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Kanzawa-Kiriyama, H.

Publications and source records attributed to Kanzawa-Kiriyama, H..

3 recordsLinked to original sources

Ancient Ryukyu Jomon contributed to past and current genetic structure of Japanese populations

Characterized by the earliest use of pottery, the Jomon culture was a unique Neolithic culture that spread throughout the Japanese Archipelago. Previous archaeological evidence suggests that Jomon hunter-gatherers colonized the southernmost islands, the Ryukyu Archipelago, by approximately 7,000 years before present (YBP). However, genetic characteristics of the Ryukyu Jomon population and its contribution to the modern population have not been elucidated yet. In this study, we newly sequenced 273 modern and 25 ancient (6,700-900 YBP) whole genomes collected across the Ryukyu Archipelago. Our analysis demonstrated a genetic differentiation between the Hondo (Japanese mainland) and Ryukyu Jomon, dating back to [~]6,900 YBP. After the divergence from the Hondo Jomon, the Ryukyu Jomon experienced severe bottlenecks, with an effective population size of [~]2,000. Admixture between the Ryukyu Jomon and migrants from the historic Hondo population occurred [~]1,000 YBP, which corresponds to the widespread adoption of iron tools and agriculture in the Central Ryukyus. Different demographic histories between modern Hondo and Ryukyu populations resulted in different rates of Jomon ancestry in these populations. By providing a new perspective on the peopling of the Ryukyu Archipelago, this study significantly enhances our understanding of cultural transitions in the region.

evolutionary biology↗

Genomes of the Golden Horde Elites and their Implications for the Rulers of the Mongol Empire

The Golden Horde, the northwestern extension of the Mongol Empire that was ruled by the eldest son of Genghis Khan (also spelled Chinggis Khan) and his descendants, played an important role in the history of Central Eurasia and eastern Europe. For this reason, the genetic profiles of Genghis Khan and his descendants are of keen academic and public interest. His Y-chromosome has been hypothesized to belong to haplogroup C3* (C2a1a3-F1918) but this has yet to be substantiated. To explore the genetic ancestry of Genghis Khan, we analyzed four archaeological individuals from the Golden Horde, including three males and one female, who were buried in separate medieval elite mausoleums in the Ulitau region of Kazakstan. One of the males is believed to be Joshi (Juchi), the eldest son of Genghis Khan. We generated genomic data from these archaeological individuals and found that the three males were paternally related, sharing the Y-chromosome haplogroup C3*, consistent with the hypothesized signature haplotype of Genghis Khan. In addition, we confirm that the Golden Horde elites derived most of their genomes from Ancient Northeast Asians (ANA) while having an additional ancestral component from either Ancient North Eurasians (ANE) or a Berel Scythian related population. Furthermore, we were able to identify their medieval relatives in the Mongolian Plateau through constructing an Identity by Descent (IBD) network.

genomics↗

Triangulation reduces the polygon of error for the history of Transeurasian

In a recent study we used an interdisciplinary approach combining linguistics, archaeology and genetics to analyse the Transeurasian languages1. Our analysis concluded that the early dispersals of these languages were driven by agriculture. A preprint published on this server presents objections to the Transeurasian hypothesis and its association with farming dispersals2. However, close inspection of that text reveals numerous misinterpretations and inconsistencies. In the interest of furthering scientific debate over Transeurasian language and population history, we address the critiques, revising datasets and fine-tuning approaches. The linguistic critique questions the quantity and quality of our datasets. Here we show that the number of surviving cognate sets for Transeurasian is in line with that for well-established language families. In addition, we find that Tian et al.s failure to reject a core of regularly corresponding cognates in the basic vocabulary creates ground for a consensus about the genealogical relatability of the Transeurasian languages. The archaeological critique attempts a re-analysis of one Bayesian test using re-scored data only for northern China. Over half of the suggested re-scorings contain inconsistencies and it is not explained why the re-analysis retains the original data for sites outside northern China, comprising almost 60% of the total. More importantly, the sweeping claim that there is no evidence supporting the prehistoric migrations analysed in our study is not backed by any discussion of the archaeological record. With respect to genetics, the preprint claims a re-analysis showing that the data do not conclusively support the farming-driven dispersal of Turkic, Mongolian, and Tungusic, nor the two-wave spread of farming to Korea. In fact, the only genetic re-analysis presented is limited to samples from Korea and Japan and does not contradict our original conservative modelling of Neolithic individuals with Hongshan and our Bronze Age ones with Upper Xiajiadian. In sum, in bringing multiple lines of evidence together through triangulation, we gained a more balanced and richer understanding of Transeurasian dispersals than each discipline could provide individually. Our research doubtless leaves room for improvement but we remain confident that triangulation did not fail, but rather brought us a step closer to understanding the history of the Transeurasian languages.

evolutionary biology↗