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首页> 外文期刊>BMC Genomics >Analysis of local genome rearrangement improves resolution of ancestral genomic maps in plants
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Analysis of local genome rearrangement improves resolution of ancestral genomic maps in plants

机译:局部基因组重新安排的分析改善了植物中祖先基因组图的分辨率

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Computationally inferred ancestral genomes play an important role in many areas of genome research. We present an improved workflow for the reconstruction from highly diverged genomes such as those of plants. Our work relies on an established workflow in the reconstruction of ancestral plants, but improves several steps of this process. Instead of using gene annotations for inferring the genome content of the ancestral sequence, we identify genomic markers through a process called genome segmentation. This enables us to reconstruct the ancestral genome from hundreds of thousands of markers rather than the tens of thousands of annotated genes. We also introduce the concept of local genome rearrangement, through which we refine syntenic blocks before they are used in the reconstruction of contiguous ancestral regions. With the enhanced workflow at hand, we reconstruct the ancestral genome of eudicots, a major sub-clade of flowering plants, using whole genome sequences of five modern plants. Our reconstructed genome is highly detailed, yet its layout agrees well with that reported in Badouin et al. (2017). Using local genome rearrangement, not only the marker-based, but also the gene-based reconstruction of the eudicot ancestor exhibited increased genome content, evidencing the power of this novel concept.
机译:在计算上推断的祖先基因组在基因组研究的许多领域起着重要作用。我们提出了改进的工作流程,用于重建从高度分散的基因组,例如植物的基因组。我们的工作依赖于祖先植物重建的建立工作流程,但提高了这一过程的几个步骤。不是使用基因注释来推断祖先序列的基因组含量,我们通过称为基因组分割的过程识别基因组标记物。这使我们能够从数十万个标记中重建祖先基因组,而不是数万个注释基因。我们还介绍了局部基因组重新排列的概念,通过该概念,通过它在邻近祖传地区的重建之前,我们在其上进行了优化的同期块。随着手工的增强工作流程,我们使用五种现代植物的全基因组序列重建苏比特的祖先的苏格拉特基因组。我们的重建基因组是高度详细的,但它的布局与Badouin等人报告说得很好。 (2017)。使用局部基因组重新排列,不仅基于标记的基于标记,而且避开了基于基于基于基于基于基于基于基于基于基于基于基于基于基于基于基于基于基于基于基于基于基于基于基于基于基于基于基于基于基因的祖先的重建,并且逐渐增加了基因组内容,证明了这种新颖的概念的力量。

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