Author:
Biezuner Tamir,Spiro Adam,Raz Ofir,Amir Shiran,Milo Lilach,Adar Rivka,Chapal-Ilani Noa,Berman Veronika,Fried Yael,Ainbinder Elena,Cohen Galit,Barr Haim M.,Halaban Ruth,Shapiro Ehud
Abstract
Advances in single-cell genomics enable commensurate improvements in methods for uncovering lineage relations among individual cells. Current sequencing-based methods for cell lineage analysis depend on low-resolution bulk analysis or rely on extensive single-cell sequencing, which is not scalable and could be biased by functional dependencies. Here we show an integrated biochemical-computational platform for generic single-cell lineage analysis that is retrospective, cost-effective, and scalable. It consists of a biochemical-computational pipeline that inputs individual cells, produces targeted single-cell sequencing data, and uses it to generate a lineage tree of the input cells. We validated the platform by applying it to cells sampled from an ex vivo grown tree and analyzed its feasibility landscape by computer simulations. We conclude that the platform may serve as a generic tool for lineage analysis and thus pave the way toward large-scale human cell lineage discovery.
Funder
European Union
European Research Council
Deutsche Forschungsgemeinschaft
Israeli Science Foundation
Israeli Science Foundation-BROAD
National Institutes of Health
Publisher
Cold Spring Harbor Laboratory
Subject
Genetics (clinical),Genetics
Cited by
35 articles.
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