Interspecific crossing and genetic mapping reveal intrinsic genomic incompatibility between two Senecio species that form a hybrid zone on Mount Etna, Sicily
Author:
Publisher
Springer Science and Business Media LLC
Subject
Genetics (clinical),Genetics
Link
http://www.nature.com/articles/hdy201414.pdf
Reference61 articles.
1. Abbott R, Albach D, Ansell S, Arntzen JW, Baird SJE, Bierne N et al. (2013). Hybridization and speciation. J Evol Biol 26: 229–246.
2. Abbott RJ, Brennan AC, James JK, Forbes DF, Hegarty MJ, Hiscock SJ . (2009). Recent hybrid origin and invasion of the British Isles by a self-incompatible species, Oxford ragwort (Senecio squalidus L., Asteraceae). Biol Invasions 11: 1145–1158.
3. Agrawal AF, Feder JL, Nosil P . (2011). Ecological divergence and the origin of intrinsic postmating isolation with gene flow. Int J Ecol 2011: 435357.
4. Alexander JCM . (1979). Mediterranean species of Senecio sections Senecio and Delphinifolius. Notes Roy Bot Gard Edin 37: 387–428.
5. Bierne N, Welch J, Loire E, Bonhomme F, David P . (2011). The coupling hypothesis: why genome scans may fail to map local adaptation genes. Mol Ecol 20: 2044–2072.
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