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Hackflex:低成本、高通量、Illumina Nextera Flex 文库构建。

Hackflex: low-cost, high-throughput, Illumina Nextera Flex library construction.

机构信息

iThree Institute, University of Technology Sydney, Sydney, NSW, Australia.

出版信息

Microb Genom. 2022 Jan;8(1). doi: 10.1099/mgen.0.000744.

Abstract

We developed a low-cost method for the production of Illumina-compatible sequencing libraries that allows up to 14 times more libraries for high-throughput Illumina sequencing to be generated for the same cost. We call this new method Hackflex. The quality of library preparation was tested by constructing libraries from MG1655 genomic DNA using either Hackflex, standard Nextera Flex (recently renamed as Illumina DNA Prep) or a variation of standard Nextera Flex in which the bead-linked transposase is diluted prior to use. In order to test the library quality for genomes with a higher and a lower G+C content, library construction methods were also tested on PAO1 and ATCC 25923 respectively. We demonstrated that Hackflex can produce high-quality libraries and yields a highly uniform coverage, equivalent to the standard Nextera Flex kit. We show that strongly size-selected libraries produce sufficient yield and complexity to support microbial genome assembly, and that assemblies of the large-insert libraries can be much more contiguous than standard libraries without strong size selection. We introduce a new set of sample barcodes that are distinct from standard Illumina barcodes, enabling Hackflex samples to be multiplexed with samples barcoded using standard Illumina kits. Using Hackflex, we were able to achieve a per-sample reagent cost for library prep of A$7.22 (Australian dollars) (US $5.60; UK £3.87, £1=A$1.87), which is 9.87 times lower than the standard Nextera Flex protocol at advertised retail price. An additional simple modification and further simplification of the protocol by omitting the wash step enables a further price reduction to reach an overall 14-fold cost saving. This method will allow researchers to construct more libraries within a given budget, thereby yielding more data and facilitating research programmes where sequencing large numbers of libraries is beneficial.

摘要

我们开发了一种低成本的 Illumina 兼容测序文库制备方法,该方法可以在相同成本下,生成多达 14 倍数量的高通量 Illumina 测序文库。我们称之为 Hackflex。文库制备质量通过使用 Hackflex、标准 Nextera Flex(最近更名为 Illumina DNA Prep)或在使用前稀释珠连接转座酶的标准 Nextera Flex 变体,从 MG1655 基因组 DNA 构建文库来测试。为了测试具有更高和更低 GC 含量的基因组的文库质量,文库构建方法也分别在 PAO1 和 ATCC 25923 上进行了测试。我们证明 Hackflex 可以产生高质量的文库,并产生高度均匀的覆盖度,与标准 Nextera Flex 试剂盒相当。我们表明,强烈大小选择的文库可以产生足够的产量和复杂度来支持微生物基因组组装,并且大插入文库的组装可以比没有强烈大小选择的标准文库更连续。我们引入了一组与标准 Illumina 条形码不同的新样本条形码,使 Hackflex 样本能够与使用标准 Illumina 试剂盒进行条形码标记的样本进行多重化。使用 Hackflex,我们能够实现每个样本的文库制备试剂成本为 A$7.22(澳元)(US $5.60;英国 £3.87,£1=A$1.87),比标准 Nextera Flex 协议的广告零售价格低 9.87 倍。通过简单的修改和省略洗涤步骤进一步简化方案,可以进一步降低价格,达到总体 14 倍的成本节约。该方法将允许研究人员在给定预算内构建更多文库,从而产生更多数据,并促进那些对测序大量文库有益的研究计划。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e8e7/8914357/b677c9496fe0/mgen-8-0744-g001.jpg

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