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Rapid and Inexpensive Whole-Genome Genotyping-by-Sequencing for Crossover Localization and Fine-Scale Genetic Mapping

机译:快速廉价的全基因组测序基因分型用于交叉定位和精细规模的遗传作图

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摘要

The reshuffling of existing genetic variation during meiosis is important both during evolution and in breeding. The reassortment of genetic variants relies on the formation of crossovers (COs) between homologous chromosomes. The pattern of genome-wide CO distributions can be rapidly and precisely established by the short-read sequencing of individuals from F2 populations, which in turn are useful for quantitative trait locus (QTL) mapping. Although sequencing costs have decreased precipitously in recent years, the costs of library preparation for hundreds of individuals have remained high. To enable rapid and inexpensive CO detection and QTL mapping using low-coverage whole-genome sequencing of large mapping populations, we have developed a new method for library preparation along with Trained Individual GenomE Reconstruction, a probabilistic method for genotype and CO predictions for recombinant individuals. In an example case with hundreds of F2 individuals from two Arabidopsis thaliana accessions, we resolved most CO breakpoints to within 2 kb and reduced a major flowering time QTL to a 9-kb interval. In addition, an extended region of unusually low recombination revealed a 1.8-Mb inversion polymorphism on the long arm of chromosome 4. We observed no significant differences in the frequency and distribution of COs between F2 individuals with and without a functional copy of the DNA helicase gene RECQ4A. In summary, we present a new, cost-efficient method for large-scale, high-precision genotyping-by-sequencing.
机译:减数分裂过程中现有遗传变异的改组在进化和育种中都很重要。遗传变异的重新分类依赖于同源染色体之间交叉的形成。通过对F2种群中的个体进行短读测序,可以快速而准确地建立全基因组CO分布的模式,这反过来又可用于定量性状基因座(QTL)定位。尽管近年来测序成本急剧下降,但数百人的文库制备成本仍然很高。为了使用大范围覆盖人群的低覆盖全基因组测序实现快速且廉价的CO检测和QTL定位,我们开发了一种新的文库制备方法,以及经过训练的个体GenomE重建,这是一种针对重组个体的基因型和CO预测的概率方法。在一个示例案例中,有数百个来自两个拟南芥种质的F2个体,我们将大多数CO断裂点解析为2 kb以内,并将主要开花时间QTL降低为9 kb。此外,异常低重组的扩展区域显示了4号染色体长臂上的1.8 Mb倒位多态性。我们观察到有功能和无功能DNA解旋酶的F2个体之间CO的频率和分布没有显着差异。基因RECQ4A。总之,我们提出了一种新的,具有成本效益的方法,用于大规模,高精度的基因分型。

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