Social evolution. Genomic signatures of evolutionary transitions from solitary to group living.

Détails

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Etat: Public
Version: Final published version
Licence: Non spécifiée
ID Serval
serval:BIB_61DC74243EF9
Type
Article: article d'un périodique ou d'un magazine.
Sous-type
Compte-rendu: analyse d'une oeuvre publiée.
Collection
Publications
Titre
Social evolution. Genomic signatures of evolutionary transitions from solitary to group living.
Périodique
Science
Auteur⸱e⸱s
Kapheim K.M., Pan H., Li C., Salzberg S.L., Puiu D., Magoc T., Robertson H.M., Hudson M.E., Venkat A., Fischman B.J., Hernandez A., Yandell M., Ence D., Holt C., Yocum G.D., Kemp W.P., Bosch J., Waterhouse R.M., Zdobnov E.M., Stolle E., Kraus F.B., Helbing S., Moritz R.F., Glastad K.M., Hunt B.G., Goodisman M.A., Hauser F., Grimmelikhuijzen C.J., Pinheiro D.G., Nunes F.M., Soares M.P., Tanaka É.D., Simões Z.L., Hartfelder K., Evans J.D., Barribeau S.M., Johnson R.M., Massey J.H., Southey B.R., Hasselmann M., Hamacher D., Biewer M., Kent C.F., Zayed A., Blatti C., Sinha S., Johnston J.S., Hanrahan S.J., Kocher S.D., Wang J., Robinson G.E., Zhang G.
ISSN
1095-9203 (Electronic)
ISSN-L
0036-8075
Statut éditorial
Publié
Date de publication
2015
Peer-reviewed
Oui
Volume
348
Numéro
6239
Pages
1139-1143
Langue
anglais
Résumé
The evolution of eusociality is one of the major transitions in evolution, but the underlying genomic changes are unknown. We compared the genomes of 10 bee species that vary in social complexity, representing multiple independent transitions in social evolution, and report three major findings. First, many important genes show evidence of neutral evolution as a consequence of relaxed selection with increasing social complexity. Second, there is no single road map to eusociality; independent evolutionary transitions in sociality have independent genetic underpinnings. Third, though clearly independent in detail, these transitions do have similar general features, including an increase in constrained protein evolution accompanied by increases in the potential for gene regulation and decreases in diversity and abundance of transposable elements. Eusociality may arise through different mechanisms each time, but would likely always involve an increase in the complexity of gene networks.
Mots-clé
Amino-Acid N-Acetyltransferase, Animals, Bees/classification, Bees/genetics, DNA Transposable Elements, Evolution, Molecular, Gene Expression Regulation, Gene Regulatory Networks, Genetic Drift, Genome, Insect/genetics, Phylogeny, Selection, Genetic, Social Behavior, Transcription Factors/chemistry, Transcription Factors/genetics, Transcriptome
Pubmed
Web of science
Création de la notice
20/09/2017 10:05
Dernière modification de la notice
03/01/2020 19:00
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