BackgroundBayesian relaxed-clock dating has significantly influenced our understanding of the timeline of biotic evolution. This approach requires the use of priors on the branching process, yet little is known about their impact on divergence time estimates. We investigated the effect of branching priors using the iconic cycads. We conducted phylogenetic estimations for 237 cycad species using three genes and two calibration strategies incorporating up to six fossil constraints to (i) test the impact of two different branching process priors on age estimates, (ii) assess which branching prior better fits the data, (iii) investigate branching prior impacts on diversification analyses, and (iv) provide insights into the diversification histo...
Abstract.—Bayesian methods are increasingly being used to estimate divergence times without the rest...
Molecular divergence time analyses often rely on the age of fossil lineages to calibrate node age es...
Molecular divergence time analyses often rely on the age of fossil lineages to calibrate node age es...
International audienceBackground: Bayesian relaxed-clock dating has significantly influenced our und...
Background Bayesian relaxed-clock dating has significantly influenced our understanding of the timel...
We dedicate this study to the memory of our esteemed colleague Nathalie S. Nagalingum.International ...
Premise of the study: Recent estimates of crown ages for cycad genera (Late Miocene) challenge us to...
Evolutionary timescales can be inferred by molecular-clock analyses of genetic data and fossil evide...
Abstract.—Bayesian methods are increasingly being used to estimate divergence times without the rest...
Abstract.—Long branches are potentially problematic in molecular dating because they can encompass a...
In Bayesian phylogenetic analyses of genetic data, prior probability distributions need to be specif...
The need for robust estimates of times of divergence is essential for downstream analyses, yet asses...
The need for robust estimates of times of divergence is essential for downstream analyses, yet asses...
Dated phylogenetic trees are important for studying mechanisms of diversification, and molecular clo...
Abstract.—Bayesian methods are increasingly being used to estimate divergence times without the rest...
Molecular divergence time analyses often rely on the age of fossil lineages to calibrate node age es...
Molecular divergence time analyses often rely on the age of fossil lineages to calibrate node age es...
International audienceBackground: Bayesian relaxed-clock dating has significantly influenced our und...
Background Bayesian relaxed-clock dating has significantly influenced our understanding of the timel...
We dedicate this study to the memory of our esteemed colleague Nathalie S. Nagalingum.International ...
Premise of the study: Recent estimates of crown ages for cycad genera (Late Miocene) challenge us to...
Evolutionary timescales can be inferred by molecular-clock analyses of genetic data and fossil evide...
Abstract.—Bayesian methods are increasingly being used to estimate divergence times without the rest...
Abstract.—Long branches are potentially problematic in molecular dating because they can encompass a...
In Bayesian phylogenetic analyses of genetic data, prior probability distributions need to be specif...
The need for robust estimates of times of divergence is essential for downstream analyses, yet asses...
The need for robust estimates of times of divergence is essential for downstream analyses, yet asses...
Dated phylogenetic trees are important for studying mechanisms of diversification, and molecular clo...
Abstract.—Bayesian methods are increasingly being used to estimate divergence times without the rest...
Molecular divergence time analyses often rely on the age of fossil lineages to calibrate node age es...
Molecular divergence time analyses often rely on the age of fossil lineages to calibrate node age es...