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Analysis of a Complex Polyploid Plant Genome using Molecular Markers: Strong Evidence for Segmental Allooctoploidy in Garden Dahlias

机译:使用分子标记分析复杂的多倍体植物基因组:在花园大丽花节段异源异倍体的有力证据。

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In some plant genera that contain species with complex genomes, the level and type of ploidy are still unknown due to a lack of characterized reference species and contradictory results from genetic and cytogenetic studies. Herein, we present the analysis of the genome of garden dahlias using molecular markers; this species is one for which the genome ploidy has remained controversial. We generated simple-sequence repeat (SSR) and amplified fragment length polymorphism (AFLP) data from two segregating populations of garden dahlias. The combined analysis of SSR marker segregation, the ratio of single-dose to multidose markers, the ratio of markers linked in coupling and repulsion, and map construction revealed a predominantly autooctoploid genome with a low degree of preferential pairing. This finding indicates that dahlias are segmental allooctoploids that originated from autotetraploid ancestral genomes. Our results demonstrate that marker analysis is a suitable method for ploidy analysis in nonmodel crops. Novel marker techniques, such as restriction site associated DNA, will make this analysis even more effective before whole genome sequencing can be realized for these crops.
机译:在一些含有复杂基因组物种的植物属中,由于缺乏特征性参考物种以及遗传和细胞遗传学研究的矛盾结果,倍性的水平和类型仍然未知。在这里,我们介绍了使用分子标记分析花园大丽花的基因组。该物种的基因组倍性仍然存在争议。我们从花园大丽花的两个隔离种群中生成了简单序列重复(SSR)和扩增片段长度多态性(AFLP)数据。 SSR标记分离,单剂量与多剂量标记之比,偶联和排斥相联系的标记之比以及图谱构建的综合分析显示,主要的同源八倍体基因组具有较低的优先配对程度。该发现表明,大丽花是源自同四倍体祖先基因组的节段异源异倍体。我们的结果表明,标记分析是非模型作物中倍性分析的合适方法。新颖的标记技术,例如与限制性酶切位点相关的DNA,将使这种分析更加有效,然后才能为这些农作物实现全基因组测序。

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