将系统发育学和年代学结合起来,形成生命之树。

IF 2.8 Q2 MATHEMATICAL & COMPUTATIONAL BIOLOGY
Frontiers in bioinformatics Pub Date : 2025-04-30 eCollection Date: 2025-01-01 DOI:10.3389/fbinf.2025.1571568
Jose Barba-Montoya, Jack M Craig, Sudhir Kumar
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引用次数: 0

摘要

重建全局生命树需要计算方法来整合有限物种重叠的众多分子系统发育成一个全面的超树。我们对已发表文献的调查表明,由于研究者的专业知识和分子进化的考虑,个体系统发生经常局限于特定的分类群,导致任何给定物种都存在于系统发生的极小部分。我们提出了一种新的方法,称为时间顺序超树算法(Chrono-STA),该方法可以通过使用已发表的分子系统发育中的节点年龄按时间排序,从这些数据中构建物种的超树。Chrono-STA通过整合来自分子时间树的时间数据来构建超树。它从根本上不同于现有的从缺失分类群的基因树中产生共识系统发育的方法,因为Chrono-STA不计算节点距离,不使用指导树作为主干,也不将系统发育减少到四分之一。模拟和实证数据集的分析表明,Chrono-STA可以将分类学上受限的时间树与极有限的物种重叠结合起来。对于这样的数据,计算缺失距离或组装系统发育四重奏的方法表现不佳。我们的结论是,通过时间维度整合系统发育提高了重建的超树的准确性,并且也按时间缩放。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integrating phylogenies with chronology to assemble the tree of life.

Reconstructing the global Tree of Life necessitates computational approaches to integrate numerous molecular phylogenies with limited species overlap into a comprehensive supertree. Our survey of published literature shows that individual phylogenies are frequently restricted to specific taxonomic groups due to investigators' expertise and molecular evolutionary considerations, resulting in any given species present in a minuscule fraction of phylogenies. We present a novel approach, called the chronological supertree algorithm (Chrono-STA), that can build a supertree of species from such data by using node ages in published molecular phylogenies scaled to time. Chrono-STA builds a supertree by integrating chronological data from molecular timetrees. It fundamentally differs from existing approaches that generate consensus phylogenies from gene trees with missing taxa, as Chrono-STA does not impute nodal distances, use a guide tree as a backbone, or reduce phylogenies to quartets. Analyses of simulated and empirical datasets show that Chrono-STA can combine taxonomically restricted timetrees with extremely limited species overlap. For such data, approaches that impute missing distances or assemble phylogenetic quartets did not perform well. We conclude that integrating phylogenies via temporal dimension enhances the accuracy of reconstructed supertrees that are also scaled to time.

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CiteScore
2.60
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