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Reconstruction of ancestral gene order after segmental duplication and gene loss

机译:节段复制和基因丢失后祖先基因顺序的重建

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As gene order evolves through a variety of chromosomal rearrangements, conserved segments provide important insight into evolutionary relationships and functional roles of genes. However, gene loss within otherwise conserved segments, as typically occurs following large-scale genome duplication, has received limited algorithmic study. This has been a major impediment to comparative genomics in certain taxa, such as plants and fish. We propose a heuristic algorithm/or the inference of ancestral gene order in a set of related genomes that have undergone large-scale duplication and gene loss. First, approximately conserved (i.e. homologous) segments are identified using pairwise local genome alignment. Second, homologous segments are iteratively clustered under the control of two parameters, (1) the minimal required number of shared genes between two clusters and (2) the maximal allowed number of rearrangement breakpoints along the lineage leading to each descendant segment. Finally, we compute an estimated ancestral gene order for each cluster that is optimal in some sense. We evaluate the performance of this algorithm on simulated data that models a genome evolving by large-scale duplication, duplicate gene loss, transposition, translocation, and inversion. The results suggest that long segments of ancestral gene order may be reconstructed following moderate levels of rearrangement with only minor loss of accuracy.
机译:随着基因顺序通过各种染色体重排进化,保守的片段为深入了解基因的进化关系和功能角色提供了重要信息。然而,在其他保守区段内的基因丢失,如通常在大规模基因组复制后发生的,已经受到有限的算法研究。这已成为某些分类单元(例如植物和鱼类)中比较基因组学的主要障碍。我们提出了一种启发式算法/或在经历了大规模复制和基因丢失的一组相关基因组中推断祖先基因顺序。首先,使用成对的局部基因组比对来鉴定大约保守的(即同源的)区段。其次,在两个参数的控制下,同源片段被迭代地聚类,(1)两个聚类之间共享基因的最小所需数量,以及(2)沿着每个后代片段的谱系的最大允许重排断裂点数量。最后,我们为每个聚类计算一个估计的祖先基因顺序,从某种意义上说它是最佳的。我们在模拟数据上评估该算法的性能,该数据模拟了由大规模重复,重复基因丢失,转座,易位和倒置演变而成的基因组。结果表明,在中等水平的重排之后,可以重建祖先基因顺序的长片段,而准确性仅有很小的损失。

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