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Development of genic KASP SNP markers from RNA-Seq data for map-based cloning and marker-assisted selection in maize

机译:从RNA-SEQ数据进行基因kasp SNP标记的研制基于地图的克隆和玉米标记辅助选择

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Maize is one of the most important field crops in the world. Most of the key agronomic traits, including yield traits and plant architecture traits, are quantitative. Fine mapping of genes/ quantitative trait loci (QTL) influencing a key trait is essential for marker-assisted selection (MAS) in maize breeding. However, the SNP markers with high density and high polymorphism are lacking, especially kompetitive allele specific PCR (KASP) SNP markers that can be used for automatic genotyping. To date, a large volume of sequencing data has been produced by the next generation sequencing technology, which provides a good pool of SNP loci for development of SNP markers. In this study, we carried out a multi-step screening method to identify kompetitive allele specific PCR (KASP) SNP markers based on the RNA-Seq data sets of 368 maize inbred lines. A total of 2,948,985 SNPs were identified in the high-throughput RNA-Seq data sets with the average density of 1.4 SNP/kb. Of these, 71,311 KASP SNP markers (the average density of 34 KASP SNP/Mb) were developed based on the strict criteria: unique genomic region, bi-allelic, polymorphism information content (PIC) value ≥0.4, and conserved primer sequences, and were mapped on 16,161 genes. These 16,161 genes were annotated to 52 gene ontology (GO) terms, including most of primary and secondary metabolic pathways. Subsequently, the 50 KASP SNP markers with the PIC values ranging from 0.14 to 0.5 in 368 RNA-Seq data sets and with polymorphism between the maize inbred lines 1212 and B73 in in silico analysis were selected to experimentally validate the accuracy and polymorphism of SNPs, resulted in 46 SNPs (92.00%) showed polymorphism between the maize inbred lines 1212 and B73. Moreover, these 46 polymorphic SNPs were utilized to genotype the other 20 maize inbred lines, with all 46 SNPs showing polymorphism in the 20 maize inbred lines, and the PIC value of each SNP was 0.11 to 0.50 with an average of 0.35. The results suggested that the KASP SNP markers developed in this study were accurate and polymorphic. These high-density polymorphic KASP SNP markers will be a valuable resource for map-based cloning of QTL/genes and marker-assisted selection in maize. Furthermore, the method used to develop SNP markers in maize can also be applied in other species.
机译:玉米是世界上最重要的田野作物之一。大多数关键的农艺性状,包括产量性状和工厂架构特征都是定量的。影响关键特征的基因/定量性状基因座(QTL)的精细映射对于玉米育种中的标记辅助选择(MAS)至关重要。然而,具有高密度和高多态性的SNP标记缺乏,尤其是可用于自动基因分型的支持性等位基因特异性PCR(KASP)SNP标记。迄今为止,下一代测序技术已经产生了大量的测序数据,该技术为SNP标记的开发提供了良好的SNP基因座。在该研究中,我们进行了一种多步筛选方法,以鉴定基于368型玉米近交系的RNA-SEQ数据组的基准等位基因特异性PCR(KASP)SNP标记。在高通量RNA-SEQ数据集中鉴定了2,948,985个SNP,平均密度为1.4 SNP / KB。其中,71,311 kasp SNP标记(34 kAsp SNP / MB的平均密度)是基于严格的标准:独特的基因组区域,双位等位基因,多态性信息含量(PIC)值≥0.4和保守的引物序列映射到16,161个基因。将这些16,161个基因注释为52个基因本体论(GO)术语,包括大多数初级和次级代谢途径。随后,选择具有从368 RNA-SEQ数据集0.14至0.5的PIC值的50 kasp SNP标记,并且在玉米分析中玉米自交线1212和B73之间具有多态性,以实验验证SNP的准确性和多态性,导致46个SNP(92.00%)在玉米自交系1212和B73之间显示多态性。此外,这些46个多晶型SNP用于基因型其他20玉米自交系,所有46个SNP,显示在20氧化近红细中的多态性,并且每个SNP的PIC值为0.11至0.50,平均为0.35。结果表明本研究中开发的kasp SNP标记是准确的和多态的。这些高密度多晶型Kasp SNP标记将是基于地图的QTL /基因克隆和玉米标记辅助选择的宝贵资源。此外,用于在玉米中开发SNP标记的方法也可以在其他物种中应用。

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