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相关论文: Counting Phylogenetic Networks with Few Reticulati…

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In previous work, we gave asymptotic counting results for the number of tree-child and normal networks with $k$ reticulation vertices and explicit exponential generating functions of the counting sequences for $k=1,2,3$. The purpose of this…

组合数学 · 数学 2021-03-05 Michael Fuchs , Bernhard Gittenberger , Marefatollah Mansouri

We provide precise asymptotic estimates for the number of general phylogenetic networks by using analytic combinatorial methods. Recently, this approach is studied by Fuchs, Gittenberger, and the author himself (Australasian Journal of…

组合数学 · 数学 2020-06-01 Marefatollah Mansouri

Tree-child networks, one of the prominent network classes in phylogenetics, have been introduced for the purpose of modeling reticulate evolution. Recently, the first author together with Gittenberger and Mansouri (2019) showed that the…

组合数学 · 数学 2022-03-22 Michael Fuchs , En-Yu Huang , Guan-Ru Yu

Phylogenetic networks provide a general framework for modeling reticulate evolutionary processes such as hybridization, recombination, and horizontal gene transfer. In this paper, we study the asymptotic counting of binary phylogenetic…

种群与进化 · 定量生物学 2026-05-25 Hao Yu , Louxin Zhang

Phylogenetic network is an evolutionary model that uses a rooted directed acyclic graph (instead of a tree) to model an evolutionary history of species in which reticulate events (e.g., hybrid speciation or horizontal gene transfer)…

种群与进化 · 定量生物学 2023-12-01 Yufeng Wu , Louxin Zhang

We give exact and asymptotic counting results for the number of galled networks and reticulation-visible networks with few reticulation vertices. Our results are obtained with the component graph method, which was introduced by L. Zhang and…

组合数学 · 数学 2024-04-22 Yu-Sheng Chang , Michael Fuchs

Galled trees are studied as a recombination model in population genetics. This class of phylogenetic networks is generalized into tree-child, galled and reticulation-visible network classes by relaxing a structural condition imposed on…

种群与进化 · 定量生物学 2020-02-28 Gabriel Cardona , Louxin Zhang

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…

数据结构与算法 · 计算机科学 2020-07-01 Gabriel Cardona , Joan Carles Pons , Celine Scornavacca

Phylogenetic networks provide a more general description of evolutionary relationships than rooted phylogenetic trees. One way to produce a phylogenetic network is to randomly place $k$ arcs between the edges of a rooted binary phylogenetic…

种群与进化 · 定量生物学 2025-03-19 Michael Fuchs , Mike Steel , Qiang Zhang

Galled trees are studied as a recombination model in theoretic population genetics. This class of phylogenetic networks has been generalized to tree-child networks, normal networks and tree-based networks by relaxing a structural condition.…

种群与进化 · 定量生物学 2019-08-05 Louxin Zhang

In phylogenetics, tree-based networks are used to model and visualize the evolutionary history of species where reticulate events such as horizontal gene transfer have occurred. Formally, a tree-based network $N$ consists of a phylogenetic…

离散数学 · 计算机科学 2020-08-21 Jonathan Klawitter , Peter Stumpf

Rooted phylogenetic networks provide a way to describe species' relationships when evolution departs from the simple model of a tree. However, networks inferred from genomic data can be highly tangled, making it difficult to discern the…

种群与进化 · 定量生物学 2021-05-31 Andrew Francis , Daniel H. Huson , Mike Steel

One strategy for reconstruction of phylogenetic networks is to solve the phylogenetic network problem, which involves inferring phylogenetic trees first and subsequently computing the smallest phylogenetic network that displays all the…

组合数学 · 数学 2023-09-26 Laurent Bulteau , Louxin Zhang

Phylogenetic networks generalize phylogenetic trees, and have been introduced in order to describe evolution in the case of transfer of genetic material between coexisting species. There are many classes of phylogenetic networks, which can…

组合数学 · 数学 2020-03-13 Mathilde Bouvel , Philippe Gambette , Marefatollah Mansouri

Phylogenetic networks are a type of leaf-labelled, acyclic, directed graph used by biologists to represent the evolutionary history of species whose past includes reticulation events. A phylogenetic network is tree-child if each non-leaf…

组合数学 · 数学 2017-11-27 Magnus Bordewich , Katharina T Huber , Vincent Moulton , Charles Semple

Phylogenetic networks are an extension of phylogenetic trees that allow for the representation of reticulate evolution events. One of the classes of networks that has gained the attention of the scientific community over the last years is…

种群与进化 · 定量生物学 2023-08-01 Gabriel Cardona , Gerard Ribas , Joan Carles Pons

Rooted phylogenetic networks are rooted acyclic digraphs. They are used to model complex evolution where hybridization, recombination and other reticulation events play important roles. A rigorous definition of network compression is…

数据结构与算法 · 计算机科学 2019-03-05 Andreas D. M. Gunawan , Hongwei Yan , Louxin Zhang

The reconstruction of phylogenetic networks is an important but challenging problem in phylogenetics and genome evolution, as the space of phylogenetic networks is vast and cannot be sampled well. One approach to the problem is to solve the…

种群与进化 · 定量生物学 2023-04-14 Louxin Zhang , Niloufar Abhari , Caroline Colijn , Yufeng Wu

We propose the class of galled tree-child networks which is obtained as intersection of the classes of galled networks and tree-child networks. For the latter two classes, (asymptotic) counting results and stochastic results have been…

组合数学 · 数学 2024-03-06 Yu-Sheng Chang , Michael Fuchs , Guan-Ru Yu

Phylogenetic networks are mathematical structures for modeling and visualization of reticulation processes in the study of evolution. Galled networks, reticulation visible networks, nearly-stable networks and stable-child networks are the…

种群与进化 · 定量生物学 2015-10-02 Andreas D. M. Gunawan , Louxin Zhang
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