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Detection, Validation, and Application of Genotyping-by-Sequencing Based Single Nucleotide Polymorphisms in Upland Cotton

机译:基于测序的基因型分型在陆地棉中的检测,验证和应用

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The presence of two closely related subgenomes in the allotetraploid Upland cotton, combined with a narrow genetic base of the cultivated varieties, has hindered the identification of polymorphic genetic markers and their use in improving this important crop. Genotyping-by-sequencing (GBS) is a rapid way to identify single nucleotide polymorphism (SNP) markers; however, these SNPs may be specific to the sequenced cotton lines. Our objective was to obtain a large set of polymorphic SNPs with broad applicability to the cultivated cotton germplasm. We selected 11 diverse cultivars and their random-mated recombinant inbred progeny for SNP marker development via GBS. Two different GBS methodologies were used by Data2Bio (D2B) and the Institute for Genome Diversity (IGD) to identify 4441 and 1176 polymorphic SNPs with minor allele frequency of ≥0.1, respectively. We further filtered the SNPs and aligned their sequences to the diploid Gossypium raimondii reference genome. We were able to use homeologous SNPs to assign 1071 SNP loci to the At subgenome and 1223 to the Dt subgenome. These filtered SNPs were located in genic regions about twice as frequently as expected by chance. We tested 111 of the SNPs in 154 diverse Upland cotton lines, which confirmed the utility of the SNP markers developed in such approach. Not only were the SNPs identified in the 11 cultivars present in the 154 cotton lines, no two cultivars had identical SNP genotypes. We conclude that GBS can be easily used to discover SNPs in Upland cotton, which can be converted to functional genotypic assays for use in breeding and genetic studies.
机译:异源四倍体陆地棉中存在两个密切相关的亚基因组,再加上栽培品种的狭窄遗传基础,阻碍了多态遗传标记的鉴定及其在改良这一重要作物中的用途。测序基因分型(GBS)是鉴定单核苷酸多态性(SNP)标记的快速方法。但是,这些SNP可能对测序的棉花品系具有特异性。我们的目标是获得大量的多态性SNP,广泛适用于栽培棉种质。我们选择了11个不同的品种及其随机交配的重组近交后代,用于通过GBS开发SNP标记。 Data2Bio(D2B)和基因组多样性研究所(IGD)使用两种不同的GBS方法来分别鉴定4441和1176个多态性SNP,其次要等位基因频率≥0.1。我们进一步过滤了SNP,并将其序列与二倍体雷蒙氏棉参考基因组进行比对。我们能够使用同源SNP将At亚基因组分配1071个SNP位点,将Dt亚基因组分配1223个SNP位点。这些经过过滤的SNP位于基因区的频率大约是偶然预期的两倍。我们在154种不同的陆地棉品种中测试了111个SNP,证实了以这种方法开发的SNP标记的实用性。不仅在154个棉系的11个品种中鉴定出SNP,而且没有两个品种具有相同的SNP基因型。我们得出的结论是,GBS可以很容易地用于发现陆地棉上的SNP,可以将其转换为功能型基因型分析,用于育种和遗传研究。

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