Complexity of avian evolution revealed by family-level genomes
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ComplexityOfAvianEvolution.pdf
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Resource type
Journal article
Creator (person)
Stiller, Josefin
Feng, Shaohong
Chowdhury, Al-Aabid
Rivas-Gonzà¡lez, Iker
Duchàªne, David A
Fang, Qi
Deng, Yuan
Kozlov, Alexey
Stamatakis, Alexandros
Claramunt, Santiago
Nguyen, Jacqueline M T
Ho, Simon Y W
Faircloth, Brant C
Haag, Julia
Houde, Peter
Cracraft, Joel
Balaban, Metin
Mai, Uyen
Chen, Guangji
Gao, Rongsheng
Zhou, Chengran
Xie, Yulong
Huang, Zijian
Cao, Zhen
Yan, Zhi
Ogilvie, Huw A
Nakhleh, Luay
Lindow, Bent
Morel, Benoit
Fjeldsà¥, Jon
Hosner, Peter A
da Fonseca, Rute R
Petersen, Bent
Tobias, Joseph A
Székely, Tamà¡s
Kennedy, Jonathan David
Reeve, Andrew Hart
Liker, Andras
Stervander, Martin
Antunes, Agostinho
Tietze, Dieter Thomas
Bertelsen, Mads F
Lei, Fumin
Rahbek, Carsten
Graves, Gary R
Schierup, Mikkel H
Warnow, Tandy
Braun, Edward L
Gilbert, M Thomas P
Jarvis, Erich D
Mirarab, Siavash
Zhang, Guojie
Date published
May 23, 2024
Abstract
Despite tremendous efforts in the past decades, relationships among main avian lineages remain heavily debated without a clear resolution. Discrepancies have been attributed to diversity of species sampled, phylogenetic method and the choice of genomic regions . Here we address these issues by analysing the genomes of 363 bird species (218 taxonomic families, 92% of total). Using intergenic regions and coalescent methods, we present a well-supported tree but also a marked degree of discordance. The tree confirms that Neoaves experienced rapid radiation at or near the Cretaceous–Palaeogene boundary. Sufficient loci rather than extensive taxon sampling were more effective in resolving difficult nodes. Remaining recalcitrant nodes involve species that are a challenge to model due to either extreme DNA composition, variable substitution rates, incomplete lineage sorting or complex evolutionary events such as ancient hybridization. Assessment of the effects of different genomic partitions showed high heterogeneity across the genome. We discovered sharp increases in effective population size, substitution rates and relative brain size following the Cretaceous–Palaeogene extinction event, supporting the hypothesis that emerging ecological opportunities catalysed the diversification of modern birds. The resulting phylogenetic estimate offers fresh insights into the rapid radiation of modern birds and provides a taxon-rich backbone tree for future comparative studies.
Journal title
Nature
Volume
629
Publisher
Springer Science and Business Media LLC
ISSN
0028-0836
eISSN
1476-4687
Date accepted
March 15, 2024
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Full text available via the official URL