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Comparative transcriptomics uncovers alternative splicing and molecular marker development in radish (Raphanus sativus L.)

机译:比较转录组物在萝卜(Raphanus sativus L.)中揭示替代剪接和分子标记发育

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摘要

Abstract Background Alternative splicing (AS) plays important roles in gene expression and proteome diversity. Single nucleotide polymorphism (SNP) and insertion/deletion (InDel) are abundant polymorphisms and co-dominant inheritance markers, which have been widely used in germplasm identification, genetic mapping and marker-assisted selection in plants. So far, however, little information is available on utilization of AS events and development of SNP and InDel markers from transcriptome in radish. Results In this study, three radish transcriptome datasets were collected and aligned to the reference radish genome. A total of 56,530 AS events were identified from three radish genotypes with intron retention (IR) being the most frequent AS type, which accounted for 59.4% of the total expressed genes in radish. In all, 22,412 SNPs and 9436 InDels were identified with an average frequency of 1 SNP/17.9 kb and 1 InDel/42.5 kb, respectively. A total of 43,680 potential SSRs were identified in 31,604 assembled unigenes with a density of 1 SSR/2.5 kb. The ratio of SNPs with nonsynonymous/synonymous mutations was 1.05:1. Moreover, 35 SNPs and 200 InDels were randomly selected and validated by Sanger sequencing, 83.9% of the SNPs and 70% of the InDels exhibited polymorphism among these three genotypes. In addition, the 15 SNPs and 125 InDels were found to be unevenly distributed on 9 linkage groups. Furthermore, 40 informative InDel markers were successfully used for the genetic diversity analysis on 32 radish accessions. Conclusions These results would not only provide new insights into transcriptome complexity and AS regulation, but also furnish large amount of molecular marker resources for germplasm identification, genetic mapping and further genetic improvement of radish in breeding programs.
机译:摘要背景替代拼接(AS)在基因表达和蛋白质组多样性中起重要作用。单核苷酸多态性(SNP)和插入/缺失(INDEL)是丰富的多态性和共同遗传标志物,其已广泛用于种质鉴定,遗传测绘和植物中的标记辅助选择。然而,到目前为止,罗布什中从转录组的SNP和Indel标记的事件和开发的情况下提供了很少的信息。结果在该研究中,收集了三个萝卜转录组数据集并与参考萝卜基因组排列。从三种萝卜基因型中鉴定出事件的总共有56,530种,内含子保留(IR)是最常见的类型,其占萝卜中总表达基因的59.4%。在所有情况下,分别鉴定了22,412个SNP和9436吲哚,平均频率分别为1 snP / 17.9 kB和1 indel / 42.5kb。在31,604个组装的unigenes中鉴定了总共43,680个潜在的SSR,密度为1 ssr / 2.5 kb。 SNP与非纯/同义突变的比率为1.05:1。此外,35个SNP和200个诱导被随机选择并通过Sanger测序验证,83.9%的SNP和70%的诱导在这三种基因型中表现出多态性。此外,发现15个SNP和125个诱导诱导在9个连杆组上不均匀分布。此外,在32种萝卜牧草中成功地用于遗传多样性分析的40个信息。结论这些结果不仅为转录组复杂性和调节提供了新的见解,而且还提供了大量的种质鉴定,遗传测绘以及育种计划中萝卜的进一步遗传改善。

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