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琼脂糖凝胶微胶囊使制备容易,picolitre 规模,单细胞基因组学,产生高覆盖率的基因组序列。

Agarose gel microcapsules enable easy-to-prepare, picolitre-scale, single-cell genomics, yielding high-coverage genome sequences.

机构信息

Ultrahigh Precision Optics Technology Team, Advanced Photonics Technology Group, RIKEN Center for Advanced Photonics, 3-1, Hirosawa, Wako, Saitama, 351-0198, Japan.

Japan Collection of Microorganisms (JCM), RIKEN BioResource Research Center, 3-1-1, Koyadai, Tsukuba, Ibaraki, 305-0074, Japan.

出版信息

Sci Rep. 2022 Oct 18;12(1):17014. doi: 10.1038/s41598-022-20923-z.

Abstract

A novel type of agarose gel microcapsule (AGM), consisting of an alginate picolitre sol core and an agarose gel shell, was developed to obtain high-quality, single-cell, amplified genomic DNA of bacteria. The AGM is easy to prepare in a stable emulsion with oil of water-equivalent density, which prevents AGM aggregation, with only standard laboratory equipment. Single cells from a pure culture of Escherichia coli, a mock community comprising 15 strains of human gut bacteria, and a termite gut bacterial community were encapsulated within AGMs, and their genomic DNA samples were prepared with massively parallel amplifications in a tube. The genome sequencing did not need second-round amplification and showed an average genome completeness that was much higher than that obtained using a conventional amplification method on the microlitre scale, regardless of the genomic guanine-cytosine content. Our novel method using AGM will allow many researchers to perform single-cell genomics easily and effectively, and can accelerate genomic analysis of yet-uncultured microorganisms.

摘要

开发了一种新型琼脂糖凝胶微胶囊(AGM),由海藻酸钠 picolitre 溶液核心和琼脂糖凝胶壳组成,用于获得高质量的细菌单细胞、扩增基因组 DNA。AGM 很容易在具有水当量密度的油稳定乳液中制备,可防止 AGM 聚集,仅使用标准实验室设备。从大肠杆菌纯培养物、包含 15 个人肠道细菌菌株的模拟群落和白蚁肠道细菌群落的单个细胞被包裹在 AGM 中,并在管中进行大规模平行扩增来制备其基因组 DNA 样品。基因组测序不需要第二轮扩增,并且显示出的平均基因组完整性远高于使用微升规模的常规扩增方法获得的基因组完整性,而与基因组鸟嘌呤-胞嘧啶含量无关。我们使用 AGM 的新方法将使许多研究人员能够轻松有效地进行单细胞基因组学研究,并可以加速对尚未培养的微生物的基因组分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8097/9579161/3f83841790c6/41598_2022_20923_Fig1_HTML.jpg

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