Department of Genetics, University of Georgia, Athens, GA 30602, USA.
Heredity (Edinb). 2012 Mar;108(3):159-66. doi: 10.1038/hdy.2011.65. Epub 2011 Jul 27.
Estimates of hybrid fitness have been used as either a platform for testing the potential role of natural hybridization in the evolution of species and species complexes or, alternatively, as a rationale for dismissing hybridization events as being of any evolutionary significance. From the time of Darwin's publication of The Origin, through the neo-Darwinian synthesis, to the present day, the observation of variability in hybrid fitness has remained a challenge for some models of speciation. Yet, Darwin and others have reported the elevated fitness of hybrid genotypes under certain environmental conditions. In modern scientific terminology, this observation reflects the fact that hybrid genotypes can demonstrate genotype × environment interactions. In the current review, we illustrate the development of one plant species complex, namely the Louisiana Irises, into a 'model system' for investigating hybrid fitness and the role of genetic exchange in adaptive evolution and diversification. In particular, we will argue that a multitude of approaches, involving both experimental and natural environments, and incorporating both manipulative analyses and surveys of natural populations, are necessary to adequately test for the evolutionary significance of introgressive hybridization. An appreciation of the variability of hybrid fitness leads to the conclusion that certain genetic signatures reflect adaptive evolution. Furthermore, tests of the frequency of allopatric versus sympatric/parapatric divergence (that is, divergence with ongoing gene flow) support hybrid genotypes as a mechanism of evolutionary diversification in numerous species complexes.
杂种适合度的估计值被用作测试自然杂交在物种和物种复合体进化中的潜在作用的平台,或者,作为将杂交事件视为没有任何进化意义的理由。从达尔文出版《物种起源》的时代,到新达尔文主义综合,再到今天,杂种适合度的可变性一直是一些物种形成模型的挑战。然而,达尔文和其他人已经报告了在某些环境条件下杂种基因型的高适合度。用现代科学术语来说,这一观察反映了杂种基因型可以表现出基因型与环境的相互作用。在当前的综述中,我们展示了路易斯安那鸢尾这一植物物种复合体的发展,成为了研究杂种适合度以及遗传交换在适应进化和多样化中的作用的“模型系统”。特别是,我们将认为,需要多种方法,包括实验和自然环境,并结合操纵分析和自然种群调查,才能充分检验基因渐渗杂交的进化意义。杂种适合度的可变性使得某些遗传特征反映出适应性进化。此外,对异域分歧与同域/邻域分歧(即,有持续基因流动的分歧)频率的测试支持杂种基因型是许多物种复合体进化多样化的一种机制。