Hybridization and genome evolution II: Mechanisms of species divergence and their effects on evolution in hybrids
Author(s) -
Richard I. Bailey,
Fabrice Eroukhmanoff,
GlennPeter Sætre
Publication year - 2013
Publication title -
current zoology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.971
H-Index - 38
eISSN - 2058-5888
pISSN - 1674-5507
DOI - 10.1093/czoolo/59.5.675
Subject(s) - biology , reproductive isolation , evolutionary biology , hybrid , genetic algorithm , hybrid zone , ecological speciation , selection (genetic algorithm) , adaptation (eye) , directional selection , genetics , stabilizing selection , sexual selection , mate choice , genetic variation , gene , mating , population , gene flow , botany , neuroscience , demography , artificial intelligence , sociology , computer science
Recent genomic studies have highlighted the importance of hybridization and gene exchange in evolution. We ask what factors cause variation in the impact of hybridization, through adaptation in hybrids and the likelihood of hybrid speciation. During speciation, traits that diverge due to both divergent and stabilizing selection can contribute to the buildup of reproductive isolation. Divergent directional selection in parent taxa should lead to intermediate phenotypes in hybrids, whereas stabilizing se- lection can also produce extreme, transgressive phenotypes when hybridization occurs. By examining existing theory and em- pirical data, we discuss how these effects, combined with differences between modes of divergence in the chromosomal distribu- tion of incompatibilities, affect adaptation and speciation in hybrid populations. The result is a clear and testable set of predic- tions that can be used to examine hybrid adaptation and speciation. Stabilizing selection in parents increases transgression in hy- brids, increasing the possibility for novel adaptation. Divergent directional selection causes intermediate hybrid phenotypes and increases their ability to evolve along the direction of parental differentiation. Stabilizing selection biases incompatibilities to- wards autosomes, leading to reduced sexual correlations in trait values and reduced pleiotropy in hybrids, and hence increased freedom in the direction of evolution. Directional selection causes a bias towards sex-linked incompatibilities, with the opposite consequences. Divergence by directional selection leads to greater dominance effects than stabilizing selection, with major but variable impacts on hybrid evolution (Current Zoology 59 (5): 675685, 2013).
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