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Construction of Reference Chromosome-Scale Pseudomolecules for Potato: Integrating the Potato Genome with Genetic and Physical Maps

机译:马铃薯参考染色体规模假性分子的构建:将马铃薯基因组与遗传和物理图谱整合

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摘要

The genome of potato, a major global food crop, was recently sequenced. The work presented here details the integration of the potato reference genome (DM) with a new sequence-tagged site marker−based linkage map and other physical and genetic maps of potato and the closely related species tomato. Primary anchoring of the DM genome assembly was accomplished by the use of a diploid segregating population, which was genotyped with several types of molecular genetic markers to construct a new ~936 cM linkage map comprising 2469 marker loci. In silico anchoring approaches used genetic and physical maps from the diploid potato genotype RH89-039-16 (RH) and tomato. This combined approach has allowed 951 superscaffolds to be ordered into pseudomolecules corresponding to the 12 potato chromosomes. These pseudomolecules represent 674 Mb (~93%) of the 723 Mb genome assembly and 37,482 (~96%) of the 39,031 predicted genes. The superscaffold order and orientation within the pseudomolecules are closely collinear with independently constructed high density linkage maps. Comparisons between marker distribution and physical location reveal regions of greater and lesser recombination, as well as regions exhibiting significant segregation distortion. The work presented here has led to a greatly improved ordering of the potato reference genome superscaffolds into chromosomal “pseudomolecules”.
机译:最近对全球主要粮食作物马铃薯的基因组进行了测序。此处介绍的工作详细介绍了马铃薯参考基因组(DM)与基于新序列标记位点标记的连锁图以及马铃薯和紧密相关物种番茄的其他物理和遗传图谱的整合。 DM基因组装配的主要锚定是通过使用二倍体分离群体来完成的,该群体用几种类型的分子遗传标记进行基因分型,以构建包含2469个标记基因座的新〜936 cM连锁图。在计算机锚固方法中,使用了来自二倍体马铃薯基因型RH89-039-16(RH)和番茄的遗传和物理图谱。这种组合的方法已允许将951个超级支架排序为对应于12个马铃薯染色体的假分子。这些假分子代表723 Mb基因组装配中的674 Mb(〜93%)和39,031个预测基因中的37,482(〜96%)。假分子内的超支架顺序和取向与独立构建的高密度连锁图紧密共线。标记物分布与物理位置之间的比较揭示了重组程度更高和更低的区域,以及表现出明显偏析的区域。此处介绍的工作已极大地改善了马铃薯参考基因组超级支架向染色体“假分子”的排序。

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