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Meta-Alignment with Crumble and Prune: Partitioning very large alignment problems for performance and parallelization

机译:使用Crumble和Prune进行元对齐:对非常大的对齐问题进行分区以实现性能和并行化

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摘要

BackgroundContinuing research into the global multiple sequence alignment problem has resulted in more sophisticated and principled alignment methods. Unfortunately these new algorithms often require large amounts of time and memory to run, making it nearly impossible to run these algorithms on large datasets. As a solution, we present two general methods, Crumble and Prune, for breaking a phylogenetic alignment problem into smaller, more tractable sub-problems. We call Crumble and Prune meta-alignment methods because they use existing alignment algorithms and can be used with many current alignment programs. Crumble breaks long alignment problems into shorter sub-problems. Prune divides the phylogenetic tree into a collection of smaller trees to reduce the number of sequences in each alignment problem. These methods are orthogonal: they can be applied together to provide better scaling in terms of sequence length and in sequence depth. Both methods partition the problem such that many of the sub-problems can be solved independently. The results are then combined to form a solution to the full alignment problem.
机译:背景技术对全局多序列比对问题的持续研究导致了更加复杂和原则化的比对方法。不幸的是,这些新算法通常需要大量时间和内存才能运行,因此几乎不可能在大型数据集上运行这些算法。作为解决方案,我们提出了Crumble和Prune两种通用方法,用于将系统发育比对问题分解为更小,更易处理的子问题。我们将Crumble和Prune元对齐方法称为Crumble和Prune元对齐方法,因为它们使用现有的对齐算法,并且可以与许多当前的对齐程序一起使用。崩溃将长的对齐问题分解为更短的子问题。 Prune将系统发育树分为较小树的集合,以减少每个比对问题中的序列数量。这些方法是正交的:它们可以一起应用以在序列长度和序列深度方面提供更好的缩放比例。两种方法都对问题进行了划分,以便可以独立解决许多子问题。然后将结果合并以形成完全对准问题的解决方案。

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