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通过改良的碱性热休克程序提高单个细菌细胞的裂解效率。

Improved lysis of single bacterial cells by a modified alkaline-thermal shock procedure.

作者信息

He Jian, Du Shiyu, Tan Xiaohua, Arefin Ayesha, Han Cliff S

机构信息

Center for Translational Medicine, Department of Biotechnology, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian, Liaoning, China.

Bioscience Division, Los Alamos National Laboratory, Los Alamos, NM.

出版信息

Biotechniques. 2016 Mar 1;60(3):129-35. doi: 10.2144/000114389. eCollection 2016.

Abstract

Single-cell genomics (SCG) is a recently developed tool to study the genomes of unculturable bacterial species. SCG relies on multiple-strand displacement amplification (MDA), PCR, and next-generation sequencing (NGS); however, obtaining sufficient amounts of high-quality DNA from samples is a major challenge when performing this technique. Here we present an improved bacterial cell lysing procedure that combines incubation in an alkaline buffer with a thermal shock (freezing/heating) treatment to yield highly intact genomic DNA with high efficiency. This procedure is more efficient in lysing Bacillus subtilis and Synechocystis cells compared with two other frequently used lysis methods. Furthermore, 16S ribosomal RNA gene and overall genome recovery were found to be improved by this method using single cells from a Utah desert soil community or Escherichia coli single cells, respectively. The efficiency of genome recovery for E. coli single cells using our procedure is comparable with that of the REPLI-g Single Cell (sc) Kit, but our method is much more economical. By providing high-quality genome templates suitable for downstream applications, our procedure will be a promising improvement for SCG research.

摘要

单细胞基因组学(SCG)是一种最近开发的用于研究不可培养细菌物种基因组的工具。SCG依赖于多链置换扩增(MDA)、聚合酶链反应(PCR)和下一代测序(NGS);然而,在执行该技术时,从样本中获得足够数量的高质量DNA是一项重大挑战。在此,我们提出一种改进的细菌细胞裂解程序,该程序将在碱性缓冲液中孵育与热休克(冷冻/加热)处理相结合,以高效产生高度完整的基因组DNA。与其他两种常用的裂解方法相比,该程序在裂解枯草芽孢杆菌和集胞藻细胞方面更有效。此外,分别使用来自犹他沙漠土壤群落的单细胞或大肠杆菌单细胞,通过该方法发现16S核糖体RNA基因和全基因组回收率得到了提高。使用我们的程序,大肠杆菌单细胞的基因组回收率与REPLI-g单细胞(sc)试剂盒相当,但我们的方法更经济。通过提供适用于下游应用的高质量基因组模板,我们的程序将是SCG研究的一项有前景的改进。

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