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Genome-wide generation and use of informative intron-spanning and intron-length polymorphism markers for high-throughput genetic analysis in rice

机译:全基因组的产生和信息性内含子跨度和内含子长度多态性标记物在水稻高通量遗传分析中的应用

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摘要

We developed genome-wide 84634 ISM (intron-spanning marker) and 16510 InDel-fragment length polymorphism-based ILP (intron-length polymorphism) markers from genes physically mapped on 12 rice chromosomes. These genic markers revealed much higher amplification-efficiency (80%) and polymorphic-potential (66%) among rice accessions even by a cost-effective agarose gel-based assay. A wider level of functional molecular diversity (17–79%) and well-defined precise admixed genetic structure was assayed by 3052 genome-wide markers in a structured population of indica, japonica, aromatic and wild rice. Six major grain weight QTLs (11.9–21.6% phenotypic variation explained) were mapped on five rice chromosomes of a high-density (inter-marker distance: 0.98 cM) genetic linkage map (IR 64 x Sonasal) anchored with 2785 known/candidate gene-derived ISM and ILP markers. The designing of multiple ISM and ILP markers (2 to 4 markers/gene) in an individual gene will broaden the user-preference to select suitable primer combination for efficient assaying of functional allelic variation/diversity and realistic estimation of differential gene expression profiles among rice accessions. The genomic information generated in our study is made publicly accessible through a user-friendly web-resource, “Oryza ISM-ILP marker” database. The known/candidate gene-derived ISM and ILP markers can be enormously deployed to identify functionally relevant trait-associated molecular tags by optimal-resource expenses, leading towards genomics-assisted crop improvement in rice.
机译:我们从12个水稻染色体上的物理图谱上开发了全基因组的84634 ISM(内含子跨度标记)和16510 InDel片段长度多态性为基础的ILP(内含子长度多态性)标记。这些基因标记即使在基于成本的琼脂糖凝胶分析中也显示出更高的扩增效率(80%)和多态性电位(66%)。通过3052个全基因组标记在a稻,粳稻,芳香稻和and稻的结构化群体中测定了更广泛的功能分子多样性(17-79%)和明确定义的精确混合遗传结构。在高密度(标记间距离:0.98 cM)遗传连锁图谱(IR 64 x Sonasal)的五个水稻染色体上定位了六个主要粒重QTL(表型变异为11.9–21.6%,已解释),固定有2785个已知/候选基因来源的ISM和ILP标记。在单个基因中设计多个ISM和ILP标记(每个基因2至4个标记)将扩大用户的选择范围,以选择合适的引物组合,以有效测定水稻中的功能等位基因变异/多样性和实际估算差异基因表达谱加入。我们研究中产生的基因组信息可通过用户友好的网络资源“ Oryza ISM-ILP标记”数据库公开获得。已知/候选基因衍生的ISM和ILP标记可以通过最佳资源支出得到广泛应用,以鉴定功能相关的性状相关分子标签,从而导致水稻的基因组学辅助作物改良。

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