Single-cell genome sequencing at ultra-high-throughput with microfluidic droplet barcoding

More than 50,000 single-cell genomes are sequenced in a single run using droplet barcoding. The application of single-cell genome sequencing to large cell populations has been hindered by technical challenges in isolating single cells during genome preparation. Here we present single-cell genomic se...

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Veröffentlicht in:Nature biotechnology 2017-07, Vol.35 (7), p.640-646
Hauptverfasser: Lan, Freeman, Demaree, Benjamin, Ahmed, Noorsher, Abate, Adam R
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Sprache:eng
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Zusammenfassung:More than 50,000 single-cell genomes are sequenced in a single run using droplet barcoding. The application of single-cell genome sequencing to large cell populations has been hindered by technical challenges in isolating single cells during genome preparation. Here we present single-cell genomic sequencing (SiC-seq), which uses droplet microfluidics to isolate, fragment, and barcode the genomes of single cells, followed by Illumina sequencing of pooled DNA. We demonstrate ultra-high-throughput sequencing of >50,000 cells per run in a synthetic community of Gram-negative and Gram-positive bacteria and fungi. The sequenced genomes can be sorted in silico based on characteristic sequences. We use this approach to analyze the distributions of antibiotic-resistance genes, virulence factors, and phage sequences in microbial communities from an environmental sample. The ability to routinely sequence large populations of single cells will enable the de-convolution of genetic heterogeneity in diverse cell populations.
ISSN:1087-0156
1546-1696
DOI:10.1038/nbt.3880