Akpinar Bala Ani, Lucas Stuart, Budak Hikmet
Sabanci University Nanotechnology Research and Application Center (SUNUM), Sabanci University, Orhanlı, 34956, Tuzla, Istanbul, Turkey.
Cereal Genomics Lab, Department of Plant Sciences and Plant Pathology, Montana State University, Bozeman, MT, 59717, USA.
Funct Integr Genomics. 2017 Jan;17(1):97-105. doi: 10.1007/s10142-016-0536-6. Epub 2016 Nov 29.
Single-nucleotide polymorphisms (SNPs) are the most prevalent type of variation in genomes that are increasingly being used as molecular markers in diversity analyses, mapping and cloning of genes, and germplasm characterization. However, only a few studies reported large-scale SNP discovery in Aegilops tauschii, restricting their potential use as markers for the low-polymorphic D genome. Here, we report 68,592 SNPs found on the gene-related sequences of the 5D chromosome of Ae. tauschii genotype MvGB589 using genomic and transcriptomic sequences from seven Ae. tauschii accessions, including AL8/78, the only genotype for which a draft genome sequence is available at present. We also suggest a workflow to compare SNP positions in homologous regions on the 5D chromosome of Triticum aestivum, bread wheat, to mark single nucleotide variations between these closely related species. Overall, the identified SNPs define a density of 4.49 SNPs per kilobyte, among the highest reported for the genic regions of Ae. tauschii so far. To our knowledge, this study also presents the first chromosome-specific SNP catalog in Ae. tauschii that should facilitate the association of these SNPs with morphological traits on chromosome 5D to be ultimately targeted for wheat improvement.
单核苷酸多态性(SNPs)是基因组中最普遍的变异类型,越来越多地被用作多样性分析、基因定位与克隆以及种质鉴定中的分子标记。然而,仅有少数研究报道了节节麦中大规模SNP的发现,这限制了它们作为低多态性D基因组标记的潜在用途。在此,我们报告了利用来自7份节节麦材料(包括AL8/78,目前唯一有基因组草图序列的基因型)的基因组和转录组序列,在节节麦基因型MvGB589的5D染色体基因相关序列上发现的68592个SNP。我们还提出了一个工作流程,用于比较普通小麦5D染色体同源区域的SNP位置,以标记这些近缘物种之间的单核苷酸变异。总体而言,所鉴定的SNP密度为每千碱基4.49个SNP,是迄今为止报道的节节麦基因区域中最高的之一。据我们所知,本研究还展示了节节麦中首个染色体特异性SNP目录,这应有助于将这些SNP与5D染色体上的形态性状相关联,最终目标是改良小麦。