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Ultrahigh-Throughput Multiplexing and Sequencing of 500-Base-Pair Amplicon Regions on the Illumina HiSeq 2500 Platform

机译:Illumina HiSeq 2500平台上大于500个碱基对的扩增子区域的超高通量多路复用和测序

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Amplification, sequencing, and analysis of the 16S rRNA gene affords characterization of microbial community composition. As this tool has become more popular and amplicon-sequencing applications have grown in the total number of samples, growth in sample multiplexing is becoming necessary while maintaining high sequence quality and sequencing depth. Here, modifications to the Illumina HiSeq 2500 platform are described which produce greater multiplexing capabilities and 300-bp paired-end reads of higher quality than those produced by the current Illumina MiSeq platform. To improve the feasibility and flexibility of this method, a 2-step PCR amplification protocol is also described that allows for targeting of different amplicon regions, and enhances amplification success from samples with low bacterial bioburden. IMPORTANCE Amplicon sequencing has become a popular and widespread tool for surveying microbial communities. Lower overall costs associated with high-throughput sequencing have made it a widely adopted approach, especially for projects that necessitate sample multiplexing to eliminate batch effect and reduced time to acquire data. The method for amplicon sequencing on the Illumina HiSeq 2500 platform described here provides improved multiplexing capabilities while simultaneously producing greater quality sequence data and lower per-sample cost relative to those of the Illumina MiSeq platform without sacrificing amplicon length. To make this method more flexible for various amplicon-targeted regions as well as improve amplification from low-biomass samples, we also present and validate a 2-step PCR library preparation method.
机译:16S rRNA基因的扩增,测序和分析提供了微生物群落组成的表征。随着这种工具变得越来越流行,并且扩增子测序应用在样品总数中的增长,在保持高序列质量和测序深度的同时,增加样品多路复用变得很有必要。在这里,将介绍对Illumina HiSeq 2500平台的修改,该修改可以产生比当前Illumina MiSeq平台更高的复用能力和更高质量的300 bp配对末端读取。为了提高该方法的可行性和灵活性,还介绍了一种两步PCR扩增方案,该方案可靶向不同的扩增子区域,并提高了细菌载量低的样品的扩增成功率。重要信息扩增子测序已成为调查微生物群落的一种流行且广泛的工具。与高通量测序相关的较低总体成本使其成为一种被广泛采用的方法,尤其是对于那些需要样品多路复用以消除批量效应并减少数据采集时间的项目。与Illumina MiSeq平台相比,此处描述的Illumina HiSeq 2500平台上的扩增子测序方法提供了改进的多路复用能力,同时产生了更高质量的序列数据和较低的每样本成本,而又不牺牲扩增子的长度。为了使该方法对于各种扩增子靶向区域更灵活,并改善低生物量样品的扩增,我们还提出并验证了一种两步PCR文库制备方法。

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