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二叉树-后代系统发生网络的生成。

Generation of Binary Tree-Child phylogenetic networks.

机构信息

Department of Mathematics and Computer Science, University of the Balearic Islands, Ctra. de Valldemossa Ctra. de Valldemossa km. 7.5. 07122 - Palma, Spain.

Institut des Sciences de l'Evolution (ISE-M), Université de Montpellier, CNRS, IRD, EPHE, 34095 Montpellier Cedex 5, France.

出版信息

PLoS Comput Biol. 2019 Sep 11;15(9):e1007347. doi: 10.1371/journal.pcbi.1007347. eCollection 2019 Sep.

Abstract

Phylogenetic networks generalize phylogenetic trees by allowing the modelization of events of reticulate evolution. Among the different kinds of phylogenetic networks that have been proposed in the literature, the subclass of binary tree-child networks is one of the most studied ones. However, very little is known about the combinatorial structure of these networks. In this paper we address the problem of generating all possible binary tree-child (BTC) networks with a given number of leaves in an efficient way via reduction/augmentation operations that extend and generalize analogous operations for phylogenetic trees, and are biologically relevant. Since our solution is recursive, this also provides us with a recurrence relation giving an upper bound on the number of such networks. We also show how the operations introduced in this paper can be employed to extend the evolutive history of a set of sequences, represented by a BTC network, to include a new sequence. An implementation in python of the algorithms described in this paper, along with some computational experiments, can be downloaded from https://github.com/bielcardona/TCGenerators.

摘要

系统发育网络通过允许对网状进化事件进行建模,从而对系统发育树进行了泛化。在文献中提出的不同类型的系统发育网络中,二叉树-后代网络子类是研究最多的网络之一。然而,对于这些网络的组合结构知之甚少。在本文中,我们通过扩展和泛化类似于系统发育树的、具有生物学相关性的缩减/扩充操作,有效地解决了生成给定叶子数的所有可能的二叉树-后代(BTC)网络的问题。由于我们的解决方案是递归的,这也为我们提供了一个递归关系,给出了此类网络数量的上界。我们还展示了如何在本文中引入的操作来扩展由 BTC 网络表示的一组序列的进化历史,以包括新的序列。本文中描述的算法的 Python 实现以及一些计算实验可以从 https://github.com/bielcardona/TCGenerators 下载。

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