Molecular early burst associated with the diversification of birds at the K–Pg boundary

Author:

Berv Jacob S.ORCID,Singhal SonalORCID,Field Daniel J.ORCID,Walker-Hale NathanaelORCID,McHugh Sean W.ORCID,Shipley J. RyanORCID,Miller Eliot T.ORCID,Kimball Rebecca T.ORCID,Braun Edward L.ORCID,Dornburg AlexORCID,Parins-Fukuchi C. TomomiORCID,Prum Richard O.ORCID,Winger Benjamin M.ORCID,Friedman MattORCID,Smith Stephen A.ORCID

Abstract

AbstractComplex patterns of genome and life-history evolution associated with the end-Cretaceous (K– Pg) mass extinction event limit our understanding of the early evolutionary history of crown group birds [1-9]. Here, we assess molecular heterogeneity across living birds using a technique enabling inferred sequence substitution models to transition across the history of a clade [10]. Our approach identifies distinct and contrasting regimes of molecular evolution across exons, introns, untranslated regions, and mitochondrial genomes. Up to fifteen shifts in the mode of avian molecular evolution map to rapidly diversifying clades near the Cretaceous-Palaeogene boundary, demonstrating a burst of genomic disparity early in the evolutionary history of crown birds [11-13]. Using simulation and machine learning techniques, we show that shifts in developmental mode [14] or adult body mass [4] best explain transitions in the mode of nucleotide substitution. These patterns are related, in turn, to macroevolutionary shifts in the allometric scaling relationship between basal metabolic rate and body mass [15, 16]. In agreement with theoretical predictions, this scaling relationship appears to have weakened across the end-Cretaceous transition. Overall, our study provides evidence that the Chicxulub bolide impact [17] triggered integrated patterns of evolution across avian genomes, physiology, and life history that structured the evolutionary potential of modern birds.

Publisher

Cold Spring Harbor Laboratory

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Phylogenomics using Compression Distances: Incorporating Rate Heterogeneity and Amino Acid Properties;Proceedings of the 14th ACM International Conference on Bioinformatics, Computational Biology, and Health Informatics;2023-09-03

2. The Structure of Evolutionary Model Space for Proteins across the Tree of Life;Biology;2023-02-10

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