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Discovery of Genome-Wide DNA Polymorphisms in a Landrace Cultivar of Japonica Rice by Whole-Genome Sequencing

机译:全基因组测序发现粳稻地方品种的全基因组DNA多态性

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Molecular breeding approaches are of growing importance to crop improvement. However, closely related cultivars generally used for crossing material lack sufficient known DNA polymorphisms due to their genetic relatedness. Next-generation sequencing allows the identification of a massive number of DNA polymorphisms such as single nucleotide polymorphisms (SNPs) and insertions–deletions (InDels) between highly homologous genomes. Using this technology, we performed whole-genome sequencing of a landrace of japonica rice, Omachi, which is used for sake brewing and is an important source for modern cultivars. A total of 229 million reads, each comprising 75 nucleotides of the Omachi genome, was generated with 45-fold coverage and uniquely mapped to 89.7% of the Nipponbare genome, a closely related cultivar. We identified 132,462 SNPs, 16,448 insertions and 19,318 deletions between the Omachi and Nipponbare genomes. An SNP array was designed to validate 731 selected SNPs, resulting in validation rates of 95 and 88% for the Omachi and Nipponbare genomes, respectively. Among the 577 SNPs validated in both genomes, 532 are entirely new SNP markers not previously reported between related rice cultivars. We also validated InDels on a part of chromosome 2 as DNA markers and successfully genotyped five japonica rice cultivars. Our results present the methodology and extensive data on SNPs and InDels available for whole-genome genotyping and marker-assisted breeding. The polymorphism information between Omachi and Nipponbare is available at NGRC_Rice_Omachi (http://www.nodai-genome.org/oryza_sativa_en.html).
机译:分子育种方法对作物改良的重要性日益增加。然而,由于它们的遗传相关性,通常用于杂交材料的密切相关的品种缺乏足够的已知DNA多态性。下一代测序可以鉴定大量DNA多态性,例如单核苷酸多态性(SNP)和高度同源基因组之间的插入缺失(InDels)。使用这项技术,我们对粳稻Omachi的地方品种进行了全基因组测序,该品种用于清酒酿造,是现代栽培品种的重要来源。总共产生了2.29亿条读数,每个读数包含Omachi基因组的75个核苷酸,覆盖率达到45倍,并独特地定位于Nipponbare基因组(一种密切相关的品种)的89.7%。我们确定了Omachi和Nipponbare基因组之间的132,462个SNP,16,448个插入和19,318个缺失。设计了一个SNP阵列以验证731个选定的SNP,导致Omachi和Nipponbare基因组的验证率分别为95%和88%。在两个基因组中验证的577个SNP中,有532个是全新的SNP标记,以前在相关水稻品种之间没有报道。我们还验证了2号染色体一部分上的InDels作为DNA标记,并成功地对5个粳稻品种进行了基因分型。我们的结果提供了可用于全基因组基因分型和标记辅助育种的SNP和InDel的方法论和广泛数据。 Omachi和Nipponbare之间的多态性信息可从NGRC_Rice_Omachi(http://www.nodai-genome.org/oryza_sativa_en.html)获得。

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