The rainbow trout genome provides novel insights into evolution after whole-genome duplication in vertebrates

被引:0
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作者
Camille Berthelot
Frédéric Brunet
Domitille Chalopin
Amélie Juanchich
Maria Bernard
Benjamin Noël
Pascal Bento
Corinne Da Silva
Karine Labadie
Adriana Alberti
Jean-Marc Aury
Alexandra Louis
Patrice Dehais
Philippe Bardou
Jérôme Montfort
Christophe Klopp
Cédric Cabau
Christine Gaspin
Gary H. Thorgaard
Mekki Boussaha
Edwige Quillet
René Guyomard
Delphine Galiana
Julien Bobe
Jean-Nicolas Volff
Carine Genêt
Patrick Wincker
Olivier Jaillon
Hugues Roest Crollius
Yann Guiguen
机构
[1] Ecole Normale Supérieure,
[2] Institut de Biologie de l’Ecole Normale Supérieur,undefined
[3] IBENS,undefined
[4] Inserm,undefined
[5] U1024,undefined
[6] CNRS,undefined
[7] UMR 8197,undefined
[8] CEA-Institut de Génomique,undefined
[9] Genoscope,undefined
[10] Centre National de Séquençage,undefined
[11] 2 rue Gaston Crémieux,undefined
[12] European Molecular Biology Laboratory-European Bioinformatics Institute,undefined
[13] Welcome Trust Genome Campus,undefined
[14] Institut de Génomique Fonctionnelle de Lyon,undefined
[15] Ecole Normale Supérieur de Lyon-CNRS UMR 5242–UCBL,undefined
[16] 46,undefined
[17] allée d'Italie,undefined
[18] INRA,undefined
[19] UR1037 Fish Physiology and Genomics,undefined
[20] INRA,undefined
[21] UMR 1313 Génétique Animale et Biologie Intégrative,undefined
[22] INRA,undefined
[23] SIGENAE,undefined
[24] UR 875,undefined
[25] INRA Auzeville,undefined
[26] BP 52627,undefined
[27] INRA,undefined
[28] UBIA UR 875,undefined
[29] INRA,undefined
[30] Plateforme Bioinformatique,undefined
[31] UR 875,undefined
[32] School of Biological Sciences,undefined
[33] Washington State University,undefined
[34] Université d’Evry,undefined
[35] UMR 8030,undefined
[36] Centre National de la Recherche Scientifique (CNRS),undefined
[37] UMR 8030,undefined
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摘要
Vertebrate evolution has been shaped by several rounds of whole-genome duplications (WGDs) that are often suggested to be associated with adaptive radiations and evolutionary innovations. Due to an additional round of WGD, the rainbow trout genome offers a unique opportunity to investigate the early evolutionary fate of a duplicated vertebrate genome. Here we show that after 100 million years of evolution the two ancestral subgenomes have remained extremely collinear, despite the loss of half of the duplicated protein-coding genes, mostly through pseudogenization. In striking contrast is the fate of miRNA genes that have almost all been retained as duplicated copies. The slow and stepwise rediploidization process characterized here challenges the current hypothesis that WGD is followed by massive and rapid genomic reorganizations and gene deletions.
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