首页> 外文期刊>Scientific reports. >Genome-wide SNP identification in Prunus rootstocks germplasm collections using Genotyping-by-Sequencing: phylogenetic analysis, distribution of SNPs and prediction of their effect on gene function
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Genome-wide SNP identification in Prunus rootstocks germplasm collections using Genotyping-by-Sequencing: phylogenetic analysis, distribution of SNPs and prediction of their effect on gene function

机译:基因组型SNP鉴定在丁根砧座种质收集中使用基因分型逐序列:系统发育分析,SNP分布和对基因功能的影响预测

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Genotyping-by-Sequencing (GBS) was applied in a set of 53 diploid Prunus rootstocks and five scion cultivars from three subgenera (Amygdalus, Prunus and Cerasus) for genome-wide SNP identification and to assess genetic diversity of both Chilean and Spanish germplasm collections. A group of 45,382 high quality SNPs (MAF 0.05; missing data 5%) were selected for analysis of this group of 58 accessions. These SNPs were distributed in genic and intergenic regions in the eight pseudomolecules of the peach genome (Peach v2.0), with an average of 53% located in exonic regions. The genetic diversity detected among the studied accessions divided them in three groups, which are in agreement with their current taxonomic classification. SNPs were classified based on their putative effect on annotated genes and KOG analysis was carried out to provide a deeper understanding of the function of 119 genes affected by high-impact SNPs. Results demonstrate the high utility for Prunus rootstocks identification and studies of diversity in Prunus species. Also, given the high number of SNPs identified in exonic regions, this strategy represents an important tool for finding candidate genes underlying traits of interest and potential functional markers for use in marker-assisted selection.
机译:基因分型逐序列(GBS)在一组53个二倍体植物砧座和五个中隙品种中,来自三个亚因子(Amygdalus,Prunus和Cerasus)的基因组SNP鉴定,并评估智利和西班牙种质收集的遗传多样性。选择了45,382个高质量的SNP(MAF> 0.05;缺失数据<5%)进行分析,分析该组58种。这些SNP分布在桃基因组(桃v2.0)的八个假调子中的基因尼和基因区域中分布,平均位于偏振区域中的53%。研究中检测到的遗传多样性在三组中分为三组,这与他们目前的分类分类分类一致。 SNP根据其对注释基因的推定效应进行分类,并进行Kog分析,以便对受高影响SNP影响的119个基因的功能更深入了解。结果证明了驯叶植物鉴定的高效用和蛋白质物种的多样性研究。此外,考虑到在外源区域中鉴定的大量SNP,该策略代表了用于查找候选基因的重要工具,用于查找有趣的特征和用于标记辅助选择的潜在功能标志物。

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