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1.
Nature ; 599(7886): 616-621, 2021 11.
Article in English | MEDLINE | ID: mdl-34759322

ABSTRACT

The origin and early dispersal of speakers of Transeurasian languages-that is, Japanese, Korean, Tungusic, Mongolic and Turkic-is among the most disputed issues of Eurasian population history1-3. A key problem is the relationship between linguistic dispersals, agricultural expansions and population movements4,5. Here we address this question by 'triangulating' genetics, archaeology and linguistics in a unified perspective. We report wide-ranging datasets from these disciplines, including a comprehensive Transeurasian agropastoral and basic vocabulary; an archaeological database of 255 Neolithic-Bronze Age sites from Northeast Asia; and a collection of ancient genomes from Korea, the Ryukyu islands and early cereal farmers in Japan, complementing previously published genomes from East Asia. Challenging the traditional 'pastoralist hypothesis'6-8, we show that the common ancestry and primary dispersals of Transeurasian languages can be traced back to the first farmers moving across Northeast Asia from the Early Neolithic onwards, but that this shared heritage has been masked by extensive cultural interaction since the Bronze Age. As well as marking considerable progress in the three individual disciplines, by combining their converging evidence we show that the early spread of Transeurasian speakers was driven by agriculture.


Subject(s)
Agriculture/history , Archaeology , Genetics, Population , Human Migration/history , Language/history , Linguistics , China , Datasets as Topic , Geographic Mapping , History, Ancient , Humans , Japan , Korea , Mongolia
2.
J Hum Genet ; 66(3): 287-296, 2021 Mar.
Article in English | MEDLINE | ID: mdl-32994538

ABSTRACT

Ancient DNA studies provide genomic information about the origins, population structures, and physical characteristics of ancient humans that cannot be solely examined by archeological studies. The DNAs extracted from ancient human bones, teeth, or tissues are often contaminated with coexisting bacterial and viral genomes that contain DNA from ancient microbes infecting those of ancient humans. Information on ancient viral genomes is useful in making inferences about the viral evolution. Here, we have utilized metagenomic sequencing data from the dental pulp of five Jomon individuals, who lived on the Japanese archipelago more than 3000 years ago; this is to detect ancient viral genomes. We conducted de novo assembly of the non-human reads where we have obtained 277,387 contigs that were longer than 1000 bp. These contigs were subjected to homology searches against a collection of modern viral genome sequences. We were able to detect eleven putative ancient viral genomes. Among them, we reconstructed the complete sequence of the Siphovirus contig89 (CT89) viral genome. The Jomon CT89-like sequence was determined to contain 59 open reading frames, among which five genes known to encode phage proteins were under strong purifying selection. The host of CT89 was predicted to be Schaalia meyeri, a bacterium residing in the human oral cavity. Finally, the CT89 phylogenetic tree showed two clusters, from both of which the Jomon sequence was separated. Our results suggest that metagenomic information from the dental pulp of the Jomon people is essential in retrieving ancient viral genomes used to examine their evolution.


Subject(s)
Asian People , DNA, Viral/isolation & purification , Dental Pulp/virology , Ethnicity , Fossils/virology , Genome, Viral , Metagenome , Siphoviridae/isolation & purification , Actinomycetaceae/virology , Asian People/history , Clustered Regularly Interspaced Short Palindromic Repeats , Contig Mapping , Dental Pulp/chemistry , Ethnicity/history , Female , Fossils/history , Fossils/microbiology , History, Ancient , Humans , Japan , Likelihood Functions , Male , Molecular Sequence Annotation , Mouth/microbiology , Mouth/virology , Open Reading Frames/genetics , Phylogeny , Sequence Alignment , Sequence Homology, Nucleic Acid , Siphoviridae/genetics , Whole Genome Sequencing
3.
Philos Trans R Soc Lond B Biol Sci ; 375(1812): 20190578, 2020 11 23.
Article in English | MEDLINE | ID: mdl-33012223

