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Mapping ancestral genomes with massive gene loss: A matrix sandwich problem

机译:绘制具有大量基因缺失的祖先基因组图:矩阵三明治问题

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Motivation: Ancestral genomes provide a better way to understand the structural evolution of genomes than the simple comparison of extant genomes. Most ancestral genome reconstruction methods rely on universal markers, that is, homologous families of DNA segments present in exactly one exemplar in every considered species. Complex histories of genes or other markers, undergoing duplications and losses, are rarely taken into account. It follows that some ancestors are inaccessible by these methods, such as the proto-monocotyledon whose evolution involved massive gene loss following a whole genome duplication.Results: We propose a mapping approach based on the combinatorial notion of 'sandwich consecutive ones matrix', which explicitly takes gene losses into account. We introduce combinatorial optimization problems related to this concept, and propose a heuristic solver and a lower bound on the optimal solution. We use these results to propose a configuration for the proto-chromosomes of the monocot ancestor, and study the accuracy of this configuration. We also use our method to reconstruct the ancestral boreoeutherian genomes, which illustrates that the framework we propose is not specific to plant paleogenomics but is adapted to reconstruct any ancestral genome from extant genomes with heterogeneous marker content.
机译:动机:祖先的基因组比简单的现存基因组比较提供了一种更好的理解基因组结构演变的方法。大多数祖先的基因组重建方法都依赖于通用标记,也就是说,每个被考虑物种中的一个典型样本中都存在DNA片段的同源家族。很少考虑基因的复杂历史或其他标记的重复和丢失。因此,某些祖先无法通过这些方法访问,例如原单子叶植物,其进化涉及整个基因组重复后大量基因的丢失。明确考虑基因损失。我们介绍与此概念相关的组合优化问题,并提出启发式求解器和最优解的下界。我们使用这些结果为单子叶植物祖先的原染色体提出构型,并研究这种构型的准确性。我们还使用了我们的方法来重建祖先北北美洲的基因组,这说明了我们提出的框架并非特定于植物古基因组学,而是适合于从具有异质标记内容的现有基因组中重建任何祖先的基因组。

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