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Biology subjects

Waku, D.

Publications and source records attributed to Waku, D..

3 recordsLinked to original sources

Endemic demographics of the Jomon people estimated based on complete mitogenomes reveal their regional diversity

The Jomon culture that spread across Japanese archipelago began about 16,000 years ago and lasted for over 10,000 years. The genetic diversity of the Jomon people, prehistoric hunter-gatherers bearing the Jomon culture, is of great interest in understanding prehistoric East Eurasians. Until now, their demographic history has been estimated using archaeological sites and present-day genomes, but detailed studies using Jomon genomes have been insufficient. To investigate the Jomon demography, we determined the complete mitochondrial genome (mitogenome) sequences from 13 Jomon individuals and conducted population genetic analysis on 40 Jomon genomes including previously published data. Our results revealed an effective population size increase during the Incipient - Initial phase of the Jomon period, which had not been observed in analysis of mitogenome sequences from present-day Japanese populations. This endemic demographic pattern is pronounced in the eastern part of the archipelago, under the assumption of no gene flow between the Eastern and Western Jomon.

genomics↗

Cold adaptation in Upper Paleolithic hunter-gatherers of eastern Eurasia

Previous genomic studies understanding the dispersal of Homo sapiens have suggested that present-day East Eurasians and Native Americans can trace their ancestry to migrations from Southeast Asia. However, ineluctable adaptations during the Last Glacial Maximum (LGM) remain unclear. By analyzing 42 genomes of up to 30-fold coverage from prehistoric hunter-gatherers, Jomon, we reveal their descent from Upper Paleolithic (UP) foragers who migrated to and isolated in the Japanese archipelago during Late Pleistocene. We provide compelling evidence suggesting that these UP people underwent positive selection for cold environments, aiding their survival through the LGM facilitated by non-shivering thermogenesis and detecting it polygenically across multiple loci in the Jomon lineage. Our study pioneers the close estimation of the physiological adaptation of ancient humans by the paleogenomic approach.

evolutionary biology↗

Collagen of ancient bones gives an indication of endogenous DNA preservation based on the next generation sequencing technology

Ancient genome analysis has become an indispensable tool in studies of human population history and evolution after the breakthrough of whole genome sequencing technology. Meanwhile, the problem has been not resolved that ancient genome cannot be analyzed without crushing non-small pieces of precious specimens; in spite of that, in many cases, there is no DNA remaining sufficiently in the piece of samples for obtaining the whole genome sequences. In previous studies, therefore, a couple of indicators (e.g., racemization ratios) have been proposed to estimate the endogenous DNA in ancient samples. However, these studies have used polymerase chain reaction (PCR) to test whether endogenous DNA is remaining, which has been inadequate because the success or failure of PCR amplification does not necessarily reflect DNA remaining. To assess the amount of endogenous DNA, we use the ratios of reads generated by the next-generation sequencer (NGS) mapped to the human reference genome sequence. We investigate 40 Jomon remains and find a significant association between the collagen residual ratios (CRRs) in rib bones and the mapping ratios (MRs). Because the weight of bone required to measure collagen residual is much less than that required to obtain DNA needed for NGS analysis, which is always necessary for dating, the collagen in ribs can be a good indicator for successful ancient genome analyses.

genomics↗