Acknowledging uncertainty in evolutionary reconstructions of ecological niches

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Issue Date
2020-06-27Author
Owens, Hannah L.
Ribeiro, Vivian
Saupe, Erin E.
Cobos, Marlon E.
Hosner, Peter A.
Cooper, Jacob C.
Samy, Abdallah M.
Barve, Vijay
Barve, Narayani
Muñoz-R., Carlos J.
Peterson, A. Townsend
Publisher
Wiley Open Access
Type
Article
Article Version
Scholarly/refereed, publisher version
Rights
© 2020 The Authors. Ecology and Evolution published by John Wiley & Sons Ltd. This is an open access article under the terms of the Creative Commons Attribution License.
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Show full item recordAbstract
Reconstructing ecological niche evolution can provide insight into the biogeography and diversification of evolving lineages. However, comparative phylogenetic methods may infer the history of ecological niche evolution inaccurately because (a) species' niches are often poorly characterized; and (b) phylogenetic comparative methods rely on niche summary statistics rather than full estimates of species' environmental tolerances. Here, we propose a new framework for coding ecological niches and reconstructing their evolution that explicitly acknowledges and incorporates the uncertainty introduced by incomplete niche characterization. Then, we modify existing ancestral state inference methods to leverage full estimates of environmental tolerances. We provide a worked empirical example of our method, investigating ecological niche evolution in the New World orioles (Aves: Passeriformes: Icterus spp.). Temperature and precipitation tolerances were generally broad and conserved among orioles, with niche reduction and specialization limited to a few terminal branches. Tools for performing these reconstructions are available in a new R package called nichevol.
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Citation
Owens, HL, Ribeiro, V, Saupe, EE, et al. Acknowledging uncertainty in evolutionary reconstructions of ecological niches. Ecol Evol. 2020; 10: 6967– 6977. https://doi.org/10.1002/ece3.6359
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