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A phylogeny-informed characterisation of global tetrapod traits addresses data gaps and biases.

Authors :
Moura, Mario R.
Ceron, Karoline
Guedes, Jhonny J. M.
Chen-Zhao, Rosana
Sica, Yanina V.
Hart, Julie
Dorman, Wendy
Portmann, Julia M.
González-del-Pliego, Pamela
Ranipeta, Ajay
Catenazzi, Alessandro
Werneck, Fernanda P.
Toledo, Luís Felipe
Upham, Nathan S.
Tonini, João F. R.
Colston, Timothy J.
Guralnick, Robert
Bowie, Rauri C. K.
Pyron, R. Alexander
Jetz, Walter
Source :
PLoS Biology. 7/11/2024, Vol. 22 Issue 7, p1-31. 31p.
Publication Year :
2024

Abstract

Tetrapods (amphibians, reptiles, birds, and mammals) are model systems for global biodiversity science, but continuing data gaps, limited data standardisation, and ongoing flux in taxonomic nomenclature constrain integrative research on this group and potentially cause biased inference. We combined and harmonised taxonomic, spatial, phylogenetic, and attribute data with phylogeny-based multiple imputation to provide a comprehensive data resource (TetrapodTraits 1.0.0) that includes values, predictions, and sources for body size, activity time, micro- and macrohabitat, ecosystem, threat status, biogeography, insularity, environmental preferences, and human influence, for all 33,281 tetrapod species covered in recent fully sampled phylogenies. We assess gaps and biases across taxa and space, finding that shared data missing in attribute values increased with taxon-level completeness and richness across clades. Prediction of missing attribute values using multiple imputation revealed substantial changes in estimated macroecological patterns. These results highlight biases incurred by nonrandom missingness and strategies to best address them. While there is an obvious need for further data collection and updates, our phylogeny-informed database of tetrapod traits can support a more comprehensive representation of tetrapod species and their attributes in ecology, evolution, and conservation research. Tetrapods are model systems for global biodiversity science, but continuing data gaps and limited data standardization potentially introduce biases. TetrapodTraits is a database of 33,281 tetrapod species, integrating taxonomic, spatial, phylogenetic and attribute data through phylogeny-based multiple imputation. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
15449173
Volume :
22
Issue :
7
Database :
Academic Search Index
Journal :
PLoS Biology
Publication Type :
Academic Journal
Accession number :
178382839
Full Text :
https://doi.org/10.1371/journal.pbio.3002658