生物
基因组
DNA测序
生物信息学
Illumina染料测序
计算生物学
全基因组测序
单细胞测序
癌症基因组测序
遗传学
条形码
纳米孔测序
基因
基因组学
单细胞分析
外显子组测序
细胞
突变
计算机科学
操作系统
作者
Freeman Lan,Benjamin Demaree,Noorsher Ahmed,Adam R. Abate
摘要
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.
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