ABSTRACT

While microbial communities in the human body (microbiota) are now commonly associated with health and disease in industrialised populations, we know very little about how these communities co-evolved and changed with humans throughout history and deep prehistory. We can now examine these communities by sequencing ancient DNA preserved within calcified dental plaque (calculus), providing insights into the origins of disease and their links to human history. Here, we examine ancient DNA preserved within dental calculus samples and their associations with two major cultural periods in Japan: the Jomon period hunter-gatherers approximately 3000 years before present (BP) and the Edo period agriculturalists 400-150 BP. We investigate how human oral microbiomes have changed in Japan through time and explore the presence of microorganisms associated with oral diseases (e.g. periodontal disease, dental caries) in ancient Japanese populations. Finally, we explore oral microbial strain diversity and its potential links to ancient demography in ancient Japan by performing phylogenomic analysis of a widely conserved oral species-Anaerolineaceae oral taxon 439. This research represents, to our knowledge, the first study of ancient oral microbiomes from Japan and demonstrates that the analysis of ancient dental calculus can provide key information about the origin of non-infectious disease and its deep roots with human demography. This article is part of the theme issue 'Insights into health and disease from ancient biomolecules'.


Subject(s)
Chloroflexi/genetics , Dental Caries/history , Genome, Bacterial , Microbiota , Mouth/microbiology , Periodontal Diseases/history , Chloroflexi/classification , Demography , Dental Caries/microbiology , History, 17th Century , History, 18th Century , History, 19th Century , History, Ancient , Humans , Japan , Periodontal Diseases/microbiology , Phylogeny , Population Dynamics
4.
J Hum Genet ; 62(2): 213-221, 2017 Feb.
Article in English | MEDLINE | ID: mdl-27581845

ABSTRACT

The Jomon period of the Japanese Archipelago, characterized by cord-marked 'jomon' potteries, has yielded abundant human skeletal remains. However, the genetic origins of the Jomon people and their relationships with modern populations have not been clarified. We determined a total of 115 million base pair nuclear genome sequences from two Jomon individuals (male and female each) from the Sanganji Shell Mound (dated 3000 years before present) with the Jomon-characteristic mitochondrial DNA haplogroup N9b, and compared these nuclear genome sequences with those of worldwide populations. We found that the Jomon population lineage is best considered to have diverged before diversification of present-day East Eurasian populations, with no evidence of gene flow events between the Jomon and other continental populations. This suggests that the Sanganji Jomon people descended from an early phase of population dispersals in East Asia. We also estimated that the modern mainland Japanese inherited <20% of Jomon peoples' genomes. Our findings, based on the first analysis of Jomon nuclear genome sequence data, firmly demonstrate that the modern mainland Japanese resulted from genetic admixture of the indigenous Jomon people and later migrants.


Subject(s)
Asian People/genetics , DNA, Mitochondrial/genetics , Genetics, Population , Genome/genetics , Base Sequence , Chromosome Mapping , Female , Haplotypes/genetics , History, Ancient , Humans , Japan , Male , Polymorphism, Single Nucleotide/genetics , Sequence Analysis, DNA
5.
Genes Genet Syst ; 90(3): 147-52, 2015.
Article in English | MEDLINE | ID: mdl-26510569

ABSTRACT

The Japanese Archipelago stretches approximately 3,000 kilometers from Hokkaido in the north to the Ryukyu Islands in the south, and has seen human activity since at least 30 thousand years ago (KYA). The Jomon period from 16 to 3 KYA is associated with cord-marked pottery and the people at that time, who were hunter-gatherers, occupied a range of locations across the Japanese Archipelago. The Yayoi period from 3 to 1.7 KYA saw the introduction of migrants from the Asian Continent who brought rice agriculture to the archipelago. The dual-structure model, which is based on craniofacial measurements, proposes that admixture between the Jomon and Yayoi people resulted in current-day Japanese. Subsequent genetic studies using uniparental and autosomal markers in current-day and ancient human samples are widely in support of the dual-structure model. These genetic data have also unveiled the uniqueness of the indigenous Ainu and Ryukyuan people while further demonstrating the genetic substructure within the Mainland Japanese.


Subject(s)
Asian People/genetics , Ethnicity/genetics , Genetic Variation , Genetics, Population , History, Ancient , Humans , Japan , Models, Genetic
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