| Literature DB >> 30474848 |
Hilda van den Bos1, Bjorn Bakker1, Aaron Taudt1,2, Victor Guryev1, Maria Colomé-Tatché1,2, Peter M Lansdorp1,3,4, Floris Foijer1, Diana C J Spierings5.
Abstract
High-throughput next generation sequencing karyotyping has emerged as a powerful tool for the detection of genomic heterogeneity in normal tissues and cancers. Here we describe a single-cell whole genome sequencing (scWGS) platform to assess whole-chromosome aneuploidy, structural aneuploidies involving only chromosome fragments and more local small copy number alterations in individual cells. We provide a detailed protocol for the isolation, library preparation, low coverage sequencing and data analysis of single cells. Since our approach does not involve a whole-genome preamplification step, our method allows for acquisition of reliable high-resolution single-cell copy number profiles. Moreover, the protocol allows multiplexing of 384 single-cell libraries in one sequencing run, thereby significantly reducing sequencing costs and can be completed in 3-4 days starting from single cell isolation to analysis of sequencing data.Entities:
Keywords: Aneuploidy; Copy number alterations; Library preparation; Single-cell whole genome sequencing
Mesh:
Year: 2019 PMID: 30474848 DOI: 10.1007/978-1-4939-8931-7_15
Source DB: PubMed Journal: Methods Mol Biol ISSN: 1064-3745