human remains from the Tianshanbeilu site in eastern Xinjiang were performed. Twenty‐nine samples were successfully assigned to specific mtDNA haplogroups, including the west Eurasian maternal l…
Ancient DNA evidence supports the contribution of Di‐Qiang people to the han Chinese gene pool
Han Chinese is the largest ethnic group in the world. During its development, it gradually integrated with many neighboring populations. To uncover the origin of the Han Chinese, ancient DNA analysis was performed on the remains of 46 humans (∼1700 to 1900 years ago) excavated from the Taojiazhai site in Qinghai province, northwest of China, where the Di‐Qiang populations had previously lived. In this study, eight mtDNA haplogroups (A, B, D, F, M…
Tracing the genetic history of the Chinese people
Ancient DNA analysis was conducted on the dental remains of specimens from the Lajia site, dating back 3,800–4,000 years. The Lajia site is located in Minhe county, Qinghai province, in northwestern China. Archaeological studies link Lajia to the late period of the Qijia culture, one of the most important Neolithic civilizations of the upper Yellow River region, the cradle of Chinese civilization. Excavations at the site revealed that the inhabit…
Tracing the genetic history of the Chinese people
Ancient DNA analysis was conducted on the dental remains of specimens from the Lajia site, dating back 3,800–4,000 years. The Lajia site is located in Minhe county, Qinghai province, in northwestern China. Archaeological studies link Lajia to the late period of the Qijia culture, one of the most important Neolithic civilizations of the upper Yellow River region, the cradle of Chinese civilization. Excavations at the site revealed that the inhabit…
Early Eurasian migration traces in the Tarim Basin revealed by mtDNA polymorphisms
The mitochondrial DNA (mtDNA) polymorphisms of 58 samples from the Daheyan village located in the central Taklamakan Desert of the Tarim Basin were determined in this study. Among the 58 samples, 29 haplotypes belonging to 18 different haplogroups were analyzed. Almost all the mtDNAs belong to a subset of either the defined Western or Eastern Eurasian pool. Extensive Eastern Eurasian lineages exist in the Daheyan population in which Northern‐prev…
Ancient DNA evidence supports the contribution of Di‐Qiang people to the han Chinese gene pool
Han Chinese is the largest ethnic group in the world. During its development, it gradually integrated with many neighboring populations. To uncover the origin of the Han Chinese, ancient DNA analysis was performed on the remains of 46 humans (∼1700 to 1900 years ago) excavated from the Taojiazhai site in Qinghai province, northwest of China, where the Di‐Qiang populations had previously lived. In this study, eight mtDNA haplogroups (A, B, D, F, M…
Ancient DNA reveals a migration of the ancient D i‐qiang populations into X injiang as early as the early B ronze A ge
Xinjiang is at the crossroads between East and West Eurasia, and it harbors a relatively complex genetic history. In order to better understand the population movements and interactions in this region, mitochondrial and Y chromosome analyses on 40 ancient human remains from the Tianshanbeilu site in eastern Xinjiang were performed. Twenty‐nine samples were successfully assigned to specific mtDNA haplogroups, including the west Eurasian maternal l…
Mitochondrial Genome of an 8,400-Year-Old Individual from Northern China Reveals a Novel Subclade under C5d
Ancient DNA studies have always refreshed our understanding of the human past that cannot be tracked by modern DNA alone. Until recently, ancient mitochondrial genomic studies in East Asia were still very limited. Here, we retrieved the whole mitochondrial genome of an 8,400-year-old individual from Inner Mongolia, China. Phylogenetic analyses show that the individual belongs to a previously undescribed clade under haplogroup C5d that most probab…
Ancient genomes from northern China suggest links between subsistence changes and human migration
Northern China harbored the world’s earliest complex societies based on millet farming, in two major centers in the Yellow (YR) and West Liao (WLR) River basins. Until now, their genetic histories have remained largely unknown. Here we present 55 ancient genomes dating to 7500-1700 BP from the YR, WLR, and Amur River (AR) regions. Contrary to the genetic stability in the AR, the YR and WLR genetic profiles substantially changed over time. The YR …
Ancient Mitochondrial Genomes Reveal the Maternal Diversity and Genetic Influence of the Qijia Culture in Prehistoric Eastern Asia
Integrated osteological and genomic analysis of two individuals from the Ordos Plateau during the Song–Yuan transition
Integrative bioarchaeology reveals the complex demography of a Song-Yuan frontier fortress. • Genomic evidence reveals significant steppe ancestry, reflecting historical regime shifts. • Skeletal evidence of nutritional stress and reduced stature reveals chronic hardship in females. Two female remains, recovered from water wells at the strategic Yangjiacheng fortress on the Ordos Plateau, were identified as victims hastily abandoned during the in…
Forensic and Genetic Research (8 obras) · Forensic Anthropology and Bioarchaeology Studies (7 obras) · Ancient DNA (6 obras) · Biology (6 obras) · Demography (6 obras) · Geography (6 obras) · Population (6 obras) · Archaeology (5 obras) · Genetics (5 obras) · Genetics (5 obras)