bioRxiv · 10.1101/2022.12.02.518894
Y chromosome sequence and epigenomic reconstruction across human populations
Abstract
Recent advances in long-read sequencing technologies have allowed the generation and curation of more complete genome assemblies, enabling the analysis of traditionally neglected chromosomes, such as the human Y chromosome (chrY). Native DNA was sequenced on a MinION Oxford Nanopore Technologies sequencing device to generate genome assemblies for 7 major chrY human haplogroups. We analyzed and compared the chrY enrichment of sequencing data obtained using two different selective sequencing approaches: adaptive sampling and flow cytometry chromosome sorting. We show that adaptive sampling can produce data to create assemblies comparable to chromosome sorting while being a less expensive and time-consuming technique. We also assessed haplogroup-specific structural variants, which would be otherwise difficult to study using short-read sequencing data only. Finally, we took advantage of this technology to detect and profile epigenetic modifications amongst the considered haplogroups. Altogether, we provide a framework to study complex genomic regions with a simple, fast, and affordable methodology that could be applied to larger population genomics datasets.
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Esteller-Cucala, P., Palmada-Flores, M., Kuderna, L. F. K., Fontsere, C., Serres-Armero, A., Dabad, M., Torralvo, M., Faella, A., Ferrandez-Peral, L., Llovera, L., Fornas, O., Julia, E., Ramirez, E., Gonzalez, I., Hecht, J., Lizano, E., Juan, D., Marques-Bonet, T.. 2022-12-02. Y chromosome sequence and epigenomic reconstruction across human populations. https://doi.org/10.1101/2022.12.02.518894
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