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首页> 外文期刊>Journal of the American Society for Horticultural Science >The Genotypes of Polymorphic Simple Sequence Repeat Loci Revealed by Whole-genome Resequencing Data of 30 Pyrus Accessions
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The Genotypes of Polymorphic Simple Sequence Repeat Loci Revealed by Whole-genome Resequencing Data of 30 Pyrus Accessions

机译:多态性简单序列重复锁定基因型的基因型,其全基因组重新排列的30个Pyrus access的数据

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摘要

Simple sequence repeats (SSRs) are widely used in cultivar identification, genetic relationship analysis, and quantitative trait locus mapping. Currently, the selection of hybrid progeny plants in molecular marker-assisted breeding mostly relies on SSR markers because of their ease of operation. In Pyrus, a large number of SSR markers have been developed previously. The method to identify polymorphic SSRs quickly is still lacking in cultivated as well as wild pear species. We present a large number of polymorphic SSRs identified using a quick in silico approach applied across 30 cultivated and wild accessions from Pyrus species. A total of 49,147 SSR loci were identified in Pyrus, and their genotypes were evaluated by whole-genome resequencing data of 30 Pyrus accessions. The results show that most SSR loci were dinucleotide repeat motifs located in intergenic regions. The genotypes of all SSR loci were revealed in all accessions. A total of 23,209 loci were detected, with more than one genotype in all Pyrus accessions. We selected 702 highly polymorphic SSR loci to characterize the pear accessions with an average polymorphism information content value of 0.67, suggesting that these SSR loci were highly polymorphic. The genetic relationship of Pyrus species in the neighbor-joining (NJ) tree and population structure showed a clear division between the oriental and occidental accessions. The population structure split all oriental pears into two groups: cultivars and wild accessions. These new findings of the polymorphic SSR loci in this study are valuable for selecting appropriate markers in molecular marker-assisted breeding in Pyrus.
机译:简单的序列重复(SSRS)广泛用于品种鉴定,遗传关系分析和定量特质基因座测绘。目前,由于其易于操作,在分子标记辅助育种中选择杂种后代植物主要依赖于SSR标记。在Pyrus中,先前已经开发了大量SSR标记。培养和野梨种类仍然缺乏多态SSRS的方法。我们介绍了在从Pyrus物种的30种栽培和野生牧草中施加的硅方法中识别的大量多态性SSR。在Pyrus中鉴定了共有49,147个SSR基因座,并通过全基因组重新排列的30个Pyrus access的数据评估它们的基因型。结果表明,大多数SSR基因座是位于非基因区的二核苷酸重复基序。所有SSR基因座的基因型都在所有换乘中透露。在所有Pyrus access中,共检测到总共23,209个基因座,以多种基因型。我们选择了702个高度多态性SSR基因座,以表征具有0.67的平均多态性信息内容值为0.67的梨敷,这表明这些SSR基因座是高度多态性的。 Pyrus物种在邻近(NJ)树和人口结构中的遗传关系在东方和右侧探索之间显示出清晰的分裂。人口结构将所有东方梨分成两组:栽培品种和野生加入。本研究中多晶型SSR基因座的新发现对于在Pyrus中选择分子标记辅助繁殖中的适当标记是有价值的。

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    Shanghai Acad Agr Sci Forestry &

    Pomol Res Inst Shanghai Key Lab Protected Hort Technol Shanghai 201403 Peoples R China;

    Shanghai Acad Agr Sci Forestry &

    Pomol Res Inst Shanghai Key Lab Protected Hort Technol Shanghai 201403 Peoples R China;

    Shanghai Acad Agr Sci Forestry &

    Pomol Res Inst Shanghai Key Lab Protected Hort Technol Shanghai 201403 Peoples R China;

    Shanghai Acad Agr Sci Forestry &

    Pomol Res Inst Shanghai Key Lab Protected Hort Technol Shanghai 201403 Peoples R China;

    Shanghai Acad Agr Sci Forestry &

    Pomol Res Inst Shanghai Key Lab Protected Hort Technol Shanghai 201403 Peoples R China;

    Zhejiang Univ Key Lab Hort Plant Growth Dev &

    Qual Improvement State Agr Minist Dept Hort Hangzhou 310058 Zhejiang Peoples R China;

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  • 正文语种 eng
  • 中图分类 园艺;
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