Genetics and the Fitness of Hybrids
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- 1 December 2001
- journal article
- review article
- Published by Annual Reviews in Annual Review of Genetics
- Vol. 35 (1), 31-52
- https://doi.org/10.1146/annurev.genet.35.102401.085719
Abstract
Over the years, the evolutionary importance of natural hybridization has been a contentious issue. At one extreme is the relatively common view of hybridization as an evolutionarily unimportant process. A less common perspective, but one that has gained support over the past decade, is that of hybridization as a relatively widespread and potentially creative evolutionary process. Indeed, studies documenting the production of hybrid genotypes exhibiting a wide range of fitnesses have become increasingly common. In this review, we examine the genetic basis of such variation in hybrid fitness. In particular, we assess the genetic architecture of hybrid inferiority (both sterility and inviability). We then extend our discussion to the genetic basis of increased fitness in certain hybrid genotypes. The available evidence argues that hybrid inferiority is the result of widespread negative epistasis in a hybrid genetic background. In contrast, increased hybrid fitness can be most readily explained through the segregation of additive genetic factors, with epistasis playing a more limited role.Keywords
This publication has 99 references indexed in Scilit:
- Heterosis increases the effective migration rateProceedings Of The Royal Society B-Biological Sciences, 2000
- Genetic Interactions and Natural Selection in Louisiana Iris HybridsEvolution, 1998
- Evolution of Postmating Reproductive Isolation: The Composite Nature of Haldane's Rule and Its Genetic BasesThe American Naturalist, 1993
- Evolutionary significance of introgressive hybridization in cyprinid fishesNature, 1993
- Plant invasions, interspecific hybridization and the evolution of new plant taxaTrends in Ecology & Evolution, 1992
- Hybrid Breakdown in Physiological Response: A Mechanistic ApproachEvolution, 1990
- Differentiation and Integration of the Genome in Populations of the Marine Copepod Tigriopus californicusEvolution, 1987
- Race Formation, Speciation, and Introgression Within Drosophila simulans, D. mauritiana, and D. schellia Inferred from Mitochondrial DNA AnalysisEvolution, 1986
- A Zone of Overlap and Hybridization Between Two Ground Cricket SpeciesEvolution, 1986
- A Taxonomist's Experience with Hybrids in the WildScience, 1935