Genomics and the origin of species.


Autoria(s): Seehausen O.; Butlin R.K.; Keller I.; Wagner C.E.; Boughman J.W.; Hohenlohe P.A.; Peichel C.L.; Saetre G.P.; Bank C.; Brännström A.; Brelsford A.; Clarkson C.S.; Eroukhmanoff F.; Feder J.L.; Fischer M.C.; Foote A.D.; Franchini P.; Jiggins C.D.; Jones F.C.; Lindholm A.K.; Lucek K.; Maan M.E.; Marques D.A.; Martin S.H.; Matthews B.; Meier J.I.; Möst M.; Nachman M.W.; Nonaka E.; Rennison D.J.; Schwarzer J.; Watson E.T.; Westram A.M.; Widmer A.
Data(s)

2014

Resumo

Speciation is a fundamental evolutionary process, the knowledge of which is crucial for understanding the origins of biodiversity. Genomic approaches are an increasingly important aspect of this research field. We review current understanding of genome-wide effects of accumulating reproductive isolation and of genomic properties that influence the process of speciation. Building on this work, we identify emergent trends and gaps in our understanding, propose new approaches to more fully integrate genomics into speciation research, translate speciation theory into hypotheses that are testable using genomic tools and provide an integrative definition of the field of speciation genomics.

Identificador

http://serval.unil.ch/?id=serval:BIB_9BB6DEACE6F2

isbn:1471-0064 (Electronic)

pmid:24535286

doi:10.1038/nrg3644

isiid:000331895300010

Idioma(s)

en

Fonte

Nature Reviews. Genetics, vol. 15, no. 3, pp. 176-192

Palavras-Chave #Biodiversity; Genomics; Models, Genetic
Tipo

info:eu-repo/semantics/review

article