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基于测序的定位加速了大麦正向遗传学研究。

Mapping-by-sequencing accelerates forward genetics in barley.

作者信息

Mascher Martin, Jost Matthias, Kuon Joel-Elias, Himmelbach Axel, Aßfalg Axel, Beier Sebastian, Scholz Uwe, Graner Andreas, Stein Nils

出版信息

Genome Biol. 2014 Jun 10;15(6):R78. doi: 10.1186/gb-2014-15-6-r78.

Abstract

Mapping-by-sequencing has emerged as a powerful technique for genetic mapping in several plant and animal species. As this resequencing-based method requires a reference genome, its application to complex plant genomes with incomplete and fragmented sequence resources remains challenging. We perform exome sequencing of phenotypic bulks of a mapping population of barley segregating for a mutant phenotype that increases the rate of leaf initiation. Read depth analysis identifies a candidate gene, which is confirmed by the analysis of independent mutant alleles. Our method illustrates how the genomic resources of barley together with exome resequencing can underpin mapping-by-sequencing.

摘要

测序定位已成为在多种动植物物种中进行遗传定位的强大技术。由于这种基于重测序的方法需要一个参考基因组,因此将其应用于序列资源不完整且碎片化的复杂植物基因组仍然具有挑战性。我们对大麦定位群体的表型混合样本进行了外显子组测序,该群体针对一种增加叶片起始速率的突变表型进行分离。读取深度分析确定了一个候选基因,该基因通过对独立突变等位基因的分析得到了证实。我们的方法说明了大麦的基因组资源与外显子组重测序如何能够支持测序定位。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a474/4073093/31f196962daa/gb-2014-15-6-r78-1.jpg

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