Convergence and divergence during the adaptation to similar environments by an Australian Groundsel


Autoria(s): Roda, Federico; Liu, Huanle; Wilkinson, Melanie J.; Walter, Gregory M.; James, Maddie E.; Bernal, Diana M.; Melo, Maria C.; Lowe, Andrew; Rieseberg, Loren H.; Prentis, Peter; Ortiz-Barrientos, Daniel
Data(s)

01/09/2013

Resumo

Adaptation to replicate environments is often achieved through similar phenotypic solutions. Whether selection also produces convergent genomic changes in these situations remains largely unknown. The variable groundsel, Senecio lautus, is an excellent system to investigate the genetic underpinnings of convergent evolution, because morphologically similar forms of these plants have adapted to the same environments along the coast of Australia. We compared range-wide patterns of genomic divergence in natural populations of this plant and searched for regions putatively affected by natural selection. Our results indicate that environmental adaptation followed complex genetic trajectories, affecting multiple loci, implying both the parallel recruitment of the same alleles and the divergence of completely different genomic regions across geography. An analysis of the biological functions of candidate genes suggests that adaptation to coastal environments may have occurred through the recruitment of different genes participating in similar processes. The relatively low genetic convergence that characterizes the parallel evolution of S. lautus forms suggests that evolution is more constrained at higher levels of biological organization.

Identificador

http://eprints.qut.edu.au/62559/

Publicador

Wiley-Blackwell Publishing Ltd.

Relação

DOI:10.1111/evo.12136

Roda, Federico, Liu, Huanle , Wilkinson, Melanie J., Walter, Gregory M., James, Maddie E., Bernal, Diana M., Melo, Maria C., Lowe, Andrew, Rieseberg, Loren H., Prentis, Peter, & Ortiz-Barrientos, Daniel (2013) Convergence and divergence during the adaptation to similar environments by an Australian Groundsel. Evolution: international journal of organic evolution, 67(9), pp. 2515-2529.

Direitos

© 2013 The Author(s). Evolution © 2013 The Society for the Study of Evolution.

Fonte

School of Earth, Environmental & Biological Sciences; Science & Engineering Faculty

Palavras-Chave #Adaptation #convergence #evolutionary genomics #senecio #selection—natural #speciation
Tipo

Journal Article