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Single-copy gene based 50 K SNP chip for genetic studies and molecular breeding in rice

机译:基于单拷贝基因的50 K SNP芯片用于水稻的遗传研究和分子育种

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摘要

Single nucleotide polymorphism (SNP) is the most abundant DNA sequence variation present in plant genomes. Here, we report the design and validation of a unique genic-SNP genotyping chip for genetic and evolutionary studies as well as molecular breeding applications in rice. The chip incorporates 50,051 SNPs from 18,980 different genes spanning 12 rice chromosomes, including 3,710 single-copy (SC) genes conserved between wheat and rice, 14,959 SC genes unique to rice, 194 agronomically important cloned rice genes and 117 multi-copy rice genes. Assays with this chip showed high success rate and reproducibility because of the SC gene based array with no sequence redundancy and cross-hybridisation problems. The usefulness of the chip in genetic diversity and phylogenetic studies of cultivated and wild rice germplasm was demonstrated. Furthermore, its efficacy was validated for analysing background recovery in improved mega rice varieties with submergence tolerance developed through marker-assisted backcross breeding.
机译:单核苷酸多态性(SNP)是植物基因组中存在的最丰富的DNA序列变异。在这里,我们报告了一种独特的基因SNP基因分型芯片的设计和验证,该芯片用于遗传和进化研究以及水稻的分子育种应用。该芯片整合了来自18,980个不同基因的500,051个SNP,这些基因跨越12个水稻染色体,包括在小麦和水稻之间保守的3,710个单拷贝(SC)基因,水稻特有的14,959个SC基因,194个在农业上重要的克隆水稻基因和117个多拷贝水稻基因。由于基于SC基因的阵列没有序列冗余和交叉杂交问题,因此使用该芯片的分析显示出很高的成功率和可重复性。证明了该芯片在栽培稻和野生稻种质遗传多样性和系统发育研究中的有用性。此外,其功效已通过分析通过标记辅助回交育种开发的具有淹没耐受性的改良大米品种的背景回收率而得到验证。

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