MTA-ELTE "Lendület"' Evolutionary Genomics Research Group, Pázmány P. stny. 1A, H-1117 Budapest, Hungary.
Department of Biological Physics, Eötvös University, Pázmány P. stny. 1A, H-1117 Budapest, Hungary.
Syst Biol. 2022 Jun 16;71(4):797-809. doi: 10.1093/sysbio/syab084.
Dating the tree of life is central to understanding the evolution of life on Earth. Molecular clocks calibrated with fossils represent the state of the art for inferring the ages of major groups. Yet, other information on the timing of species diversification can be used to date the tree of life. For example, horizontal gene transfer events and ancient coevolutionary interactions such as (endo)symbioses occur between contemporaneous species and thus can imply temporal relationships between two nodes in a phylogeny. Temporal constraints from these alternative sources can be particularly helpful when the geological record is sparse, for example, for microorganisms, which represent the majority of extant and extinct biodiversity. Here, we present a new method to combine fossil calibrations and relative age constraints to estimate chronograms. We provide an implementation of relative age constraints in RevBayes that can be combined in a modular manner with the wide range of molecular dating methods available in the software. We use both realistic simulations and empirical datasets of 40 Cyanobacteria and 62 Archaea to evaluate our method. We show that the combination of relative age constraints with fossil calibrations significantly improves the estimation of node ages. [Archaea, Bayesian analysis, cyanobacteria, dating, endosymbiosis, lateral gene transfer, MCMC, molecular clock, phylogenetic dating, relaxed molecular clock, revbayes, tree of life.].
确定生命之树的日期是理解地球上生命进化的核心。利用化石校准的分子钟是推断主要类群年龄的最新技术。然而,关于物种多样化时间的其他信息也可用于为生命之树定年。例如,水平基因转移事件和古老的共进化相互作用(如内共生)发生在同时代的物种之间,因此可以暗示系统发育树中两个节点之间的时间关系。当地质记录稀疏时,这些替代来源的时间约束特别有帮助,例如对于微生物来说,微生物代表了现存和已灭绝生物多样性的大多数。在这里,我们提出了一种新的方法,将化石校准和相对年龄约束相结合来估计时标。我们在 RevBayes 中提供了相对年龄约束的实现,可以以模块化的方式与该软件中广泛提供的各种分子定年方法相结合。我们使用真实模拟和 40 个蓝细菌和 62 个古细菌的经验数据集来评估我们的方法。我们表明,将相对年龄约束与化石校准相结合,可以显著提高节点年龄的估计。[古细菌、贝叶斯分析、蓝细菌、定年、内共生、水平基因转移、MCMC、分子钟、系统发育定年、松弛分子钟、RevBayes、生命之树。]