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Global maximum-parsimony based ancestral reconstruction with non-universal genes

机译:基于全球最大限定的基于统治的祖先重建,非普遍基因

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Ancestral reconstruction can be useful in many facets of genetic analysis. It allows for a look into the (potential) past, and can provide a clearer idea of species divergance. Unfortunately, ancestral construction is not as easy with swiftly changing genomes as input. Confounding factors such as horizontal gene transfer and gene loss limit available information under current heuristics that mitigate the computational difficulty of finding an exact solution. Here, we address a specific limitation of these heursitics, namely the restriction that genes be present in all leaf genomes. We show that we can greatly improve the number of genes placed in an ancestral genome by accepting genes not universal to the whole data set but universal to a given subtree. We implement this approach by modifying the popular ancestral reconstruction program PATHGROUPS and test it on fruit fly and mosquito data with multiple available genomes.
机译:祖先的重建在许多遗传分析方面都可有用。它允许查看(潜在)过去,并可以提供更清晰的物种偏离的想法。不幸的是,祖先建设并不容易将基因组改变为输入。卧式基因转移和基因损失等混淆因素限制了当前启发式的可用信息,以减轻找到确切解决方案的计算难度。在这里,我们解决了对这些热源的特定限制,即基因存在于所有叶子基因组中的限制。我们表明我们可以通过接受非普遍数据集的基因来大大提高祖先基因组中放置的基因数量,而是通向给定的子树。我们通过修改流行的祖先重建计划路径组来实现这种方法,并在具有多种可用基因组的果蝇和蚊子数据上测试它。

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