首页> 外文期刊>Plant Biotechnology Journal >Narrowing down the single homoeologous FaPFRU locus controlling flowering in cultivated octoploid strawberry using a selective mapping strategy
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Narrowing down the single homoeologous FaPFRU locus controlling flowering in cultivated octoploid strawberry using a selective mapping strategy

机译:使用选择性测绘策略缩小控制在培养的octoploid草莓中的单一同优素FAPFRU基因座。

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Extending the period of fruit production is a way to substantially increase crop yield in many fruit or ornamental species. In the cultivated octoploid strawberry (Fragariaxananassa), the most consumed small fruit worldwide, fruit production season can be extended by selecting the perpetual flowering (PF) cultivars. This trait is of considerable interest to growers and to the food industry. Four homoeologous loci controlling a single trait can be expected in such a complex octoploid species. However, we recently showed that the PF trait is under the control of the single dominant FaPFRU locus (J. Exp. Bot., 2013, 64, 1837), making it potentially amenable to marker-assisted selection (MAS). Here, we report the successful use of a strategy, based on a selective mapping using a reduced sample of individuals, to identify nine markers in close linkage to the FaPFRU allelic variant. Thus, this strategy can be used to fine map the target homoeologous loci in other complex polyploid crop species. Recombinant analysis further enabled us to reduce the locus to a region flanked by two markers, Bx083_206 and Bx215_131, corresponding to a 1.1Mb region in the diploid F.vesca reference genome. This region comprises 234 genes, including 15 flowering associated genes. Among these, the FLOWERING LOCUS T (FT) is known to be a key activator of flowering. The close association between the PF trait and the FaPFRU flanking markers was validated using an additional segregating population and genetic resources. This study lays the foundation for effective and rapid breeding of PF strawberry cultivars by MAS.
机译:延长果实产量是一种在许多水果或观赏物种中显着增加作物产量的一种方式。在栽培的八倍体草莓(Fragariaxananassa)中,全球最多消耗的小水果,水果生产季节可以通过选择永久开花(PF)品种来延伸。这些特征对种植者和食品行业具有相当大的兴趣。可以在这种复合的八倍增型物种中预期控制单个性状的四个同优源基因座。然而,我们最近表明PF特性是在单一主导FAPFRU基因座的控制下(J.PEX。BOT。,2013,64,1837),可能适用于标记辅助选择(MAS)。在这里,我们报告了基于使用减少的个体样本的选择性映射来策略的成功使用,以识别与FAPFRU等位基因变体密切连接的九个标记。因此,该策略可用于在其他复杂的多倍体作物物种中微观地图靶同源源位点。重组分析进一步使我们能够将轨迹减少到相当于二倍体F.Vesca参考基因组中的1.1Mb区域的两个标记,BX083_206和BX215_131的区域。该区域包含234个基因,其中包括15个开花相关基因。其中,已知开花基因座T(FT)是开花的关键激活器。使用额外的隔离种群和遗传资源,验证了PF特征和FAPFRU侧翼标记之间的紧密关系。本研究为MAS奠定了有效和快速育种PF草莓品种的基础。

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