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首页> 外文期刊>Frontiers in Plant Science >Genome-Wide Discovery and Deployment of Insertions and Deletions Markers Provided Greater Insights on Species, Genomes, and Sections Relationships in the Genus Arachis
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Genome-Wide Discovery and Deployment of Insertions and Deletions Markers Provided Greater Insights on Species, Genomes, and Sections Relationships in the Genus Arachis

机译:全基因组发现和插入和缺失标记的部署提供了对 Arachis 属中物种,基因组和断面关系的更深入的了解

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Small insertions and deletions (InDels) are the second most prevalent and the most abundant structural variations in plant genomes. In order to deploy these genetic variations for genetic analysis in genus Arachis , we conducted comparative analysis of the draft genome assemblies of both the diploid progenitor species of cultivated tetraploid groundnut ( Arachis hypogaea L.) i.e., Arachis duranensis (A subgenome) and Arachis ipa?nsis (B subgenome) and identified 515,223 InDels. These InDels include 269,973 insertions identified in A. ipa?nsis against A. duranensis while 245,250 deletions in A. duranensis against A. ipa?nsis . The majority of the InDels were of single bp (43.7%) and 2–10 bp (39.9%) while the remaining were >10 bp (16.4%). Phylogenetic analysis using genotyping data for 86 (40.19%) polymorphic markers grouped 96 diverse Arachis accessions into eight clusters mostly by the affinity of their genome. This study also provided evidence for the existence of “K” genome, although distinct from both the “A” and “B” genomes, but more similar to “B” genome. The complete homology between A. monticola and A. hypogaea tetraploid taxa showed a very similar genome composition. The above analysis has provided greater insights into the phylogenetic relationship among accessions, genomes, sub species and sections. These InDel markers are very useful resource for groundnut research community for genetic analysis and breeding applications.
机译:小插入和缺失(InDels)是植物基因组中第二大最普遍和最丰富的结构变异。为了将这些遗传变异用于Arachis属的遗传分析,我们对栽培四倍体花生(Arachis hypogaea L.)的二倍体祖种即Arachis duranensis(A亚基因组)和Arachis ipa的基因组装配草案进行了比较分析。 lnsis(B亚基因组),鉴定出515,223个InDels。这些InDels包括在针对拟南芥的A. ipa?nsis中鉴定出的269,973个插入,而针对拟南芥的A. duranensis中的245,250个缺失。 InDel的大部分为单bp(43.7%)和2–10 bp(39.9%),其余为> 10 bp(16.4%)。使用86个基因分型数据(40.19%)的系统发育分析,主要根据其基因组亲和力将96个不同的花生品种分成八个簇。这项研究也为“ K”基因组的存在提供了证据,尽管它不同于“ A”和“ B”基因组,但更类似于“ B”基因组。芒草与次生四倍体类群之间的完全同源性显示出非常相似的基因组组成。以上分析为种质,基因组,亚种和部分之间的系统发育关系提供了更深刻的见解。这些InDel标记对于花生研究社区进行遗传分析和育种应用是非常有用的资源。

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