Department of Biochemistry, University of Wisconsin-Madison, Madison, WI, USA.
Microbiology Doctoral Training Program, University of Wisconsin-Madison, Madison, WI, USA.
Nat Methods. 2024 Feb;21(2):228-235. doi: 10.1038/s41592-023-02157-7. Epub 2024 Jan 17.
Single-cell genetic heterogeneity is ubiquitous in microbial populations and an important aspect of microbial biology; however, we lack a broadly applicable and accessible method to study this heterogeneity in microbial populations. Here, we show a simple, robust and generalizable method for high-throughput single-cell sequencing of target genetic loci in diverse microbes using simple droplet microfluidics devices (droplet targeted amplicon sequencing; DoTA-seq). DoTA-seq serves as a platform to perform diverse assays for single-cell genetic analysis of microbial populations. Using DoTA-seq, we demonstrate the ability to simultaneously track the prevalence and taxonomic associations of >10 antibiotic-resistance genes and plasmids within human and mouse gut microbial communities. This workflow is a powerful and accessible platform for high-throughput single-cell sequencing of diverse microbial populations.
单细胞遗传异质性在微生物群体中普遍存在,是微生物生物学的一个重要方面;然而,我们缺乏一种广泛适用和易于获取的方法来研究微生物群体中的这种异质性。在这里,我们展示了一种简单、稳健且可推广的方法,用于使用简单的液滴微流控装置对不同微生物中的目标遗传基因座进行高通量单细胞测序(液滴靶向扩增子测序;DoTA-seq)。DoTA-seq 是一种用于对微生物群体进行单细胞遗传分析的多样化检测的平台。使用 DoTA-seq,我们证明了能够同时追踪 >10 种抗生素抗性基因和质粒在人类和小鼠肠道微生物群落中的流行程度和分类关联的能力。这种工作流程是一种强大且易于获取的高通量单细胞测序多样化微生物群体的平台。