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Discovery of Functional SNPs via Genome-Wide Exploration of Malaysian Pigmented Rice Varieties

机译:通过基因组探索马来西亚着色稻米品种发现功能性SNP

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Recently, rice breeding program has shown increased interests on the pigmented rice varieties due to their benefits to human health. However, the genetic variation of pigmented rice varieties is still scarce and remains unexplored. Hence, we performed genome-wide SNP analysis from the genome resequencing of four Malaysian pigmented rice varieties, representing two black and two red rice varieties. The genome of four pigmented varieties was mapped against Nipponbare reference genome sequences, and 1.9 million SNPs were discovered. Of these, 622 SNPs with polymorphic sites were identified in 258 protein-coding genes related to metabolism, stress response, and transporter. Comparative analysis of 622 SNPs with polymorphic sites against six rice SNP datasets from the Ensembl Plants variation database was performed, and 70 SNPs were identified as novel SNPs. Analysis of SNPs in the flavonoid biosynthetic genes revealed 40 nonsynonymous SNPs, which has potential as molecular markers for rice seed colour identification. The highlighted SNPs in this study show effort in producing valuable genomic resources for application in the rice breeding program, towards the genetic improvement of new and improved pigmented rice varieties.
机译:最近,由于对人体健康的益处,水稻繁殖计划表明了着色的水稻品种的兴趣。然而,着色水稻品种的遗传变异仍然稀缺,并且仍然是未探索的。因此,我们从四种马来西亚着色水稻品种的基因组重量进行了基因组SNP分析,代表了两种黑色和两种红米品种。四种着色品种的基因组映射到Nipponbare参考基因组序列,发现了190万SNP。其中,在与代谢,应激反应和运输扣相关的258个蛋白质编码基因中鉴定了622个具有多态位点的SNP。对622个SNP的比较分析来自对六个水稻SNP数据集的多态位点,进行了来自集团植物变异数据库,并将70个SNP被鉴定为新型SNP。黄酮类化生物合成基因中SNP分析显示40个非型SNP,其作为水稻种子颜色鉴定的分子标志物。本研究中的突出显示的SNP展示了在水稻育种计划中施加有价值的基因组资源,旨在促进新的和改善着色的着色水稻品种的遗传改善。

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