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Ty1-copia elements reveal diverse insertion sites linked to polymorphisms among flax (Linum usitatissimum L.) accessions

机译:Ty1-copia元素揭示了与亚麻(Linum usitatissimum L.)种质多态性相关的不同插入位点

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摘要

BackgroundInitial characterization of the flax genome showed that Ty1-copia retrotransposons are abundant, with several members being recently inserted, and in close association with genes. Recent insertions indicate a potential for ongoing transpositional activity that can create genomic diversity among accessions, cultivars or varieties. The polymorphisms generated constitute a good source of molecular markers that may be associated with phenotype if the insertions alter gene activity. Flax, where accessions are bred mainly for seed nutritional properties or for fibers, constitutes a good model for studying the relationship of transpositional activity with diversification and breeding. In this study, we estimated copy number and used a type of transposon display known as Sequence-Specific Amplification Polymorphisms (SSAPs), to characterize six families of Ty1-copia elements across 14 flax accessions. Polymorphic insertion sites were sequenced to find insertions that could potentially alter gene expression, and a preliminary test was performed with selected genes bearing transposable element (TE) insertions.
机译:背景亚麻基因组的初始特征表明,Ty1-copia逆转座子丰富,最近插入了数个成员,并与基因密切相关。最近的插入表明正在进行的易位活性的潜力,该活性可以在种质,品种或变种之间产生基因组多样性。产生的多态性构成了分子标记的良好来源,如果插入改变了基因活性,则可能与表型有关。亚麻主要是为种子的营养特性或纤维而繁殖的,构成了研究转座活性与多样化和育种之间关系的良好模型。在这项研究中,我们估计了拷贝数并使用了一种转座子展示类型,即序列特异性扩增多态性(SSAPs),以表征14个亚麻种的6个Ty1-copia元素家族。对多态性插入位点进行测序,以发现可能改变基因表达的插入,并对带有转座因子(TE)插入的选定基因进行了初步测试。

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