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Article
Bone-Associated Gene Evolution and the Origin of Flight in Birds
BMC Genomics
  • Joao P. Machado, Universidade do Porto - Portugal
  • Warren E. Johnson, Smithsonian Conservation Biology Institute
  • M. Thomas P. Gilbert, Natural History Museum of Denmark
  • Guojie Zhang, BGI-Shenzhen - China; University of Copenhagen - Denmark
  • Erich D. Jarvis, Duke University; Howard Hughes Medical Institute
  • Stephen J. O'Brien, St. Petersburg State University - Russia; Nova Southeastern University
  • Agostinho Antunes, Universidade do Porto - Portugal
Document Type
Article
Publication Date
5-18-2016
Abstract

Background

Bones have been subjected to considerable selective pressure throughout vertebrate evolution, such as occurred during the adaptations associated with the development of powered flight. Powered flight evolved independently in two extant clades of vertebrates, birds and bats. While this trait provided advantages such as in aerial foraging habits, escape from predators or long-distance travels, it also imposed great challenges, namely in the bone structure.

Results

We performed comparative genomic analyses of 89 bone-associated genes from 47 avian genomes (including 45 new), 39 mammalian, and 20 reptilian genomes, and demonstrate that birds, after correcting for multiple testing, have an almost two-fold increase in the number of bone-associated genes with evidence of positive selection (~52.8 %) compared with mammals (~30.3 %). Most of the positive-selected genes in birds are linked with bone regulation and remodeling and thirteen have been linked with functional pathways relevant to powered flight, including bone metabolism, bone fusion, muscle development and hyperglycemia levels. Genes encoding proteins involved in bone resorption, such as TPP1, had a high number of sites under Darwinian selection in birds.

Conclusions

Patterns of positive selection observed in bird ossification genes suggest that there was a period of intense selective pressure to improve flight efficiency that was closely linked with constraints on body size.

Comments

© Machado et al. 2016

Additional Comments
Fundacao para a Ciencia e a Tecnologia grant #: SFRH/BD/65245/2009; Russian Ministry of Science Mega-grant #: 11.G34.31.0068
Creative Commons License
Creative Commons Attribution 4.0 International
ORCID ID
0000-0001-7353-8301
ResearcherID
N-1726-2015
Citation Information
Joao P. Machado, Warren E. Johnson, M. Thomas P. Gilbert, Guojie Zhang, et al.. "Bone-Associated Gene Evolution and the Origin of Flight in Birds" BMC Genomics Vol. 17 Iss. 371 (2016) p. 1 - 15 ISSN: 1471-2164
Available at: http://works.bepress.com/stephen-obrien/90/