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引用本文的文献

1
High throughput single cell metagenomic sequencing with semi-permeable capsules: unraveling microbial diversity at the single-cell level in sewage and fecal microbiomes.使用半透性胶囊的高通量单细胞宏基因组测序:揭示污水和粪便微生物群落单细胞水平的微生物多样性。
Front Microbiol. 2025 Feb 4;15:1516656. doi: 10.3389/fmicb.2024.1516656. eCollection 2024.

使用商业仪器生成的微生物群落单细胞图谱。

Microbiome single cell atlases generated with a commercial instrument.

作者信息

Li Xiangpeng, Xu Linfeng, Demaree Benjamin, Noecker Cecilia, Bisanz Jordan E, Weisgerber Daniel W, Modavi Cyrus, Turnbaugh Peter J, Abate Adam R

出版信息

bioRxiv. 2024 Mar 16:2023.08.08.551713. doi: 10.1101/2023.08.08.551713.

DOI:10.1101/2023.08.08.551713
PMID:37609281
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10441329/
Abstract

Single cell sequencing is useful for resolving complex systems into their composite cell types and computationally mining them for unique features that are masked in pooled sequencing. However, while commercial instruments have made single cell analysis widespread for mammalian cells, analogous tools for microbes are limited. Here, we present EASi-seq (Easily Accessible Single microbe sequencing). By adapting the single cell workflow of the commercial Mission Bio Tapestri instrument, this method allows for efficient sequencing of individual microbes' genomes. EASi-seq allows thousands of microbes to be sequenced per run and, as we show, can generate detailed atlases of human and environmental microbiomes. The ability to capture large shotgun genome datasets from thousands of single microbes provides new opportunities in discovering and analyzing species subpopulations. To facilitate this, we develop a companion bioinformatic pipeline that clusters microbes by similarity, improving whole genome assembly, strain identification, taxonomic classification, and gene annotation. In addition, we demonstrate integration of metagenomic contigs with the EASi-seq datasets to reduce capture bias and increase coverage. Overall, EASi-seq enables high quality single cell genomic data for microbiome samples using an accessible workflow that can be run on a commercially available platform.

摘要

单细胞测序有助于将复杂系统分解为其组成细胞类型,并通过计算挖掘其中在混合测序中被掩盖的独特特征。然而,尽管商业仪器已使单细胞分析在哺乳动物细胞中广泛应用,但针对微生物的类似工具却很有限。在此,我们介绍EASi-seq(易于获取的单微生物测序)。通过改编商业Mission Bio Tapestri仪器的单细胞工作流程,该方法能够对单个微生物的基因组进行高效测序。EASi-seq每次运行可对数千个微生物进行测序,并且正如我们所展示的,能够生成人类和环境微生物群落的详细图谱。从数千个单个微生物中捕获大型鸟枪法基因组数据集的能力,为发现和分析物种亚群提供了新机遇。为便于实现这一点,我们开发了一个配套的生物信息学流程,该流程通过相似性对微生物进行聚类,改进全基因组组装、菌株鉴定、分类学分类和基因注释。此外,我们展示了宏基因组重叠群与EASi-seq数据集的整合,以减少捕获偏差并增加覆盖范围。总体而言,EASi-seq使用可在商用平台上运行的便捷工作流程,为微生物群落样本提供高质量的单细胞基因组数据。