John Innes Centre, Norwich Research Park, Norwich NR4 7UH, UK.
BMC Plant Biol. 2013 Aug 6;13:111. doi: 10.1186/1471-2229-13-111.
The detection and exploitation of genetic variation underpins crop improvement. However, the polyploid nature of the genomes of many of our most important crops represents a barrier, particularly for the analysis of variation within genes. To overcome this, we aimed to develop methodologies based on amplicon sequencing that involve the incorporation of barcoded amplification tags (BATs) into PCR products.
A protocol was developed to tag PCR products with 5' 6-base oligonucleotide barcode extensions before pooling for sequencing library production using standard Illumina adapters. A computational method was developed for the de-convolution of products and the robust detection and scoring of sequence variants. Using this methodology, amplicons targeted to gene sequences were screened across a B. napus mapping population and the resulting allele scoring strings for 24 markers linkage mapped to the expected regions of the genome. Furthermore, using one-dimensional 8-fold pooling, 4608 lines of a B. napus mutation population were screened for induced mutations in a locus-specific amplicon (an orthologue of GL2.b) and mixed product of three co-amplified loci (orthologues of FAD2), identifying 10 and 41 mutants respectively.
The utilisation of barcode tags to de-convolute pooled PCR products in multiplexed, variation screening via Illumina sequencing provides a cost effective method for SNP genotyping and mutation detection and, potentially, markers for causative changes, even in polyploid species. Combining this approach with existing Illumina multiplexing workflows allows the analysis of thousands of lines cheaply and efficiently in a single sequencing run with minimal library production costs.
遗传变异的检测和利用是作物改良的基础。然而,我们许多最重要作物的基因组的多倍体性质是一个障碍,特别是对于基因内变异的分析。为了克服这一障碍,我们旨在开发基于扩增子测序的方法,该方法涉及将带有条形码的扩增标签 (BAT) 掺入 PCR 产物中。
开发了一种在进行测序文库制备之前,用 5' 6 碱基寡核苷酸条形码扩展标记 PCR 产物的方案,使用标准的 Illumina 接头进行聚合。开发了一种用于产品去卷积以及稳健检测和评分序列变异的计算方法。使用该方法,针对基因序列的扩增子在 B. napus 图谱群体中进行了筛选,24 个标记的等位基因评分字符串与基因组的预期区域连锁映射。此外,使用一维 8 倍池化,对 B. napus 突变群体的 4608 条系进行了特定于基因座的扩增子(GL2.b 的同源物)和三个共扩增基因座的混合产物(FAD2 的同源物)的诱变筛选,分别鉴定出 10 和 41 个突变体。
在 Illumina 测序的高通量、变异筛选中,使用条形码标签对池化 PCR 产物进行去卷积,为 SNP 基因分型和突变检测提供了一种具有成本效益的方法,并且,有可能为多倍体物种中的因果变化提供标记。将这种方法与现有的 Illumina 多重工作流程相结合,可以在单个测序运行中以最小的文库制备成本,廉价且高效地分析数千条系。