Phylogenomic Analysis of the Parrots of the World Distinguishes Artifactual from Biological Sources of Gene Tree Discordance

Author:

Smith Brian Tilston1,Merwin Jon23,Provost Kaiya L4,Thom Gregory56,Brumfield Robb T56ORCID,Ferreira Mateus7ORCID,Mauck William M8,Moyle Robert G9,Wright Timothy F10,Joseph Leo11ORCID

Affiliation:

1. American Museum of Natural History Department of Ornithology, , Central Park West at 79th Street, New York, NY 10024, USA

2. Academy of Natural Sciences of Drexel University Department of Ornithology, , 1900 Benjamin Franklin Parkway, Philadelphia, PA 19103, USA

3. Drexel University Department of Biodiversity, Earth, and Environmental Science, , 3245 Chestnut St, Philadelphia, PA 19104, USA

4. Department of Evolution, Ecology, and Organismal Biology, The Ohio State University , 318 W. 12th Avenue, Columbus, OH 43210, USA

5. Museum of Natural Science, Louisiana State University , 119 Foster Hall, Baton Rouge, LA 70803, USA

6. Department of Biological Sciences, Louisiana State University , 202 Life Science Bldg, Baton Rouge, LA 70803, USA

7. Centro de Estudos da Biodiversidade, Universidade Federal de Roraima , Av. Cap. Ene Garcez, 2413, Boa Vista, RR, Brazil

8. Department of Ornithology, American Museum of Natural History , Central Park West at 79th Street, New York, NY 10024, USA

9. Department of Ecology and Evolutionary Biology and Biodiversity Institute, University of Kansas , 1345 Jayhawk Blvd., Lawrence, KS 66045, USA

10. Department of Biology, New Mexico State University , MSC 3AF, Las Cruces, NM 88003, USA

11. Australian National Wildlife Collection, National Research Collections Australia , CSIRO, GPO Box 1700, Canberra, ACT 2601, Australia

Abstract

Abstract Gene tree discordance is expected in phylogenomic trees and biological processes are often invoked to explain it. However, heterogeneous levels of phylogenetic signal among individuals within data sets may cause artifactual sources of topological discordance. We examined how the information content in tips and subclades impacts topological discordance in the parrots (Order: Psittaciformes), a diverse and highly threatened clade of nearly 400 species. Using ultraconserved elements from 96$\%$ of the clade’s species-level diversity, we estimated concatenated and species trees for 382 ingroup taxa. We found that discordance among tree topologies was most common at nodes dating between the late Miocene and Pliocene, and often at the taxonomic level of the genus. Accordingly, we used two metrics to characterize information content in tips and assess the degree to which conflict between trees was being driven by lower-quality samples. Most instances of topological conflict and nonmonophyletic genera in the species tree could be objectively identified using these metrics. For subclades still discordant after tip-based filtering, we used a machine learning approach to determine whether phylogenetic signal or noise was the more important predictor of metrics supporting the alternative topologies. We found that when signal favored one of the topologies, the noise was the most important variable in poorly performing models that favored the alternative topology. In sum, we show that artifactual sources of gene tree discordance, which are likely a common phenomenon in many data sets, can be distinguished from biological sources by quantifying the information content in each tip and modeling which factors support each topology. [Historical DNA; machine learning; museomics; Psittaciformes; species tree.]

Funder

National Science Foundation

Publisher

Oxford University Press (OUP)

Subject

Genetics,Ecology, Evolution, Behavior and Systematics

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