Massively parallel single-cell sequencing of diverse microbial populations.

Lan, Freeman; Saba, Jason; Ross, Tyler D; Zhou, Zhichao; Krauska, Katie; Anantharaman, Karthik; Landick, Robert; Venturelli, Ophelia S · Nat Methods · 2024

basic_science · Level V

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Abstract

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.

Medical subject headings