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Nanoliter Reactors Improve Multiple Displacement Amplification of Genomes from Single Cells

机译:纳升反应堆可改善单细胞基因组的多种置换扩增

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摘要

Since only a small fraction of environmental bacteria are amenable to laboratory culture, there is great interest in genomic sequencing directly from single cells. Sufficient DNA for sequencing can be obtained from one cell by the Multiple Displacement Amplification (MDA) method, thereby eliminating the need to develop culture methods. Here we used a microfluidic device to isolate individual Escherichia coli and amplify genomic DNA by MDA in 60-nl reactions. Our results confirm a report that reduced MDA reaction volume lowers nonspecific synthesis that can result from contaminant DNA templates and unfavourable interaction between primers. The quality of the genome amplification was assessed by qPCR and compared favourably to single-cell amplifications performed in standard 50-μl volumes. Amplification bias was greatly reduced in nanoliter volumes, thereby providing a more even representation of all sequences. Single-cell amplicons from both microliter and nanoliter volumes provided high-quality sequence data by high-throughput pyrosequencing, thereby demonstrating a straightforward route to sequencing genomes from single cells.
机译:由于仅一小部分环境细菌适合实验室培养,因此人们对直接从单细胞进行基因组测序非常感兴趣。通过多重置换扩增(MDA)方法可以从一个细胞中获得足够的测序所需DNA,从而无需开发培养方法。在这里,我们使用微流控设备来分离单个大肠杆菌并通过MDA在60-nl反应中扩增基因组DNA。我们的结果证实了一份报告,即降低的MDA反应量会降低非特异性合成,这可能是由污染的DNA模板和引物之间不利的相互作用引起的。通过qPCR评估了基因组扩增的质量,并与以50μl标准体积进行的单细胞扩增相比具有优势。纳升体积的扩增偏差大大降低,从而提供了更均匀的所有序列表示。来自微升和纳升体积的单细胞扩增子通过高通量焦磷酸测序提供了高质量的序列数据,从而证明了从单细胞进行基因组测序的直接途径。

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