Version 7

Data from: The fundamental role of character coding in Bayesian morphological phylogenetics

Khakurel, Basanta;Grigsby, Courtney;Tran, Tyler D.;Zariwala, Juned;Höhna, Sebastian;Wright, April M.

Description

Phylogenetic trees establish a historical context for the study of organismal form and function. Most phylogenetic trees are estimated using a model of evolution. For molecular data, modeling evolution is often based on biochemical observations about changes between character states. For example, there are four nucleotides, and we can make assumptions about the probability of transitions between them. By contrast, for morphological characters, we may not know a priori how many character states there are per character, as both extant sampling and the fossil record may be highly incomplete, which leads to an observer bias. For a given character, the state space may be larger than what has been observed in the sample of taxa collected by the researcher. In this case, how many evolutionary rates are needed to even describe transitions between morphological character states may not be clear, potentially leading to model misspecification. To explore the impact of this model misspecification, we simulated character data with varying numbers of character states per character. We then used the data to estimate phylogenetic trees using models of evolution with the correct number of character states and an incorrect number of character states. The results of this study indicate that this observer bias may lead to phylogenetic error, particularly in the branch lengths of trees. If the state space is wrongly assumed to be too large, then we underestimate the branch lengths, and the opposite occurs when the state space is wrongly assumed to be too small.

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Mentions (0)

Metrics

Dataset Index

0.8

FAIR Score

77%

Citations

1

Mentions

0

Metrics Over Time

Publication Details

DOI

Publisher

Dryad

License

Creative Commons Zero v1.0 Universal

Assigned Domain

Subfield

Paleontology

Field

Earth and Planetary Sciences

Domain

Physical Sciences

Confidence Score

53%

Source

Scholar Data Model

Keywords

FOS: Biological sciencesCharacter statesBayesian phylogeneticsmorphological dataobserver biasPhylogenetic

Normalization Factors

FT

51.92

CTw

1.00

MTw

1.00