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首页> 外文期刊>Journal of computational biology: A journal of computational molecular cell biology >A New Quartet-Based Statistical Method for Comparing Sets of Gene Trees Is Developed Using a Generalized Hoeffding Inequality
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A New Quartet-Based Statistical Method for Comparing Sets of Gene Trees Is Developed Using a Generalized Hoeffding Inequality

机译:使用广义的Hoeffding不平等开发了一种用于比较基因树集合的新的基于四重奏的统计方法

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摘要

Extracting the strength of the tree signal that is encompassed by a collection of gene trees is an exceptionally challenging problem in phylogenomics. Often, this problem not only involves the construction of individual phylogenies based on different genes, which may be a difficult endeavor on its own, but is also exacerbated by many factors that create conflicts between the evolutionary histories of different gene families, such as duplications or losses of genes; hybridization events; incomplete lineage sorting; and horizontal gene transfer, the latter two play central roles in the evolution of eukaryotes and prokaryotes, respectively. In this work, we tackle the aforementioned problem by focusing on quartet trees, which are the most basic unit of information in the context of unrooted phylogenies. In the first part, we show how a theorem of Janson that generalizes the classical Hoeffding inequality can be used to develop a statistical test involving quartets. In the second part, we study real and simulated data using this theoretical advancement, thus demonstrating how the significance of the differences between sets of quartets can be assessed. Our results are particularly intriguing since they nonstandardly require the analysis of dependent random variables.
机译:提取由基因树集合包含的树信号的强度是语言核糖中的一种异常挑战性问题。通常,这个问题不仅涉及基于不同基因的个体系统发育的构建,这可能是一个难以自己的努力,而且也加剧了许多因素,这些因素产生了不同基因家族的进化历史(例如重复或重复)之间的冲突。基因的损失;杂交事件;不完全的谱系分类;和水平基因转移,后两者分别在真核生物和原核生物的演变中起中心作用。在这项工作中,我们通过专注于四重奏树来解决上述问题,这是在未引发的文学发生的背景下最基本的信息单位。在第一部分中,我们展示了詹森的定理,概括了经典的Hoeffding不平等,可以使用涉及四重奏的统计测试。在第二部分中,我们使用这种理论前进研究实际和模拟数据,从而证明了如何评估四重四套之间差异的重要性。我们的结果特别有趣,因为它们不标准需要对依赖随机变量的分析。

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