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Genome Microscale Heterogeneity among Wild Potatoes Revealed by Diversity Arrays Technology Marker Sequences

机译:多样性阵列技术标记序列揭示的野生马铃薯基因组微尺度异质性

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摘要

Tuber-bearing potato species possess several genes that can be exploited to improve the genetic background of the cultivated potato Solanum tuberosum. Among them, S. bulbocastanum and S. commersonii are well known for their strong resistance to environmental stresses. However, scant information is available for these species in terms of genome organization, gene function, and regulatory networks. Consequently, genomic tools to assist breeding are meager, and efficient exploitation of these species has been limited so far. In this paper, we employed the reference genome sequences from cultivated potato and tomato and a collection of sequences of 1,423 potato Diversity Arrays Technology (DArT) markers that show polymorphic representation across the genomes of S. bulbocastanum and/or S. commersonii genotypes. Our results highlighted microscale genome sequence heterogeneity that may play a significant role in functional and structural divergence between related species. Our analytical approach provides knowledge of genome structural and sequence variability that could not be detected by transcriptome and proteome approaches.
机译:带有块茎的马铃薯物种具有几个基因,可以利用这些基因来改善栽培马铃薯马铃薯的遗传背景。其中,鳞茎链球菌和沙门氏菌以对环境压力的强抵抗力而闻名。但是,就基因组组织,基因功能和调控网络而言,这些物种的信息很少。因此,辅助育种的基因组工具很少,迄今为止,对这些物种的有效利用受到限制。在本文中,我们采用了来自栽培马铃薯和番茄的参考基因组序列,以及一组1,423个马铃薯多样性阵列技术(DArT)标记序列的集合,这些标记在整个S. bulbocastanum和/或S. commersonii基因型中均表现出多态性。我们的结果强调了微型基因组序列异质性可能在相关物种之间的功能和结构差异中发挥重要作用。我们的分析方法提供了转录组和蛋白质组方法无法检测到的基因组结构和序列变异性知识。

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