首页> 美国卫生研究院文献>DNA Research: An International Journal for Rapid Publication of Reports on Genes and Genomes >Editors choice: Discovery of High-Confidence Single Nucleotide Polymorphisms from Large-Scale De Novo Analysis of Leaf Transcripts of Aegilops tauschii A Wild Wheat Progenitor
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Editors choice: Discovery of High-Confidence Single Nucleotide Polymorphisms from Large-Scale De Novo Analysis of Leaf Transcripts of Aegilops tauschii A Wild Wheat Progenitor

机译:编辑选择:从野生小麦祖先牛肝菌(Aegilops tauschii)叶片转录本的大规模从头算分析中发现高可信的单核苷酸多态性

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摘要

Construction of high-resolution genetic maps is important for genetic and genomic research, as well as for molecular breeding. Single nucleotide polymorphisms (SNPs) are the predominant class of genetic variation and can be used as molecular markers. Aegilops tauschii, the D-genome donor of common wheat, is considered a valuable genetic resource for wheat improvement. Our previous study implied that Ae. tauschii accessions can be genealogically divided into two major lineages. In this study, the transcriptome of two Ae. tauschii accessions from each lineage, lineage 1 (L1) and 2 (L2), was sequenced, yielding 9435 SNPs and 739 insertion/deletion polymorphisms (indels) after de novo assembly of the reads. Based on 36 contig sequences, 31 SNPs and six indels were validated on 20 diverse Ae. tauschii accessions. Because almost all of the SNP markers were polymorphic between L1 and L2, and the D-genome donor of common wheat is presumed to belong to L2, these markers are available for D-genome typing in crosses between common wheat varieties and L1-derived synthetic wheat. Due to the conserved synteny between wheat and barley chromosomes, the high-density expressed sequence tag barley map and the hypothetical gene order in barley can be applied to develop markers on target chromosomal regions in wheat.
机译:高分辨率遗传图谱的构建对于遗传和基因组研究以及分子育种非常重要。单核苷酸多态性(SNP)是遗传变异的主要类别,可以用作分子标记。普通小麦的D基因组供体Aegilops tauschii被认为是小麦改良的宝贵遗传资源。我们先前的研究暗示Ae。 tauschii种质可以从谱系上分为两个主要谱系。在这项研究中,两个Ae的转录组。对每个谱系,即谱系1(L1)和谱系2(L2)的tauschii菌种进行测序,从头开始阅读后产生9435个SNP和739个插入/缺失多态性(indels)。基于36个重叠群序列,在20种不同的Ae上验证了31个SNP和6个插入缺失。陶氏菌种。因为几乎所有SNP标记在L1和L2之间都是多态性的,并且假定普通小麦的D基因组供体属于L2,所以这些标记可用于普通小麦品种与L1衍生的合成品种之间的杂交的D基因组分型小麦。由于小麦和大麦染色体之间的保守性,高密度表达的序列标签大麦图谱和大麦中假设的基因顺序可用于在小麦的目标染色体区域上开发标记。

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