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Genome-wide characterization of microsatellites in Triticeae species: abundance, distribution and evolution

机译:在小麦品种微卫星的全基因组特征:数量,分布和演化

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Microsatellites are an important constituent of plant genome and distributed across entire genome. In this study, genome-wide analysis of microsatellites in 8 Triticeae species and 9 model plants revealed that microsatellite characteristics were similar among the Triticeae species. Furthermore, genome-wide microsatellite markers were designed in wheat and then used to analyze the evolutionary relationship of wheat and other Triticeae species. Results displayed that Aegilops tauschii was found to be the closest species to Triticum aestivum, followed by Triticum urartu, Triticum turgidum and Aegilops speltoides, while Triticum monococcum, Aegilops sharonensis and Hordeum vulgare showed a relatively lower PCR amplification effectivity. Additionally, a significantly higher PCR amplification effectivity was found in chromosomes at the same subgenome than its homoeologous when these markers were subjected to search against different chromosomes in wheat. After a rigorous screening process, a total of 20,666 markers showed high amplification and polymorphic potential in wheat and its relatives, which were integrated with the public available wheat markers and then anchored to the genome of wheat (CS). This study not only provided the useful resource for SSR markers development in Triticeae species, but also shed light on the evolution of polyploid wheat from the perspective of microsatellites.
机译:微卫星是植物基因组的重要组成部分,并分布在整个基因组上。在该研究中,8个麦芽糖物种和9种模型植物中微卫星的基因组分析表明,细菌颗粒中的微卫星特性相似。此外,在小麦中设计了基因组微卫星标记,然后用于分析小麦和其他小麦物种的进化关系。结果显示,发现Aegilops Tauschii是Triticum Aestivum最近的物种,其次是Triticum urartu,Triticum Turgidum和Aegilops Spottoides,而Triticum Monoccocum,Aegilops Sharonensis和Hordeum Vulgare表现出相对较低的PCR扩增效果。另外,在相同亚基组的染色体中发现了显着更高的PCR扩增效果,而在对小麦中的不同染色体进行搜索时,则在其同源亚组中发现。经过严格的筛选过程后,共20,666个标记显示小麦及其亲属的高扩增和多态势,与公共可用小麦标志物相结合,然后固定在小麦(CS)的基因组中。本研究不仅为妥素果实物种中的SSR标记发育的有用资源提供了基于微卫星的角度来阐明了多倍体小麦的演变。

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