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用于全基因组测序的多路复用短读 DNA 文库的成本意识生成。

Cost-conscious generation of multiplexed short-read DNA libraries for whole-genome sequencing.

机构信息

Research School of Biology, Australian National University, Canberra, ACT, Australia.

Diversity Arrays Technology, Bruce, ACT, Australia.

出版信息

PLoS One. 2023 Jan 27;18(1):e0280004. doi: 10.1371/journal.pone.0280004. eCollection 2023.

Abstract

Massively parallel, second-generation short-read DNA sequencing has become an integral tool in biology for genomic studies. Offering highly accurate base-pair resolution at the most competitive price, the technology has become widespread. However, high-throughput generation of multiplexed DNA libraries can be costly and cumbersome. Here, we present a cost-conscious protocol for generating multiplexed short-read DNA libraries using a bead-linked transposome from Illumina. We prepare libraries in high-throughput with small reaction volumes that use 1/50th the amount of transposome compared to Illumina DNA Prep tagmentation protocols. By reducing transposome usage and optimising the protocol to circumvent magnetic bead-based clean-ups between steps, we reduce costs, labour time and DNA input requirements. Developing our own dual index primers further reduced costs and enables up to nine 96-well microplate combinations. This facilitates efficient usage of large-scale sequencing platforms, such as the Illumina NovaSeq 6000, which offers up to three terabases of sequencing per S4 flow cell. The protocol presented substantially reduces the cost per library by approximately 1/20th compared to conventional Illumina methods.

摘要

第二代高通量、短读长 DNA 测序技术已成为生物学中基因组研究的重要工具。该技术以极具竞争力的价格提供了高度准确的碱基对分辨率,因此已得到广泛应用。然而,高通量生成多重 DNA 文库可能成本高昂且繁琐。在这里,我们展示了一种经济实惠的方案,使用 Illumina 的珠联转座酶来生成多重短读长 DNA 文库。与 Illumina DNA Prep 标签酶切方案相比,我们使用小反应体积以高通量制备文库,其中转座酶的用量减少了 1/50。通过减少转座酶的使用并优化方案以避免在步骤之间进行基于磁珠的清洗,可以降低成本、减少劳动时间和所需 DNA 输入量。开发自己的双索引引物进一步降低了成本,并支持多达 9 种 96 孔微板组合。这有助于高效利用大型测序平台,如 Illumina NovaSeq 6000,该平台每个 S4 流动池提供高达 3 太字节的测序能力。与传统的 Illumina 方法相比,该方案使每个文库的成本降低了约 1/20。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb56/9882895/3735c2b879d6/pone.0280004.g001.jpg

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